Showing posts with label coal. Show all posts
Showing posts with label coal. Show all posts

Tuesday, 7 December 2010

Regional Update: Korea to displace coal with nuclear and renewables

SEOUL, Tuesday 7 December 2010 (AFP) - South Korea said Tuesday it plans to build 14 new nuclear reactors by 2024 to help meet growing energy needs and cut dependence on fossil fuel.

South Korea, which currently has 20 operational nuclear reactors, will build 14 new facilities to make atomic power the biggest source of energy by 2024, state-run Korea Power Exchange said.

As a result, nuclear energy will provide 48.5% of the nation's energy consumption by the target year from the current 32%, KPE said in a long-term national energy development plan.

Coal is currently the biggest source of energy in South Korea that meets 42% of the nation's energy needs.

Renewable energy sources like solar and wind power will also provide 8.9% of the nation's energy needs by 2024 compared with the current 1.3%, it said.

Asia's fourth-largest economy imports 97% of its energy needs from overseas and has moved to cut dependence on fossil fuels and to diversify energy sources.

In October Seoul unveiled a five-year plan to spend 36 billion dollars developing renewable energy as its next economic growth engine, with a goal to become one of the world's five top players in the sector.

source: Mysinchew.com http://www.mysinchew.com/node/49145

Wednesday, 1 December 2010

Labor to debate nuclear? I smell a rat.

Recent news stories have been highlighting some calls from within Labor to debate Australia's potential adoption of nuclear energy.

While this may appear to be delightful news to those who are keen for a nuclear debate. I am reluctant to let my hopes soar.

Nuclear energy lends itself to be a very effective tool of the coal industry when it comes to defending itself from climate change related threats. A price on carbon will - by design - threaten the use of fossil fuels in Australia. Since Australians fear nuclear power even more then escalating electricity prices (something the coal industry would not mind by the way), it's introduction into the national narrative just after government begins making noise about a price on carbon is, to me, too coincidental to be overlooked.

It is too easy for the coal industry and/or the politicians who represent them to stoke national nuclear fears by linking a price on carbon to the deployment of nuclear energy stations 'in your backyard'. But in the end, if there is no price on carbon, all no/low carbon energy sources will continue to suffer deployment delays or significant limitations compared with action required to achieve the emissions reductions deemed necessary by global experts.

Then there's potential political benefits, such as getting the Greens to snuggle up to those in Labor who are 'not quite convinced' of the benefits of nuclear energy.

Whether Labor discusses nuclear energy or not is unimportant. It's being discussed already, albeit not openly. What is critical for Australia's future; including our economic as well as environmental security, is a price on carbon to shift energy production away from the use of carbon emitting energy sources.

Thursday, 4 March 2010

Dr. James Hansen in Melbourne

''I don't intend to be telling Australia what they should do for their energy source except that they can't continue to burn coal without screwing everybody..."

''And exporting coal, and increasing exports of coal, is almost equivalent to being a drug dealer to the world.''

James Hansen, the director of NASA's Goddard Institute for Space Studies

source: the Sydney Morning Herald

Saturday, 9 January 2010

ROK-on! South Korea

In a recent speech, ANSTO CEO, Dr. Adi Paterson, suggested the global nuclear industry is passing Australia by, and in permitting it to do so, Australia is missing a significant opportunity.

Based on Ian’s comment in the post immediately below, I began to dig around for information on Korea’s nuclear industry. I stumbled upon an August 2009 report, Nuclear Technology and Economic Development in the Republic of Korea. It details the results of Korea’s investments in nuclear infrastructure and human capacity development. Winning recent bids for US $20 billion (possibly $40 billion) in nuclear power plant contacts in the UAE and a research reactor in Jordan are the latest tangible outcomes of their efforts.

A few quotes:

…Over the past four decades, the Republic of Korea has become one of the world’s leading nuclear power countries, with 20 nuclear power plants in commercial operation at the end of 2005, comprising a total generating capacity of 17.5 GW(e). Increasing national participation in the nuclear industry has meant the steadily increased use of locally produced material and domestic staff resources. Meaningful national participation in nuclear power plant construction requires the existence of a capable construction industry; medium and heavy manufacturing including cement, steel, machinery and equipment and chemicals; as well as competency in other services such as civil engineering, quality assurance control and testing; and specialized manpower training including engineering and managerial skills. Domestic industries gradually became the main suppliers to and main contractors for the nuclear power programme…

The industrial sectors that benefited from nuclear power plant construction changed over time as the commercial nature of the construction evolved from imported turn-key plants to greater technological self-sufficiency. For example, before 1990, only two major industrial sectors received significant value added from nuclear power: electric power plant construction, and finance and insurance. After 1990, as the Republic of Korea approached technological self-sufficiency in nuclear power plant construction, the number of sectors affected increased to include primary metal products, general machinery and equipment, electronic and other electric equipment, and business services. The general machinery and equipment sector was the most affected for the years 1990 and 1995, reflecting large expenditures in this sector for new plants.

There are four nuclear power plant sites in Republic of Korea. Each of the host communities has benefited from the construction and operation of these plants. These benefits include tax revenues, financial contributions in terms of local expenditures by the plant for salaries, social contributions and investments, and infrastructure development.

External benefits, like the more familiarly known external costs, are those that the public incurs but that are not included in the cost of production (in the generation cost in the case of nuclear power) and hence are not in the price of the product (electricity). External benefits of nuclear power are thus in a sense by-products of nuclear power generation. Many external benefits often occur in the form of avoided external or even internalized costs. Nuclear power generation, for example, to the extent that it replaces thermal generation, significantly reduces the external costs of air pollution and GHG emissions associated with fossil fuel combustion.

Similarly, nuclear power generation creates benefits in terms of enhanced security of energy supply, and in terms of electricity price stability. Although private investors will make their decisions based largely on internalized costs, government investors and policy makers may wish to make and to affect decisions based on both internalized and external costs. Government decisions can include both public investment and regulatory decisions. With increasing pressure on the environment and human health, regulatory measures increasingly incorporate these externalities in such a way that the external costs are appropriately internalized, i.e., reflected in the cost of production. Governments can thus indirectly affect private investment choices.

No form of energy production or use is without an environmental impact on a life cycle basis. This is true for all energy chains: from extracting resources, building facilities, and transporting material through the final conversion to useful energy services. The traditional air pollutants associated with fossil fuel combustion are principally sulphur dioxide (SO2), nitrogen oxides (NOx) and suspended particulate matter (PM); GHG emissions from fossil fuel combustion include most notably CO2 and methane (CH4). Trace elements and heavy metals, like arsenic and mercury are also associated with coal combustion. Nuclear power plants emit virtually none of these air pollutants associated with fossil fuel combustion. Hence, a major environmental benefit of nuclear power is a significant avoidance of the costs associated with both air pollution and GHG emissions.

These avoided external costs can be difficult to quantify and convert to monetary values; any valuation process remains subjective, and results vary across countries. Despite the uncertainties and the national differences in valuation of externalities, however, several major studies have sought to estimate the external costs of air pollution associated with different electricity generating technologies. Perhaps best known is the ExternE project (providing global and standardized assessments) sponsored by the European Union and Oak Ridge National Laboratory in the USA. A comparison is provided of the external costs estimated by ExternE over time and for different electricity generating technologies. [see report for graphical data]

…nuclear electricity generating costs are less sensitive to changes in fuel prices than are the costs of fossil fired generation. Although the benefits to the economy of the Republic of Korea of the opportunity for lower electricity prices from nuclear power were not estimated, it was noted that insulation from price volatility — another avoided cost — is a positive benefit of nuclear power. The trebling of uranium prices in 2006–2007 resulted in only a 6–8% difference in nuclear power generating costs, while a doubling of international fossil fuel prices translates into generation cost increases of about 35–45% for coal fired electricity and 70–80% for natural gas. Since the competitiveness of nuclear power depends in part on the economics of fossil fuel alternatives, such rising fossil fuel prices tend to improve nuclear power’s competitive standing.

Conversely, Australia opted not to pursue nuclear technologies at about the same time (~1970s). Based on public comments, there seems to be little chance of policy changes in the near future.

How has that decision worked out for us?

Thrust a spade into Terra Australis and you’ll probably be able to sell the contents. This has led to the development of a wombat economy (dig/sell). Our top 25 Exports in the fiscal year 2008/09 are listed below.

