Showing posts with label plants. Show all posts
Showing posts with label plants. Show all posts

Wednesday, 4 June 2008

Vietnam continues to advance toward nuclear power

Forbes is reporting the passage of new legislation allowing the development of a nuclear power industry in Vietnam to help the country keep pace with a booming economy that is resulting in 15% annual demand increases for electricity.

The first 1000 MWe plant is to come into service in 2020 with about 10 more in operation by 2025. The report lists several countries including Japan, France, South Korea Russia and most recently China that have expressed an interest in assisting Vietnam in this endeavour.

Watch this space.

Sunday, 4 May 2008

Vietnam progresses down the nuclear path


In regional news, Vietnam is looking to install several nuclear plants in the coming decades. An investment plan is being developed for submission later this year. Construction of Vietnam's first nuclear plant is planned for 2012-14 with operation to commence prior to 2020 in the central Ninh Thuan province. In parallel the government is working on legislation to create legal foundation for the construction of the plant.

The national electricity body, EVN is planning to construct 3 nuclear power plants with a total capacity of approximately 4,000 MWe. In addition to the 3 nukes, 25 other large plants are planned by EVN to add a total of 33,200 MWe.

Vietnam is already in the midst of an energy expansion program. 45 power stations are currently under construction around the country. The output of these stations, all to be operational by decade's end, is 14.6 MWe.

More information may be found here.

Saturday, 19 January 2008

Quantifying a renaissance, what a difference a year makes

The UIC does an excellent job tracking the global nuclear industry. Just one of the may things they do well is produce and trend quantifiable data.

From the UIC reactor page.

Looking back at January 2007 data and comparing that to this month's update, I am encouraged by the global and across the board gains seen by nuclear power.

Specifically in one year, the number of:
  • operating reactors increased from 435 to 439 (just under 1% increase),
  • reactors under construction increased from 28 to 34 (over 21% increase),
  • planned reactors increased from 64 to 93 (over 45% increase) and
  • proposed reactors increased from 153 to 222 (over 45% increase).
Also, for the first time in several years, 2007 saw no [zero] final reactor shutdowns as reported both by the UIC and the IAEA's PRIS database. 2006 had five final closures, there were two in 2005 and another two in 2004.

But we can do better and many would argue that we must.

Saturday, 12 January 2008

UK - Firms get set for new build

Companies involved in the push for new nuclear power in the UK reacted favourably to the government invitation of 10 January to submit their plans for new build.

Full report from World Nuclear News

One whole day after the government's announcement, and companies (yes that's plural) are expressing serious, well developed interest in nuclear new-build in the UK.

Of particular interest:
Shadow business and enterprise minister Alan Duncan welcomed his opposite number's announcement and explained his party's view on nuclear power: that the planning system must be refined; a price for carbon is required for long-term investment; clarity is required on waste and decommissioning; and there should be no subsidy for nuclear power.

Duncan assured business that the investment climate would remain stable under a possible future Conservative government.

This marks a major change over several months, since Conservative leader David Cameron enlisted Ecologist editor Zac Goldsmith as an advisor, resulting in a rash of anti-nuclear sentiment. Goldsmith is now expected to part company with the Conservatives.
Considering there are many parallels with some of these issues and any Australian consideration of nuclear power (bi-partisan support, no subsidies, carbon pricing, etc.) I would not be surprised to hear Rudd making some type of reassuring announcement in the near future. If it happens, fear not, for it is just another step in our own journey from an unjustified and unsustainable energy policy.

Thursday, 27 December 2007

ANSTO's OPAL reactor - up in January

After a 6 month shutdown to diagnose and correct fuel design issues, OPAL is expected to be operational again in January according to this Sydney Morning Herald report.

The article speaks of losses due to radiopharmaceutical production. It should be noted that these losses are due principally to Mo-99 production, the very same isotope responsible for the recent issues between the government of Canada, the Canadian regulator and AECL.