Rank, Commodity ($ billion, % growth from 2007/08)

1 Coal ($54.7, 123.9%) – Fossil Fuel
2 Iron ore & concentrates ($34.2, 66.9%)
3 Gold ($17.5, 42.7%)
4 Education-related travel services ($16.6, 22.7%)
5 Personal travel (excl education) services ($11.7, -2.8%)
6 Natural gas ($10.1, 72.3%) – Fossil Fuel
7 Crude petroleum ($8.3, -14.0%) – Fossil Fuel
8 Aluminium ores & conc (incl alumina) ($6.1, 3.3%)
9 Aluminium ($5.3, -3.9%)
10 Beef, f.c.f. ($5.0, 14.4%)
11 Wheat ($4.9, 71.0%)
12 Professional services ($3.7, 12.2%)
13 Passenger transport services ($3.7, -11.3%)
14 Medicaments (incl veterinary) ($3.6, 1.8%)
15 Copper ores & concentrates ($3.6, -13.4%)
16 Technical & other business services (3.4, -2.6%)
17 Copper ($2.8, -13.9%)
18 Refined petroleum (2.8, -23.3%) – Fossil Fuel
19 Business travel services ($2.7, -0.4%)
20 Passenger motor vehicles ($2.7, -20.8%)
21 Alcoholic beverages ($2.6, -6.9%)
22 Other transportation services ($2.4, -5.7%)
23 Meat (excl beef), f.c.f. ($2.3, 14.1%)
24 Telecom, computer & information services ($2.1, 12.1%)
25 Wool & other animal hair (incl tops) ($2.0, -19.2%)

With respect to our technical / industrial capacity, what does Australia manufacture that significantly contributes to our economy via large scale exports? Where is there evidence of sustained technological innovation or engineering excellence (large production volumes at sustained high quality and competitive cost)? Apparently, not much. Removing services, agricultural products, basic and raw materials leaves:

14 Medicaments
18 Refined petroleum
20 Passenger motor vehicles
21 Alcoholic beverages

Looking beyond our wombat like export tendencies, the Australian economy is heavily service oriented. Professional and Technical Services ranks very high in the value added list of Australian business sectors. Examine Australian business data (MS Excel) from the Australian Bureau of Statistics; not much requiring cutting-edge global technology leadership or robust industrial capacity; not much to counter the points made by Adi Paterson.

Australia is a country with many people who 'know', whereas the Koreans are a people who 'do'. Coincidentally, humanity stands at the dawn of a period in our collective history where an unprecedented amount of complex and highly technical work needs to get 'done'. With 40 years of demonstrated nuclear expertise, Korea seems well positioned to take advantage of a sizable opportunity.

Wednesday, 30 December 2009

Our impressively nuclear neighbours

Last week Reuters reported the start of the 912 megawatt Tomari-3 reactor in Japan's far north. According to the IAEA PRIS database, construction of this reactor began on 18-November-2004. So the duration of this project was roughly 5 years. The reactor went critical back in March and has been in commissioning since that time according to WNN. Different media reports state that this is the first new reactor to come into service in Japan for 3 years, that it will cut Japan's carbon-dioxide emissions by 20% of 1990 levels and that this is the last Gen II reactor planned. All future reactors are to be Gen III or beyond. This plant has received approval to irradiate MOX fuel.

Also in the news is Korea's win of a UAE power reactor project (US $20 bn for 4 reactors, with the possibility for $20 bn more in the future) as well as a US $173 million new research reactor project in Jordan.

Seems as if the nuclear business continues to thrive in Asia - and is quite lucrative at that.

Meanwhile

Australia's total coal exports for 2008-09 were $54.6 bn (~ US $50 bn) according to DFAT. This was an increase of 123.6% from the previous year. [Regarding the politicising of efforts to cut emissions and the impact on Australia's coal industry, I would be thrilled if we could just get to zero growth.]

Our uranium exports totalled $990 million, up 11.6% from the previous year. Ranking number 28 of all Australian exports, uranium sales contribute 0.4% of our total export revenue. [Coal is ranked number 1 and accounts for 23.7% of all exports.]

An endless coal train (~100 tonnes per car)

In 2009, a growing number of high profile media reports highlighted Australia's high per-capita carbon emissions.

Australian emissions were fairly unfazed by the GFC due to increasing demand and the decline in renewables generation with falling Snowy Hydro output (the result of prolonged drought). [The growth in other renewables sectors, efficiency or conservation programmes will have to accelerate to account for the fall in hydro generation before they will displace any emissions from fossil generation.]

4,000 MWe of fossil fuelled generation in being progressed in NSW.

sus·tain·able (sə stān′ə bəl) adjective
1. capable of being sustained
2. a) designating, of, or characterized by a practice that sustains a given condition, as economic growth or a human population, without destroying or depleting natural resources, polluting the environment, etc. sustainable agriculture
2. b) governed or maintained by, or produced as a result of, such practices sustainable growth

Saturday, 21 November 2009

Action (and nuclear) still required

As reported by the ABC, a typical Australian emits more carbon than any other person in the developed world. We are setting a very dangerous example and worse providing very low hanging fruit for any country or political leader seeking justification to strive for our comfortable lifestyle via increased emissions. We have a moral and ethical obligation to take significant action to reduce our emissions, in addition to the climate signals repeatedly knocking on our door.




From an April 2007 UN meeting (What's happened since then?)


The ABC report does contain some seemingly good news; that emissions have dipped slightly due to the financial crisis. However, this may provide a false sense of security and is certainly no cause for celebration for anyone expecting serious cuts by 2020, 2030 and/or 2050.

Emissions per unit GDP (carbon intensity) is another relevant metric. According to the US Government, Energy Information Administration, Australia / New Zealand’s carbon intensity ranks third in the OECD (behind Canada and South Korea). One wonders how Australia’s ranking would move if we were judged on our own. Carbon intensity is dropping, but if tangible action is not completed to reduce it further along with emission cuts per capita (i.e. if ‘real’ emissions are not cut considerably), any economic recovery will stress the climate via emissions increases.

If one reviews the two tables within the EIA page linked above, it can be seen that emissions per unit GDP continue to decrease – China and India are the best performers, as one would hope. However, emissions per person actually increase out to 2030 – here China is the worst performer and Australia/New Zealand only drops by 0.2%. However, both GDP and population increase over that time. Therefore, real emissions will increase in Australia and around the world; which in turn will lead to climate disaster according to Hansen, Brook and many, many others.

And there is tangible evidence that our real emissions will indeed rise. It can’t be any clearer than the two large fossil energy projects currently proposed in NSW. If these plants go forward, it will mark a significant failure to seriously cut Australian emissions. Their mere proposal should be a wake up call to anyone genuinely interested in climate change, emission cuts or Australian leadership in the upcoming climate negotiations. Australian energy policy falls short of delivering the energy security our economy requires and emission reductions we are obligated to achieve; for Australians at home and the world at large.

A serious national debate on holistic approaches to significantly cut our emissions is desperately needed. The debate must go beyond the fulfilment of campaign promises and it must recognise and address the risks posed from climate change – particularly for Australia. These risks must be compared in an objective and balanced context against those of nuclear power.

For example, climate scientist and blogger Prof Barry Brook is linking recent weather events to climate change. Consider that just one Australian bushfire resulted in over 3 times the fatalities than the immediate impact of the worst ever nuclear accident at Chernobyl (a flawed design that would never be built today). Furthermore, within a typical 5 year period, deaths from coal mining accidents in China alone exceed the projected long term death count from Chernobyl. One must question the true aim of modern anti-nuclear campaigners who seemingly care about public safety at home or abroad.

Nuclear waste issues are indeed a challenge that must be addressed, but the world has repeatedly demonstrated the ease of storing high level spent waste in interim facilities until permanent solutions can be implemented. The good news here is that there is really no rush, unlike action to curb emissions which is becoming more urgent with the passage of time. There is also the very real possibility that spent nuclear fuel could be consumed as a fuel source in fourth generation reactors.

Certainly, proliferation must be managed. This need has been recognised by both the Rudd and Obama administrations, among others. Collaborative efforts have been stepped up in recent years as has the IAEA budget in line with calls for enhanced nuclear security by IAEA Director General Mohamed ElBaradei. Again, fourth generation reactors include a prerequisite design criteria to mitigate proliferation risk through either the consumption of plutonium or the blending of high radiation fission products into the fuel to make physical protection an inherent property of the fuel.

Economic anti-nuclear arguments (too expensive, too long) often conviently assume nuclear as a stand-alone emissions reduction technology as opposed to one of a suite of technologies deployed in parallel between now and 2050. In Australia, we have been led to believe we are ‘blessed’ with renewable, conservation and efficiency options that are more rapidly and more cost effectively deployed. Great! Then deploy them and let’s get those two fossil projects in NSW cancelled.

Without tangible evidence that non-nuclear actions will achieve the necessary cuts, the allocation of additional resources to the problem is justified. There is evidence from, say large renewable deployment efforts in Europe, to suggest a non-nuclear strategy challenges the ability of a nation to achieve significant emissions cuts (see this story on anti-nuclear Austria’s Kyoto target performance vs. its EU peers).

With respect to the timing, there is additional evidence that nuclear project implementation performance improves with experience. Citing the current projects in Finland and France is counterproductive since they are early implementations of a First-of-a-kind third generation design. As experience is gained, the implementation of this design will improve just as second generation design project performance has over the past few decades, particularly in Korea and Japan. For more details on modern nuclear plant construction – refer to this post.

The justification to keep nuclear power off the table in Australia is simply not there. In fact there is considerable, objective evidence to the contrary.

Sunday, 15 November 2009

Non-proliferation and the US nuclear waste fund

Proliferation

Australia continues to refuse to export uranium to India, citing a longstanding policy that any country wishing to import Australian Uranium must, as a prerequisite, be party to the nuclear non-proliferation treaty (NPT). This policy and the NPT are manifestations of the universal acceptance of the risk posed by the proliferation of nuclear weapons.

Conversely, Australia freely exports coal to India among other countries. We are the world's #1 coal exporter (fossil fuel based emission proliferator?) - by far.

Share of coal exports (Australian Coal Association)

Why the double standard? Obviously there is no universally accepted acknowledgment of risk posed from the ongoing reliance on fossil fuels.

What is that? "If Australia doesn't sell the coal, then Indonesia or some other supplier will?"

But North Korea has been accused of assisting Syria in its attempts to develop non-peaceful nuclear technologies. If that is so, shouldn't the US, Russia, France, the UK and/or China be rushing into the nuclear weapons market? Aren't we all just in this for the economic sustainability??

Certainly NOT. At some point, something must trump raw and unmitigated financial gain.

The nuclear waste fund

In the USA, a fraction of one cent per KW of nuclear generated electricity consumed is applied to a nuclear waste fund. This scheme was developed to ensure customers of utilities relying on nuclear generation technology assume responsibility for the final disposition of that industry's waste. It is one of many examples of a user-pays solution to a technical problem.

One could make the 'no solution yet' point with respect to nuclear waste, but first consider my post on nuclear vs. fossil waste. At least nuclear power in the USA has a reserve of cash to apply to the challenge (and my hope is that this 'waste' is recognised as a valuable fuel for the next generation of reactors).

But no such approach yet exists for the minimisation, control or disposition of fossil fuel waste; despite the massive external costs society is shouldering from our reliance on it, according to consistent studies in Australia, the USA and Europe.

Consistent, objective quantification and management of risk

As I interpret Prof. Jim Hansen's recent presentation, the risks from our use of fossil fuels exceed those of nuclear weapons proliferation. This is because even if nuclear weapons proliferate to every corner of the globe, there is no guarantee they will be used. In such a perverse hypothetical, one could even make a large scale deterrent argument. Let me be clear, I am not advocating any reduction in global nuclear non-proliferation efforts. My point is that scientific consensus assures us that a certain degree of climate change is already 'in the pipeline' due to the inertia from past and current emissions. And if the use of fossil fuel technologies is allowed to continue - or worse - to proliferate further; the world will suffer the following consequences according to Hansen:

  • Ice Sheet Collapse,
  • Mass Extinctions,
  • Methane Clathrate Instability
  • Economic and Social Chaos
  • Runaway greenhouse warming

I read Hansen's presentations, letters and other writings as a call for a global fossil fuel technology non-proliferation treaty, in particular coal (zero new plants without co-deployed carbon capture and storage). Considering the magnitude of the risks, how can one attempt to justify lesser actions, to postpone action or to greenwash the status quo?

In his presentation, Hansen cites the need for a modern day Winston Churchill. This reminds me of the James Freeman Clarke quote, "A politician thinks of the next election. A statesman, of the next generation." (...an Australian, the next poll?)

Jobs?

Nonsense. What about the jobs worldwide related to the production, maintenance and security of nuclear weapons? Does anyone want to step forward to defend them as a counter argument for the NPT? What about jobs in the global tobacco industry (farmers, tobacco product manufacturers, the global supply chain, retailers, vending machines, etc.)? Do we consider them when taxes are applied to the sale of tobacco products to offset external (healthcare) costs or laws are passed to restrict the ability to smoke in public places? Probably, but the offsetting risks are far more significant.

Fossil fuels are a carcinogen for our planet; literally as described in the studies linked above.

Furthermore, if all coal plants not employing CCS are to be completely phased out by 2030, a massive infrastructure development program will be required, especially in Australia with our 80% reliance on coal based electricity production had heavy reliance on non-sustainable, fossil fueled transport. We are already seeing job creation in the renewable energy market (solar hot water, home insulation, and wind farm deployment). This will have to continue and be significantly accelerated toward a scale that will allow the shift away from fossil fuels. And that means Australia's serious consideration of nuclear power as part of an internationally binding legal commitment to cut emissions as required to support a global 350 ppm scenario.

Fee and Dividend

Hansen's advocacy for a fee and dividend strategy can be compared with America's nuclear waste fund. Critics are quick to mock Hansen's idea and fear monger voters by labelling it a 'tax'. Okay then, let's cart out the bogyman, call the nuclear waste fund a 'tax', eliminate it and allow the market to subsequently solve the problems related to nuclear power's external costs since the example set to date by the fossil industry is so stellar.

Far from a simple tax, fee and dividend is a user pays system. Where those whose lifestyle is more carbon intensive, pay for the impact of the subsequent waste. Those with a leaner carbon lifestyle will be financially rewarded for their efforts and encouraged to further develop their good habits.

I don't want to repeat the detailed mechanism of fee and dividend. See the links above and below for that information. To understand the differences between fee and dividend and cap and trade, please see the video below. I do prefer fee and dividend to cap and trade because it applies a significant price incentive directly at the consumer level, helping motivate the large scale behavioral changes necessary to achieve aggressive emission reductions worldwide.

I will repeat Hansen's warnings about cap and trade. His concerns include the flow of money to carbon permit traders and the virtual locking in of the status quo / business as usual scenario - particularly if free permits are issued. In such a situation, permit traders have a cash incentive to prolong the transition to low emissions and ensure emissions never fall below the caps (else the permit market could collapse). This concern was echoed in a post by Steve Kirsch at BraveNewClimate. That post included the below video made by two attorneys working for the US Environmental Protection Agency.



Tuesday, 20 October 2009

4,000 MWe Fossil for NSW

Hat tip to Rising Tide Australia.

Further evidence that saying no to nuclear, results in more fossil fueled power plants. The NSW Planning website contains project concepts for 4,000 MWe of electricity generation capacity in the form of:

2,000 MWe Bayswater B Power Station

2,000 MWe Mount Piper Power Station Extension

The above links will direct you to the online submission web pages. If you've got something to say, submissions close October 26.

Friday, 2 January 2009

James Hansen sends the Obamas a personal appeal

Back in March 2008, Professor [and chief NASA scientist] James Hansen sent a letter to Kevin Rudd asking for Australia's leadership in the fight against climate change. The June 5 reply may be found here.

The below correspondence is being transmitted to Barack and Michelle Obama. Much of its contents are relevant to Australia, our economy and our own struggles with respect to emissions control and climate change.

Everything has been copied below. The relevant links are here and here. [The enclosure may be found at the second link.]

Note to Jim Hansen's peers who commented on his draft letter

Thanks to the people on my e-mail list for all the suggestions (more than 100!) about my draft “Tell Barack Obama the Truth – the Whole Truth”. Most frequent criticism: the need for an executive summary. Two people suggested: put a summary in the form of a letter to Michelle and Barack Obama. I like that idea. They are equally smart lawyers, and if we can get either of them to really focus on the actions that are needed, the planet has a chance.