In the report, ANSTO predicts it will take another 3 months before radiopharmaceutical production will begin. Recall it took AECL about a week to resume production following their restart. ANSTO must still fully commission and receive proper regulatory approvals for their new radiopharmaceutical plant [also CNEA technology purchased through INVAP] - hence the additional time.

Sunday, 16 December 2007

Canada - quick changes at AECL following isotope fallout

As reported at the Globe and Mail.

Most interesting to me is the hast with which this change was made, the new appointee and the links to Ontario's nuclear future [not whether or not the plants will be built, but rather AECL's interest in the contracts - their justification now a foregone conclusion].

Saturday, 15 December 2007

Saturday, 8 December 2007

Emphasis on conservation and efficiency having an effect

Albeit not the effect hoped for by many.

In a previous post I included a link about the paradox of efficiency etc.

In practical terms, when an uninformed and misled public protests the construction of new generation facilities - while maintaining or increasing state/national energy demand - something has got to give.

This phenomenon would seem to be manifesting itself in another recent post on energy price increases in South Australia and Victoria as well as this article from the Australian on the current energy squeeze in Queensland.

This time it's not just higher prices, but decreasing reserve capacity [meaning the energy being generated beyond the 100% needed by all of us to run our AC units, not to mention all the heavy industry loads, etc.]. Per the report, the reserve dropped to record lows and the wholesale price for electricity reached the maximum of $10,000 per megawatt hour for supplies into the national electricity grid from Queensland. This, despite the recent start-up of our latest coal munching, carbon spewer, Kogan Creek.

Look for ongoing pressure for added electrical capacity and further utility pressure on the government to get decisive on climate change related regulations. This of course will be running parallel with ongoing international and domestic pressure for Australian emissions cuts.

Yet another perspective on the modern energy crisis where doing nothing / waiting involves considerable risk.

Have I mentioned that one AREVA EPR can reliably generate 1650 MWe, with one of the lowest lifecycle carbon emissions around?

Oh, and AREVA has just initiated construction of their second EPR - this one in France. Italy - buying a 12.5% stake in this project has found an innovative way to get around a 1987 anti-nuclear referendum.

AREVA's also sold a couple more EPRs to China in the largest nuclear sale ever.

Saturday, 1 December 2007

Nuclear news from around the Commonwealth

Canada has agreed to join the GNEP (WNN article). This could be a boost to the GNEP programme. Perhaps with Kevin Rudd's crushing defeat of Howard, Canada was able to negotiate the deal they wanted for entry. The real item of interest is the 'review' of AECL. It appears AECL may be getting itself caught up in the furry of sales and mergers occurring within the industry. CANDU reactors are positioned well to 'digest' nuclear waste products and could become very popular in the future. I guess it [buying, selling, changing hands, etc.] comes with the territory of such an industry and I really do hope things work our for them.

Meanwhile in South Africa, the local utility, Eskom is reported here to be running on 5 to 10% reserve margin [not a lot, this results in load-shedding, or turning people's lights out for them]. They are considering MASSIVE nuclear expansion, ~20 plants in 18 years!

When accused of not considering other no/low carbon alternatives, the utility argued:
...while nuclear is expensive to build, it is vastly cheaper to operate, and, at this stage, provides the only true low-carbon alternative to coal.

For this reason, rightly or wrongly, its attention is now shifting strongly from the debates about nuclear to strategies that will ensure that these new facilities are delivered on time and budget. A job made doubly challenging by the fact that few nuclear facilities have been built globally over the last few decades, but the appetite has certainly grown, which has the potential to divert the attention of the vendors involved.

Tuesday, 25 September 2007

Nuclear plant license submittal in the USA

The first in about 3 decades is to be submitted today, Tueday September 25 by Princeton, NJ based NRG Energy.

We Support Lee has the full details, including anticipated schedule, budget and job creation.

Well done [again] Ruth!