The letter turned out to be four pages. Sorry. But I wrote a note to John Holdren, which can serve as an executive summary. John has promised to deliver the letter, but cannot do so prior to the inauguration. That delay is a problem for one of the three recommendations: tax and dividend. Thus I am making the letter available at
http://www.columbia.edu/~jeh1/mailings/20081229_DearMichelleAndBarack.pdf
and the revised “Tell Barack Obama the Truth” at
http://www.columbia.edu/~jeh1/mailings/20081229_Obama_revised.pdf
in hopes of getting the information to people who continue to push for “goals” and “caps”.

“Goals” for percentage CO2 emission reductions and “cap & trade & dividend” are a threat to the planet, weak tea, not commensurate with the task of getting CO2 back to 350 ppm and less. Note:

(1) There must be a tax at the mine or port of entry, the first sale of oil, gas and coal, so every direct and indirect use of the fuel is affected. Anything less means that the reduction of demand for the fuel will make it cheaper for some uses; e.g., people will start burning coal in their stoves. Peter Barnes’ idea to push the cap upstream to the extent possible is not adequate nor is a ‘gas tax’ suggested by NY Times and others. A comprehensive approach is needed.

(2) “Cap & trade & dividend” creates Wall Street millionaires and complex bureaucracy. The public is fed up with that – rightly so. A single carbon tax rate can be adjusted upward affecting all activities appropriately. With 100% dividend the public will allow a carbon price adequate to the job, i.e., helping us move to the postfossil-fuel world.

(3) Supply ‘caps’ cannot yield a really big reduction because of the weapon: ‘shortages’. All a utility has to say is ‘blackout coming’ and politicians and public have to cave in – we are not going to have the lights turned out. Will the public allow a high enough tax rate? Yes, dividends will exceed tax for most people concerned about their bills.

(4) A tax is not sufficient. All other measures, such as building codes, are needed. But with millions of buildings, all construction codes and operations cannot be enforced. A rising carbon price provides effective enforcement.

(5) Wouldn’t it be cheaper to let people burn the dirtiest fuel? No. The clean future that we aim for, including more efficient energy use, is not more expensive. For example, you may have read about passively heated homes that require little energy and increase construction costs only several percent. Such possibilities remain the oddball (with high price tag), not the standard construction, unless the government adopts policies that make things happen.

Some of you suggested that I should only explain the urgency of the climate crisis, the need to get back to 350 ppm CO2 and less. Politicians are happy if scientists provide information and then go away and shut up. But science and policy cannot be divorced. What I learned in the past few years is that politicians often adopt convenient policies that can be shown to be inconsistent with long-term success, given readily available scientific data and empirical information on policy impacts.

Jim Hansen

The referenced note to John Holdren

Dear John,

A few weeks ago in London, where Anniek was running after me from one meeting to another, she had a heart attack (fortunately we were near a very good hospital -- the problem should be permanently fixed via the stent they inserted plus a better diet). As we waited a week for her to be able to fly I wrote the attached letter to the Obamas. Could you possibly forward this letter to them?

I realize that it is a long letter (4 pages + a page of footnotes). But global warming likely will be, eventually, the problem of their lifetime. His presidency may be judged in good part on whether he was able to turn the tide -- more important, the futures of young people and other life will depend on that. So four pages may not be intolerably long.

My hope is that he (even better they) will want to understand the matter, not just rely on advisers. I refer not to the details of climate science, but rather what needs to be done. The danger is that the compromises and special interests inherent in Kyoto-style targets and cap-and-trade will be accepted because of bureaucratic momentum. Other intolerable aspects of current approaches are the escape hatches (plant a tree somewhere, reduce some other gas, etc.). Carbon dioxide is special because of its strange lifetime (eventually exceedingly long) and the fact that it acidifies the ocean. Also it needs to be recognized that forestation can not be traded for more fossil fuels because the forests are needed to help bring down the current amount of CO2.

The three points that I raise concern: (1) coal, (2) carbon tax, and (3) nuclear power.

(1) The critical need to cut off the coal source soon must be recognized. I was surprised that in 90 minutes I could not get the German Environmental Minister to understand that their proposed "carbon cap" would not allow them to build 20 more coal-fired power plants. I kept saying "if you burn more coal you must convince Russia to leave its oil in the ground" and he would say "we will tighten the carbon cap". Japan thinks that it did fine in meeting its Kyoto obligations, even though its coal use and CO2 emissions increased. [Japan used Kyoto allowed escape hatches. The Earth has no escape hatch.]

(2) A carbon tax (across all fossil fuels at their source) is essential, I believe, for effectiveness. Any less comprehensive cap will reduce the price of the fuel for any other uses.

A rising tax (with all the other needed measures such as building codes, vehicle efficiencies, renewable energies...) will help constrain demand for the fuel. When gasoline hits $4 - 5/gallon again, most of that should be tax staying in the country and returned as dividend, providing the consumer the means to purchase more efficient products and incentive for entrepreneurs to develop them. A rising tax will help keep the price paid for the oil itself (or other fossil fuel) lower, thus making it unprofitable to go to the most extreme places on the planet to extract the last drop of oil. Instead we can move on sooner to the energies of the post-fossil-fuel-era.

A carbon cap that makes one more stinking millionaire on the backs of the public is going to infuriate the public. Me too. There is no need to support lobbyists, traders, and special interests. The tax should be proportional to the carbon amount and the dividend calculation will only require long division, which even a civil servant can do.

100% of the tax should go into the dividends. However, if some countries do not apply an equivalent tax, a duty should be collected on fossil-fuel dependent products imported from that country. Such import duties might be used, in part, to finance reforestation, climate adaptation, or other climate or energy related needs.

(3) Nuclear power: it would be great if energy efficiency, renewable energies, and an improved ("smart") electric grid could satisfy all energy needs. However, the future of our children should not rest on that gamble. The danger is that the minority of vehement antinuclear "environmentalists" could cause development of advanced safe nuclear power to be slowed such that utilities are forced to continue coal-burning in order to keep the lights on. That is a prescription for disaster.

There is no need for a decision to deploy nuclear power on a large scale. What is needed is rapid development of the potential, including prototypes, so that options are available. We have to avoid a "FutureGen" sort of drag-out. It seems to me that it is time to get fed-up with those people who think they can impose their will on everybody, and all the consequences that might imply for the planet, by putting this R&D on a slow boat to nowhere instead of on the fast-track that it deserves.

I hope that you will be willing to forward this to the Obamas. Wishing you the best for the holiday season, and especially success in your new job!

Best regards,
Jim Hansen

Letter to Michelle and Barack Obama

29 December 2008
Michelle and Barack Obama
Chicago and Washington, D.C.
United States of America

Dear Michelle and Barack,

We write to you as fellow parents concerned about the Earth that will be inherited by our children, grandchildren, and those yet to be born.

Barack has spoken of ‘a planet in peril’ and noted that actions needed to stem climate change have other merits. However, the nature of the chosen actions will be of crucial importance.

We apologize for the length of this letter. But your personal attention to these ‘details’ could make all the difference in what surely will be the most important matter of our times.

Jim has advised governments previously through regular channels. But urgency now dictates a personal appeal. Scientists at the forefront of climate research have seen a stream of new data in the past few years with startling implications for humanity and all life on Earth.

Yet the information that most needs to be communicated to you concerns the failure of policy approaches employed by nations most sincere and concerned about stabilizing climate. Policies being discussed in national and international circles now, which focus on ‘goals’ for emission reduction and ‘cap and trade’, have the same basic approach as the Kyoto Protocol. This approach is ineffectual and not commensurate with the climate threat. It could waste another decade, locking in disastrous consequences for our planet and humanity.

The enclosure, “Tell Barack Obama the Truth – the Whole Truth” was sent to colleagues for comments as we left for a trip to Europe. Their main suggestion was to add a summary of the specific recommendations, preferably in a cover letter sent to both of you.

There is a profound disconnect between actions that policy circles are considering and what the science demands for preservation of the planet. A stark scientific conclusion, that we must reduce greenhouse gases below present amounts to preserve nature and humanity, has become clear to the relevant experts. The validity of this statement could be verified by the National Academy of Sciences, which can deliver prompt authoritative reports in response to a Presidential requesti. NAS was set up by President Lincoln for just such advisory purposes.

Science and policy cannot be divorced. It is still feasible to avert climate disasters, but only if policies are consistent with what science indicates to be required. Our three recommendations derive from the science, including logical inferences based on empirical information about the effectiveness or ineffectiveness of specific past policy approaches.

(1) Moratorium and phase-out of coal plants that do not capture and store CO2.

This is the sine qua non for solving the climate problem. Coal emissions must be phased out rapidly. Yes, it is a great challenge, but one with enormous side benefits.

Coal is responsible for as much atmospheric carbon dioxide as the other fossil fuels combined, and its reserves make coal even more important for the long run. Oil, the second greatest contributor to atmospheric carbon dioxide, is already substantially depleted, and it is impractical to capture carbon dioxide emitted by vehicles. But if coal emissions are phased out promptly, a range of actions including improved agricultural and forestry practices could bring the level of atmospheric carbon dioxide back down, out of the dangerous range.

As an example of coal’s impact consider this: continued construction of coal-fired power plants will raise atmospheric carbon dioxide to a level at least approaching 500 ppm (parts per million). At that level, a conservative estimate for the number of species that would be exterminated (committed to extinction) is one million. The proportionate contribution of a single power plant operating 50 years and burning ~100 rail cars of coal per day (100 tons of coal per rail car) would be about 400 species! Coal plants are factories of death. It is no wonder that young people (and some not so young) are beginning to block new construction.

(2) Rising price on carbon emissions via a “carbon tax and 100% dividend”.

A rising price on carbon emissions is the essential underlying support needed to make all other climate policies work. For example, improved building codes are essential, but full enforcement at all construction and operations is impractical. A rising carbon price is the one practical way to obtain compliance with codes designed to increase energy efficiency.

A rising carbon price is essential to “decarbonize” the economy, i.e., to move the nation toward the era beyond fossil fuels. The most effective way to achieve this is a carbon tax (on oil, gas, and coal) at the well-head or port of entry. The tax will then appropriately affect all products and activities that use fossil fuels. The public’s near-term, mid-term, and long-term lifestyle choices will be affected by knowledge that the carbon tax rate will be rising.

The public will support the tax if it is returned to them, equal shares on a per capita basis (half shares for children up to a maximum of two child-shares per family), deposited monthly in bank accounts. No large bureaucracy is needed. A person reducing his carbon footprint more than average makes money. A person with large cars and a big house will pay a tax much higher than the dividend. Not one cent goes to Washington. No lobbyists will be supported. Unlike cap-and-trade, no millionaires would be made at the expense of the public.

The tax will spur innovation as entrepreneurs compete to develop and market low-carbon and no-carbon energies and products. The dividend puts money in the pockets of consumers, stimulating the economy, and providing the public a means to purchase the products.

A carbon tax is honest, clear and effective. It will increase energy prices, but low and middle income people, especially, will find ways to reduce carbon emissions so as to come out ahead. The rate of infrastructure replacement, thus economic activity, can be modulated by how fast the carbon tax rate increases. Effects will permeate society. Food requiring lots of carbon emissions to produce and transport will become more expensive and vice versa, encouraging support of nearby farms as opposed to imports from half way around the world.

The carbon tax has social benefits. It is progressive. It is useful to those most in need in hard times, providing them an opportunity for larger dividend than tax. It will encourage illegal immigrants to become legal, thus to obtain the dividend, and it will discourage illegal immigration because everybody pays the tax, but only legal citizens collect the dividend.

“Cap and trade” generates special interests, lobbyists, and trading schemes, yielding non productive millionaires, all at public expense. The public is fed up with such business. Tax with 100% dividend, in contrast, would spur our economy, while aiding the disadvantaged, the climate, and our national security.

(3) Urgent R&D on 4th generation nuclear power with international cooperation.

Energy efficiency, renewable energies, and a “smart grid” deserve first priority in our effort to reduce carbon emissions. With a rising carbon price, renewable energy can perhaps handle all of our needs. However, most experts believe that making such presumption probably would leave us in 25 years with still a large contingent of coal-fired power plants worldwide. Such a result would be disastrous for the planet, humanity, and nature.

4th generation nuclear power (4th GNP) and coal-fired power plants with carbon capture and sequestration (CCS) at present are the best candidates to provide large baseload nearly carbon-free power (in case renewable energies cannot do the entire job). Predictable criticism of 4th GNP (and CCS) is: “it cannot be ready before 2030.” However, the time needed could be much abbreviated with a Presidential initiative and Congressional support. Moreover, improved (3rd generation) light water reactors are available for near-term needs.

In our opinion, 4th GNPii deserves your strong support, because it has the potential to help solve past problems with nuclear power: nuclear waste, the need to mine for nuclear fuel, and release of radioactive materialiii. Potential proliferation of nuclear material will always demand vigilance, but that will be true in any case, and our safety is best secured if the United States is involved in the technologies and helps define standards.

Existing nuclear reactors use less than 1% of the energy in uranium, leaving more than 99% in long-lived nuclear waste. 4th GNP can “burn” that waste, leaving a small volume of waste with a half-life of decades rather than thousands of years. Thus 4th GNP could help solve the nuclear waste problem, which must be dealt with in any case. Because of this, a portion of the $25B that has been collected from utilities to deal with nuclear waste justifiably could be used to develop 4th generation reactors.

The principal issue with nuclear power, and other energy sources, is cost. Thus an R&D objective must be a modularized reactor design that is cost competitive with coal. Without such capability, it may be difficult to wean China and India from coal. But all developing countries have great incentives for clean energy and stable climate, and they will welcome technical cooperation aimed at rapid development of a reproducible safe nuclear reactor.

Potential for cooperation with developing countries is implied by interest South Korea has expressed in General Electric’s design for a small scale 4th GNP reactor. I do not have the expertise to advocate any specific project, and there are alternative approaches for 4th GNP (see enclosure). I am only suggesting that the assertion that 4th GNP technology cannot be ready until 2030 is not necessarily valid. Indeed, with a Presidential directive for the Nuclear Regulator Commission to give priority to the review process, it is possible that a prototype reactor could be constructed rapidly in the United States.

CCS also deserves R&D support. There is no such thing as clean coal at this time, and it is doubtful that we will ever be able to fully eliminate emissions of mercury, other heavy metals, and radioactive material in the mining and burning of coal. However, because of the enormous number of dirty coal-fired power plants in existence, the abundance of the fuel, and the fact that CCS technology could be used at biofuel-fired power plants to draw down atmospheric carbon dioxide, the technology deserves strong R&D support.

Summary

An urgentiv geophysical fact has become clear. Burning all the fossil fuels will destroy the planet we know, Creation, the planet of stable climate in which civilization developed.

Of course it is unfair that everyone is looking to Barack to solve this problem (and other problems!), but they are. He alone has a fleeting opportunity to instigate fundamental change, and the ability to explain the need for it to the public.

Geophysical limits dictate the outline for what must be donev. Because of the long lifetime of carbon dioxide in the air, slowing the emissions cannot solve the problem. Instead a large part of the total fossil fuels must be left in the ground. In practice, that means coal.

The physics of the matter, together with empirical data, also define the need for a carbon tax. Alternatives such as emission reduction targets, cap and trade, cap and dividend, do not work, as proven by honest efforts of the ‘greenest’ countries to comply with the Kyoto Protocol:

(1) Japan: accepted the strongest emission reduction targets, appropriately prides itself on having the most energy-efficient industry, and yet its use of coal has sharply increased, as have its total CO2 emissions. Japan offset its increases with purchases of credits through the clean development mechanism in China, intended to reduce emissions there, but Chinese emissions increased rapidly.

(2) Germany: subsidizes renewable energies heavily and accepts strong emission reduction targets, yet plans to build a large number of coal-fired power plants. They assert that they will have cap-and-trade, with a cap that reduces emissions by whatever amount is needed. But the physics tells us that if they continue to burn coal, no cap can solve the problem, because of the long carbon dioxide lifetime.

(3) Other cases are described on my Columbia University web site, e.g., Switzerland finances construction of coal plants, Sweden builds them, and Australia exports coal and sets atmospheric carbon dioxide goals so large as to guarantee destruction of much of the life on the planet.

Indeed, ‘goals’ and ‘caps’ on carbon emissions are practically worthless, if coal emissions continue, because of the exceedingly long lifetime of carbon dioxide in the air. Nobody realistically expects that the large readily available pools of oil and gas will be left in the ground. Caps will not cause that to happen – caps only slow the rate at which the oil and gas are used. The only solution is to cut off the coal source (and unconventional fossil fuels).