Note that of the 10,000 MWe required in the US state of Texas alone over the next few decades, the capacity of these two plants will account for 27%. Plenty of work remains for efficiency programmes, renewables - or of course more nuclear.

image - Dallas Morning News


But from this 21-June-2007 report from the Dallas Morning News, there are still a fair amount of coal stations planned in Texas. I expect that will change as the pressure to reduce carbon continues to increase.

No one is saying it has to be done tomorrow...

Energy security issues aside for a moment, it has been said if nuclear power is to be a serious contributor to the mitigation of severe and abrupt climate change, some 600 or so plants would have to be constructed globally in less than 43 years? Is this possible?

Looking at history, I’d say yes – certainly.

During the mid 1980’s [between 1981 and 1988] there was a sustained global deployment of 20 plants per year. Two years saw operations commence at over 30 plants. If the construction projects get up and running by say 2015, we have 35 years remaining and could very feasibly construct and commission 700 facilities – and that’s with technology that existed in the 1980’s. 30 years of improved construction techniques and technology as well as more mature regulatory processes, would surely improve the likelihood of achieving that goal.

In the short term [1 to 5 years], the ‘low hanging fruit’ can be addressed to take a bite out of emissions. Such work as efficiency improvement initiatives, and the deployment of cost effective renewables are some examples.

In the interim [say 5 to 20 years], nuclear facility deployment can – and by the looks of it will – be carried out in current nuclear powered countries, mainly at existing nuclear sites.

But also in the near term and interim, the prerequisites for nuclear energy must be addressed in non-nuclear countries considering nuclear power. Many such prerequisites may be found in the International Atomic Energy Agency document, “Milestones in the Development of a National Infrastructure for Nuclear Power”. Most, if not all, of the recommended actions and milestones do not require significant financial resources, but do require a fair amount of time to fully achieve. Once this infrastructure is developed, the longer term [15 to 45 years] options for nuclear power will be available in relevant non-nuclear countries.

To fail to address the development of a nuclear infrastructure [which in itself is certainly no commitment to nuclear power] displays a combination of short-sightedness and unjustified overconfidence in efficiency, renewables and research that would be unethical if it were not so immoral – particularly considering Australia’s per-capita contribution to global emissions.

Listen to what Professor Tim Flannery says about nuclear (21-Aug-2006). He repeatedly denies being a ‘face for the nuclear industry’. He is however emphasizing the need to consider and adequately address the relevant issues so nuclear power can play a part in the solution if – after considerable effort and investment – we discover we can not get there without it.

It is time for a serious start.

Sunday, 16 September 2007

My Q&A with Blake

With his permission, here are the questions and my crack at the answers. Any feedback, corrections, omissions etc. from others out there would be most welcome.

Hi Blake,

I take it from your hypothesis that you may arrive at a different conclusion from my own. However, it appears you are attempting to complete a fact-based assessment, which is fundamental [on a broader scale] to addressing the many energy related issues facing different countries today.

And to that end, my answers are below. I hope you find the information helpful. If you have any further questions please let me know. I've changed the order a bit, but they should all be there.

On 9/14/07, blake [surname & Email address removed] wrote:
Hey, sorry for the wait, have been swamped with work in other subjects falling this week. Okay, back into the swing of things.

I am going for a subjective definition of 'environmentally safe', as it will allow more room for discussion in my opinion. I am using alternate power sources as a focus question in my assignment (as you suggested) as i believe it is important to consider why Nuclear power is a more attractive option and will shape a better understanding to why nuclear power is being used and its benefits also.

Okay here it goes, feel free to elaborate or disregard any questions. Ill just be quoting you on various lines. If there’s anything you think I should know or that I’ve missed, let me know (I have found it surprisingly difficult to get a clear understanding of the current power situation in Australia as information is scattered and not readily available).

The hypothesis of my essay is:

"The implementation of Nuclear Power stations in Australia will have a negative impact on the environment due to an increase in environmental pollution"

Qs

What is wrong with the current power systems in place?