Coal phase-out and transition to the post-fossil fuel era requires an increasing carbon price. A carbon tax at the wellhead or port of entry reduces all uses of a fuel. In contrast, a less comprehensive cap has the perverse effect of lowering the price of the fuel for other uses, undercutting clean energy sources.vi In contrast to the impracticality of all nations agreeing to caps, and the impossibility of enforcement, a carbon tax can readily be made near-global.vii

A Presidential directive for prompt investigation and proto-typing of advanced safe nuclear power is needed to cover the possibility that renewable energies cannot satisfy global energy needs. One of the greatest dangers the world faces is the possibility that a vocal minority of anti-nuclear activists could prevent phase-out of coal emissions.

The challenges today, including climate change, are great and urgent. Barack’s leadership is essential to explain to the world what is needed. The public, young and old, recognize the difficulties and will support the actions needed for a fundamental change of direction.

James and Anniek Hansen
Pennsylvania
United States of America

i Given the brilliant scientists Barack has appointed to his team, is there need for a National Academy of Sciences meeting? Yes, his team surely would welcome not only clarification of the urgency of the climate situation, but also interdisciplinary (economics, engineering, physics, biology…) discussion and evaluation of policy options. Barack’s first year or two in office is almost surely our last best chance to get the climate and energy strategy right in time to save the future of our children and grandchildren.

ii I am not referring to the DOE’s “Generation-4” nuclear program, which is a diffuse program that will not yield rapid payoff. Instead, as discussed below, there would need to be a Presidential directive to pursue a path(s) with the potential to contribute to decarbonization of global energy systems as rapidly as practical.

iii 4th generation reactors can include automatic shutdown in case of an earthquake or other interruption. It is noteworthy that, even with the presence of poorly designed nuclear power plants in the past, and in some cases demonstrably sloppy operations, the waste from coal-fired power plants has done far more damage, and even spread more radioactive material around the world than all nuclear power plants combined, including Chernobyl.

iv Urgency derives from the nearness of climate tipping points, beyond which climate dynamics will cause rapid changes out of humanity’s control. Concern about such behavior derives not from theory or speculation, but from improving knowledge of how the Earth responded to past changes of atmospheric composition and from observations of ongoing changes.

Tipping points occur because of amplifying feedbacks. Feedbacks include loss of Arctic sea ice, melting glaciers and ice sheets, release of ‘frozen’ methane as tundra melts, and growth of vegetation on previously frozen land. The surface changes increase the amount of sunlight absorbed by Earth. Added methane reduces heat radiation to space, amplifying the warming effect of carbon dioxide produced by burning fossil fuels.

Analysis of Earth’s history helps reveal the level of greenhouse gases needed to maintain a climate resembling the Holocene, Creation, the period of reasonably stable climate in which civilization developed. That carbon dioxide level, unsurprisingly in retrospect, is less than the current 385 ppm (parts per million). The safe amount for the long-term is no more than 350 ppm, probably less. Pre-industrial carbon dioxide amount was 280 ppm. Precise definition of a safe range requires better knowledge of all climate forcing mechanisms.

What is clear is that continuing fossil fuel emissions will put Earth on an inexorable course toward an icefree state, a course punctuated by increasingly extreme disasters with hundreds of millions of climate refugees. A large fraction of species on Earth face certain extinction, if we burn most fossil fuels without capturing and storing the carbon dioxide. New species may come into being over many thousands of years, but all generations of our descendants that we can imagine will live on a far more desolate planet than the one we knew.

v Total carbon in conventional fossil fuels (oil, gas, and coal), if released to the air, is enough to initiate a dynamic transition to an ice-free climate state, a transition that would be out of humanity’s control. A large fraction of the carbon dioxide emitted in burning fossil fuels stays in the air many centuries. Thus the climate problem cannot be solved by only slowing the rate at which we burn the fossil fuels.

Solution requires that a large part of total fossil fuels is left in the ground, or the carbon dioxide captured and stored. In addition, the unconventional fossil fuels (oil shale, tar sands, methane hydrates) must be left largely untouched or the carbon dioxide captured and stored.

vi Now, with oil prices down, is when a hefty carbon tax should be added. In the future, when the price of gasoline again reaches and passes $4/gallon, most of this cost will be tax, staying in the country, spread among consumers, and driving our economy to a clean future. The public can understand this, if Barack explains it, and they will accept it, if there is 100% dividend.

vii A carbon tax requires agreement of only several major nations. If any given nation does not apply the tax, an equivalent duty can be applied to their products at ports of entry
.

Wednesday, 1 October 2008

Garnaut submits final report

The final report may be found here.

I don't have much to add from previous posts on Targets and Trajectories, another here and again here.

Nuclear power is mentioned in a similar fashion as it was in the draft reports. Public opinion remains the principal hurdle and Garnaut includes it as a later, if not last, resort. I note the cost scenario in the report [Chapter 20] was only for the 550 ppm carbon-dioxide scenario and not the 450 ppm scenario. I would like to have seen the later as well.

The report includes recommendations regarding nuclear research - basically that Australia is not a global research leader in any nuclear power technology field and its resources would be better served elsewhere. Personally, I think we could develop some helpful waste mitigation, permanent isolation and storage technologies for deployment, but other countries are far in the led as the report points out.

The report goes 'all-in' for coal, gas and carbon capture; betting the proverbial farm on the development effort recently launched by Government's announcement of a $100 million carbon capture research initiative. The case made for this approach is an economic one: why wouldn't Australia pursue a solution which is also in its own best interest? The success of carbon capture development would bring with it, tremendous political and economic advantage within Australia and beyond. However, there is one warning that comes in the form of a firm recommendation:

Priority should be given to the resolution of whether a near-zero coal future is even feasible, either partially or in total. If it is not, then Australia needs to know as soon as possible, so that all who depend on the coal industry can begin the process of adjustment, and so that adequate and timely investments are made in other industries.

This gives an indication of the both the current state of carbon capture technology development as well as the liberty taken with respect to the resulting assumptions. In the end, it may not work at all. That risk may need some serious mitigating actions and attention.

If one examines the projected contributions of renewables, it appears that significant technology development assumptions have been made in this area as well. The projections are ambitious and will also require aggressive technology development and deployment.

My concern is when these assumptions come face to face with the more pragmatic world of engineering technology deployment - complete with budget constraints, schedule pressure and resource limitations - Australia will be looking at a very high emissions future.

Copy this path in a significant number of countries around the world [If Australia can bet the farm on carbon capture, why can't everyone else??]. If carbon capture fails to materialise, the world will need a fallback plan.

Coincidentally, I find I have some company. Ziggy Switkowski submitted this report, where he advocates the allocation of at least some resources to climate change adaptation.

This requires planning for extreme weather events and natural disasters, inadequate rainfall and water shortages, higher utility and food prices and insurance costs, drought-proofing, better health services for the vulnerable, and so on. And, of course, the responsible management of finite resources and fragile environments.

Solutions to these issues do not require international accords and are largely within our control and budgets. And their relevance is independent of the accuracy of climate forecasts or one's position in the climate change debate.

Friday, 5 September 2008

Garnaut - Targets and Trajectories

The report may be found here.

There are two references to nuclear power, copied below.

What the rest of the world notices most about Australian emissions is that ours are the highest per capita in the OECD; that over the past several decades they have been growing faster than those in other OECD countries; and that while in 1971 the emissions intensity of Australian primary energy supply was similar to the OECD as a whole, in recent years it has been more than one-third higher (Draft Report, Chapter 8, Figure 8.6). There are good reasons why Australia became relatively more dependent on a high-emissions source of energy, coal, while the remainder of the OECD was reducing the proportionate role of coal and increasing the contributions of low-emissions energy, including nuclear. But whatever the reasons, they are not easily reconciled with the idea that Australia is leading the world in emissions reduction.

It is often said in Australia that developing countries are strongly resistant to reductions in emissions, and that it is unrealistic to expect them to participate in global constraints on emissions. This is too simple. China’s selective withdrawal of export rebates within its value added tax, the export taxes on a range of energy-intensive products, its discouragement of expansion of energy-intensive industries and its specific regulatory constraints on investment in steel, aluminium and cement production add up to more substantial constraints on the most emissions-intensive industries than would occur in Australia in the early years of an emissions trading system. China’s active encouragement of low-emission sources of power (hydroelectric, wind, nuclear, biomass, biofuels) goes beyond current Australian efforts. These measures stand alongside a domestic policy commitment to reduce the energy intensity of economic activity by four percentage points per annum until 2020. Data released in August 2008 show the energy intensity of Chinese GDP falling by 3.7 per cent in 2007—the first sign of good intentions on energy intensity being reflected in policy outcomes.