Power systems [to me] includes all systems involved in the generation and distribution of energy [including transport, electricity, home heating, etc.]. It's important to keep the definitions clear or a lot of confusion can enter into energy related discussions. Some people seem to muddy these waters intentionally [not very helpful to achieving a genuine solution in my mind]. For the remainder of this discussion - let's focus on electricity generation.

The answer to this question differs from one country to another. Some countries, Korea and Japan are two examples, have limited domestic energy resources and are therefore very dependent on imports [i.e. energy security concerns]. Others are struggling to control emissions linked to climate change. Some are wrangling with both [China, the USA and most of Europe are good examples]. Nearly all are facing these challenges within the context of significant projected demand increases over the coming decades.

Also, additional energy generation capacity is a critical prerequisite to addressing much of the world's severe poverty. If this deployment is not done in a sustainable way - the above challenges could become more difficult. Conversely, as the developed world wrangles with its own energy problems, countries in the developing world may just get ignored, leading to worsening poverty and greater conflict in the affected regions [some of which are not too far away from Australia or Australian interests]. I recommend a read of this blog. It may be a bit long - but I think the author makes some very good points that you don't hear too often from either side of the nuclear debate. To read more from the same author, follow this link.

Finally, some countries lack modern electric infrastructure [transmission lines, etc.] to adequately and reliably distribute energy as required. Even in the USA, several high profile brown-outs and black-outs over the past decade or so [2003, 1996, etc.] are indications of this challenge.

What are the current environmental dangers / benefits of current coal power plants?

The benefits are fairly easy to list [but none are environmental]; for countries with rich coal reserves it's cheap, reliable power. There is little economic justification for Australia to use anything but coal to power the country into the foreseeable future. Some type of carbon surcharge, tax or other abatement programme could change this in years to come.

Also, large coal generation stations have high and predictable reliability, giving more weight to the economic benefit [maximum, reliable output for minimum financial input]. It’s not rocket science. Hence, power hungry China’s current deployment of about two large coal stations a week. [This was a shock to me as my understanding before I did the search was that it was only one plant per week. So the rate is increasing – not good!]

The dangers of coal are numerous. There are many links, references and resources in this blog and many others highlighting the reality of climate change – and most experts and environmentalists alike are pointing at coal/fossil plant emissions as one of the principal contributors. Furthermore, the emissions from coal/fossil stations today, will be impacting the environment for millennia as the Earth works to restore balance – according to the IPCC.

Mining coal is dangerous and responsible for the death of roughly 7,000 miners a year in China alone. Coal emissions contain fine particulates and other pollutants resulting in the premature death of 15,000 people a year, just in the United States.

What are the environmental Dangers/Benefits of the introduction of Nuclear power ? which of these are specific +/-'s to Australia?

Water consumption is pretty much a break even with any other type of power plant that employs a thermal steam cycle [and most do, except, for example combustion turbines, wind turbines and photovoltaic cells]. Some hype has been made about French reactors having to reduce power in hot weather due to thermal discharge limits on their effluents. This has nothing to do with the fact that they are nuclear, but rather where they are located. Had similarly sized coal plants been in their place, the same result would have occurred. Had these nuclear plants been sited on the coast, the high temperature would not have been an issue. So if Australia decides to construct a nuclear plant near the coast – no issue.

Nuclear waste is a challenge, but more a political issue than technical. The deep repositories being developed, for example in Sweden and the USA, are – in my opinion – technically sound, but also a waste of a valuable resource, the potential energy remaining in the fuel. The recently rekindled interest in spent fuel reprocessing using the UREX process looks to recover significant energy from this ‘pre-irradiated’ or ‘used’ fuel, significantly reduce the volume of residual waste and dramatically reduce the time that waste must be stored to decay to the activity level of the uranium originally mined from the ground.