In the two country examples above Australia's rejection of nuclear power compared to the OECD is linked to our current emissions reduction challenges. China, on the other hand, through its deployment of nuclear power - in concert with the parallel deployment of other technologies and strategies - has already achieved tangible evidence of their 'good intentions'.

There is a special section devoted to the future use of coal [heavily dependent on near zero leakage CCS technology]. The report remains technology-neutral beyond these statements, referring only to 'low-emissions technologies'.

Section 6 of the report addresses the fact that despite Australia's contribution of only 1.5% of total global emissions - 'Australia matters'. Garnaut concludes:

Australia matters. What we do matters. When we do it matters. It would be really silly to take action with costs to ourselves meant to assist the emergence of a good international agreement, but to do it too late to have a chance of avoiding high risks of dangerous climate change. What we do now, in time to influence the global mitigation regime from the end of the Kyoto period, is of high importance. What we do later runs the risk of being inconsequential in avoiding dangerous climate change.

There are already reports in the media calling the proposed trajectories inadequate. Calls for greater reductions within the context of a sustainable Australian economy will continue to increase the attractiveness of nuclear power.

Thursday, 28 August 2008

Western Australia politics and a Queensland coal union

In Western Australia, Premier Alan Carpenter has promised to initiate legislation to ban the mining of Uranium if reelected. He is reported to have claimed that "most of the world is moving away from nuclear power".

That claim is not supported by:
  1. The ongoing nuclear expansion programme within the UK,
  2. Italy's recent vote to reintroduce nuclear power following a complete rejection of the technology in the years immediately following the Chernobyl accident,
  3. Reports of statements from German Chancellor Angela Merkel signaling the potential reversal of their nuclear phase-out policy,
  4. A dozen license applications within the past year in the USA (and countless approvals and applications for licensing renewals / extensions at currently operating facilities there),
  5. Several expansion announcements over the past two years from China - signalling repeated acceleration of their nuclear power development programme,
  6. Sweden's serious considerations to reverse its phase-out policy as well as notable public support for the spent fuel repository,
  7. Argentina's resumption of a stalled nuclear construction project and their efforts to partner with Brazil to further develop nuclear power capacity,
  8. Serious interest in currently non-nuclear countries such as Vietnam, Thailand, Jordan, the United Arab Emirates to name a few,
  9. A recent tender for a new reactor in Slovakia,
  10. Increasing interest in Canada, South Korea as well as other countries.

The proposed legislation has been criticised by WA business groups as well as traditional owners.

Also in the news is a report that the Construction Forestry Mining Energy Union will soon launch an ad campaign with the slogan, "Nuclear power will kill the coal industry."

This claim seems highly unlikely.

First, in this radio interview [hat tip to Luke Weston], Dr. Ziggy Switkowski clarifies that it is not reasonable to expect Australia to have its first nuclear reactor until shortly after 2020. [However, Macarthur Coal Ltd. Chief Executive Officer Nicole Hollows recently predicted 10 years.]

Also, most believe nuclear's potential role represents only a portion of Australia's total electricity generation capability and that with efficiency, conservation, wind, solar, geothermal and considerable development in carbon capture technology, our carbon emissions can be brought under control. As Ziggy Switkowski says, "This is not a zero sum gain".

Finally, the WNN article claims the union is fishing for support of a $1.5 Billion investment in clean coal currently being advocated by Labor and that raising the nuclear spectre will help keep Labor in power. This claim is supported by quotes from this article in the Business Spectator.

1 reactor in 10 to 15 years with up to another 24 in the 30 years that follow does not appear to be an industry breaking development. Particularly when one considers that most [nearly 2/3] of Australia's coal is exported. [According to Nationmaster, Australia's annual coal production is 338 million tonnes and our consumption is 131 million tonnes. Coal exports are expected to remain secure or increase into the foreseeable future.

Uranium mining in Queensland would tighten the labour market which would tend to increase wages.

With respect to the coal power generation industry, transition from a coal station to a nuclear station is not difficult for most skills. Operators, maintenance craft/trade workers and plant administrative staff perform very similar functions. ADD too this the need for licensing, documentation and security staff as well as greater technical/professional expertise to maintain critical systems to what is commonly regarded as 'nuclear grade', and it becomes apparent that a local nuclear plant provides more employment opportunities than a similarly sized fossil station.

Tuesday, 19 August 2008

Garrett and Wong splash water on Macfarlane's nuclear spark

It may not quite be a debate, but the two sides are talking about nuclear at the same time.

As I posted yesterday, Ian Macfarlane has joined an increasing number of Australian leaders in calling for a rational discussion of nuclear's power's role in any credible emissions reduction [and economy salvaging] energy technology deployment strategy.

A brief recap of the past six months or so
From Australia's political right, MacFarlane was quickly joined by Nelson.
"Our view is that there needs to be consideration in Australia given to the development of a nuclear power industry."
Also on the right are Julie Bishop and let's not forget the National's vote in support of nuclear technologies back in June. Rounding out Coalition support, the WA opposition urged discussion and consideration of nuclear power back in February.

Looking left, the very first outspoken pro-nuke on my radar following the election was Paul Howes in early February this year. Howes was later joined by Carr as well as Commonwealth Bank chairman John Schube [who also chairs the Great Barrier Reef Foundation]. This was followed of course by Bob Hawke last month.

In the centre we have the Australian coal industry, Marcarthur CEO] Nicole Hollows, forecasting a Nuclear Australia in 10 years. There's also a plea to consider the technology from WA's Chamber of Commerce and Industry.

Meanwhile, they are circling the wagons in Canberra - all three of them. Consider what Garrett had to say:
"The last election showed that Australians are absolutely of one mind about not having 25 nuclear power plants dotted around their suburbs and in and around their cities.''
Really? I thought the last election was about the ratification of Kyoto, Australia's thirst for action over excuses and our passionate desire for decisive leadership to cut Australian emissions and cut them relatively fast. I thought is was also about WorkChoices, education and health care. Did some people vote solely on the potential of a Nuclear Australia? Possibly, but Garrett seems to be getting a bit emotive on the subject.

Elsewhere, Garrett's replaying his favourite song and dance - the back-flip accusation. Again? It seems the Labor strategy is pretty clear. Have Garrett play the attack dog with respect to nuclear, while Wong strives to focus on an undefinable strategy based principally on renewables. But, by all means keep them as separate as possible.

Sadly and predictably; Penny Wong says:
"Are they really saying that they have a plan for 25 nuclear reactors in Australia? Where are they going to put them?''

"Australia has an abundance of renewable energy sources. We have a lot of solar, we have a lot of wind, we have geothermal resources."
[Ah, beg your pardon Ms. Wong, don't forget the recent announcement of yet another coal station required to satisfy increasing demand. I should also note that per the OECD International Energy Agency, fossil fuel based electricity generation in Australia from January to May 2008 INCREASED 5% from the previous year. This happened despite a 4.8% increase in hydro based generation and a 35% increase in electricity generation from all other renewables. - Thanks to Luke for this. Here is objective data that while renewables are good, they simply do not pack the punch required to keep even with increasing demand let alone facilitate credible reductions.]

I say 'sadly' due to the unproductive [and very political] duplicity in Wong's mini-soundbites. Of the numerous reports, studies and plans issued of late by the current government, none scratch the surface with respect to quantifiable technology deployment necessary to achieve even significant [let alone adequate] emission reductions while preserving Australia's broader economic viability.

Our emissions are going up and they are stalling.

No Engineer with a functioning nuron would propose the location of a nuclear power plant within Australia's interior - there's simply no significant demand there, let alone very little water. Many of today's nuclear power plants are cooled using sea water. That leaves our [very large] coast. The plants are typically near, but obviously not 'in' large industrial or population areas. This is not a technically complicated issue.

The 'location' discussion is an irrelevant political diversion, designed only to invoke the politics of fear.

The recent news report mentions nuclear power's tendency to split both parties like a proverbial U-235 atom. It also includes a statement from Nelson that I have emphasised in this blog countless times:

Dr Nelson said a nuclear industry would get off the ground only if both the coalition and Labor backed it.

He offered to talk with the government about it.
Considering the recap above, it looks as if we are moving slowly closer to a consensus among and between the major political camps. I look forward to further discussions and hope all partys work to identify common ground. Whether it's jobs, industrial security, low cost energy, emissions mitigation, or reliability of supply; there seems to be considerable common interest with respect to nuclear power.

I remain confident our thought horoizon extends beyond the next election and hope to see some tangible action well before it.

Thursday, 3 July 2008

New not-so-clean-coal build for Victoria.

Just two days before the Garnaut report on climate change is handed down, the Victorian Government has given the go-ahead to a new brown-coal power station in Latrobe Valley.

Environmental campaigners said it was "complete madness" to approve the $750 million plant, but the Government said the station would use new technology that would slash greenhouse gas emissions.

The project is a joint venture between consortium HRL and Chinese power giant Harbin Power, and will receive funding of $100 million from the Federal Government and $50 million from the Victorian Government.

"The $750 million HRL plant will use technology which has been developed right here in Victoria and is part of the new generation of clean coal power stations designed to slash greenhouse gas emissions," said the Energy Minister, Peter Batchelor.

"The project uses a process called integrated drying gasification combined cycle (IDGCC) which can reduce emissions of CO2 from brown coal-fired power generation by 30 per cent and reduce water consumption by 50 per cent, compared to current best practice for brown coal power generation in the Latrobe Valley."

Robert over at Larvatus Prodeo actually reported on this at length last year, when the project was first announced, and there's a good body of details of the project and discussion to refer to there.

Typical generators burning Victorian brown coal generate about 1175 g CO2e per kWh of electricity generated.

The IDGCC plant will reduce carbon dioxide emissions by 30% - so, that's about 823 g CO2e/kWh.

For a good supercritical black coal burning plant you've got about 863 gCO2e, and 751 g for natural gas, or 577 g for combined cycle natural gas - which is about the absolute lowest you'll get for a fossil fuel.

The carbon dioxide emissions are still high as all hell. It's basically the same as a black coal fired power plant - in absolutely no way is it low in greenhouse gas emissions. All that the IDGCC technology is really accomplishing is to turn a plant powered by brown coal - the most especially inefficient and carbon dioxide intensive form of coal - into the emissions equivalent of a more conventional black coal fired plant. Make no mistake - the entirety of that dangerous fossil fuel waste is being discharged straight into the environment, as per business as usual.

But there's one aspect to this which I find interesting, in particular.

This plant is slated to cost 750 million (Australian) dollars, and will have a nameplate capacity of 400 MW.
That is; $1875 per kilowatt of nameplate capacity.

The US nuclear energy industry is aiming to build new nuclear power plants for a cost of $1500 to $2000 per kW capacity.

The General Electric ABWR was the first third generation power plant approved. The first two ABWR's were commissioned in Japan in 1996 and 1997. These took just over 3 years to construct and were completed on budget. Their construction costs were around $2000 per KW.

Westinghouse claims that the AP1000 power reactor will cost $1400 per KW for the first reactor and fall to as low as $1000 per KW for subsequent reactors.

I don't know what kind of capacity factor is to be expected from an IDGCC plant - but at best, it's comparable to that of nuclear power. If the capacity factor is significantly less, then this decreases the economic competitiveness of the coal plant relative to nuclear power still further.

We're looking at the construction of a coal-fired power station that is not mitigating its carbon dioxide emissions in any meaningful way, emitting about 823 g CO2e/kWh straight into the atmosphere, along with all kinds of other dangerous coal byproducts, where the construction of a new nuclear power plant is already likely to be directly competitive, if not superior, on construction cost terms, even in the absence of any kind of emissions trading scheme, carbon dioxide 'price', carbon dioxide capture and storage or carbon dioxide sequestration.

What's up with that?

Are we serious about carbon emission reductions?

"Do as I say, not as I do," my parents used to tell me as they puffed up two-packs a day while discouraging me from smoking. Eventually, the evidence became so overwhelming, everyone quit. Today the family is 100% smoke free.

[NOTE: I drafted this post before Luke made his post above. Thanks again Luke. I'll leave the original links to Physical Insights, but the full post is also copied above.]

Hat tip to Luke a Physical Insights for his excellent post on a new brown coal power station on its way to Victoria.

The article from the ABC may be found here. Luke's got the detail in his post, but the bottom line is that despite considerable investment in renewable technologies [don't get me wrong, I support such investment] the resulting energy generation continues to fall well short of increasing demand. This shortfall - in the context of Australia's ongoing rejection of nuclear power - will result in the deployment of larger, carbon emitting, baseload stations [coal and natural gas] over time.

As one would expect, the talking heads are doing their stuff - holding a straight face while citing how this plant fits nicely into the emissions reduction strategy; etc. etc. yadda, yadda, yadda [see Luke's post linked above for the detail].

Luke includes a comparison of the projected emissions and cost per kilowatt. Nuclear power looks to be quite competitive if it were only given a chance.

More Australians are starting to speak out. Nuclear's potential role was emphasised by Prof Don Aitkin, who was vice-chancellor of Canberra University.

Wind power, solar power, tidal power, biofuels (that is to say, burning food) all work at the margins. They don't run steel mills, railways and city lights. Howes has been howled down by the union movement and the Australian Labor Party, although he is right.

Aitkin said he was not on his own, but he conceded that those in the scientific community, and political advisers and business leaders, were afraid to speak out.

In WA - where recent failures exposed an overreliance on natural gas - the Chamber of Commerce and Industry [CCIWA] chief executive James Pearson said the state needed to diversify its energy mix and look at the feasible energy options, including re-opening the debate on nuclear energy. [WA Business News - subscription required].

However, if Australia continues down its current path it is doubtful we will be able to achieve any credible emission reduction without inflicting considerable damage to Australian industry. Considering the launch of this power station in the face of Garnaut's report and the coming emissions trading scheme; I expect Australia [or at least large parts of it] will opt to forgo substantial emissions cuts [> 60% of 1990 levels] over the long term. Maybe State governments will provide subsidies to individual stations or maybe it will come from other source; but I doubt Victoria is investing in a $750 million coal station, to be operated for 40 years, without some confidence in its long-term viability.

Apologies for the drama, but this is a bad step in a horrific direction. There have been different reports in the media recently downplaying or outright criticising references to Australia's 'moral' obligation to reduce emissions. I understand why such an argument would make those who are politically aligned to the right or affiliated with different industries cringe; but if one considers the available data, the science and technologies - there is no other viable position to take over the longer-term.

I've posted about the moral and ethical angles several times [here, here and here] and still believe this position is justified. While Australia is responsible for only about 1.4% of global emissions, our per-person [or per-capita] emissions are inexcusably high and support a lifestyle far beyond that achievable by the vast majority of people around the world. Even a rank of total emssions shows we are punching well above our weight. If we fail to reduce emissions we are handing the justification for higher emissions to larger emitters and their emerging economies [China and India in particular].

India's recent announcement is exactly in line with this argument.

"Every citizen of this planet must have an equal share of the planetary atmospheric space," [Indian PM Manmohan] Singh said.

The plan commits India to gradually shifting away from fossil fuels to renewable energy sources.

But it also demands that big emitters such as Australia and the US take steps to ensure that per capita emissions move into line with the global norm.

India has very low greenhouse gas emissions per person, but its large population means its contribution to global greenhouse gas emissions is already significant and set to rise. Despite recent strong economic growth, about half the population — more than 500 million people — does not yet have access to electricity.

Mr Singh pledged that India's per capita greenhouse gas emissions would not exceed emissions of the developed countries and demanded justice in the international response to climate change.

"Long-term convergence of per capita emissions is … the only equitable basis for a global compact on climate change," he said.

How can Australia morally defend our lifestyle and the emissions we generate to achieve it [let alone demand developing countries such as India cut their emissions] when half a billion Indians [about 25 times our entire population] do not have access to electricity?

Kevin Rudd, Penny Wong and others in government repeatedly claim that Australia has the resources to meet emissions reduction requirements, but stop short of discussing any details beyond a simple list of popular renewables. At the same time most reject one of our greatest no/low carbon energy resources - uranium; which has proved to be part of successful energy cocktails within countries set to meet their emission reduction goals.

We are also in line to be one of the first and hardest hit by the effects of climate change. There is plenty of moral, technical and personal justification for every Australian to remain very serious about significant emission reductions.

The construction of Victoria's new coal station and other recent news from WA do not appear consistent with a serious approach to emission reductions.