Interim storage of irradiated fuel as well as all aspects of fuel handling through the second half of the fuel cycle must be respected due to the activity of the material involved. Again, in my professional opinion, the robust engineering that has gone into developing multiple protective barriers to address public safety has worked well to minimise this risk. Have a look at the testing of a fuel shipping cask as an example.

Physical security [theft, sabotage and acts of terrorism] must also be addressed when considering nuclear power‘s environmental impact. In modern plant designs robust measures have been engineered into the design to minimise these risks. Beyond the design, plants maintain hardened perimeters and employ highly trained security teams – all further reducing the risk.

Some environmental groups point to the entire fuel cycle including mining, conversion, enrichment, fuel fabrication, decommissioning, final fuel processing and disposal etc. as nuclear power’s Achilles heal with respect to lifecycle emissions. But this does not make sense from even – I think – a everyday bloke perspective. Consider that one 10-gram nuclear fuel pellet produces as much energy as 20 tonnes of coal or 20,000 litres of oil [even more if the nuclear fuel is reprocessed]. Yes, [assuming the power comes from coal plants] the processes to make that pellet consume energy and result in emissions. However, if say 20% of the electricity involved in those processes is nuclear generated, even those emissions begin to fall. What about the mining, processing and transport of all that coal [have you ever seen a coal train?], or similarly drilling, refining and transport of all that oil, the decommissioning and waste processing of those facilities, etc.? What are the emissions associated with those processes? Formal comparisons have been completed – repeatedly it seems – consistently arriving at the same results. [University of Sydney, Oko Inst., University of Wisconsin/NEI to quickly site just a few]. From an emissions perspective, nuclear looks very attractive and is the principal environmental benefit for the technology – at a competitive cost to other options.

The demonstrated high [and consistently improving] capacity factor of nuclear plants and high reliability also play a key role in this positive impact.

I would say that all of the above apply to any country considering or currently using nuclear power – perhaps to different degrees depending on how much of the nuclear fuel cycle is employed in their countries. Australia, for example may decide not to enrich fuel, but deploy nuclear plants and purchase fuel from other countries. I have tried to sum up Australia’s options here and again here.

Why is nuclear power needed?

Nuclear power can address – again depending on the country – energy security and environmental challenges faced by many nations around the world. Significantly lower fuel costs can reduce a country’s dependence on fuel imports in an increasingly [energy] competitive world. Also full lifecycle analyses consistently show nuclear’s advantages to address present day environmental challenges through very low emissions [none in fact through energy generation], high capacity and high reliability.

Examples of countries looking to nuclear to minimise their exposure to energy security risks associated with imports may be found in Europe – specifically Eastern Europe where over the past several winters, Russia has used their energy supply lines as a tool of economic foreign policy. I believe in each case the ‘customer’ countries had no choice but to pay what was being asked. Many of these countries are looking to nuclear to increase their options, subsequently reducing their exposure to this risk in the future.

Nuclear power is capable of significant bulk power generation with demonstrated reliability. This energy is generated with minimal emissions over the entire nuclear lifecycle as demonstrated in study after study [see above].

From Australia’s perspective, I believe nuclear power is needed to address our embarrassingly high emissions. Yes, China and the USA contribute significantly to the problem and therefore must be part of the solution, but I like to look at this from three perspectives, the country whose emission are increasing the fastest in absolute terms [China], the most emissions under the control of one government [USA – soon to be passed by China if not already] and the highest per-capita emissions [Australia]. I think that any policy that does not try to address the problem from these three perspectives is going to produce some very unbalanced outcomes. The argument that ‘Australia only produces 1.5% of global emissions and is therefore only a minor player’ is not sustainable as I say here.

There are those that claim we can get there with renewables, but the ‘full throttle’ deployment of renewables – massive subsidies or not – will not be enough to achieve what is necessary in Australia. Hydro is by far the only renewable energy source with demonstrated capacity around the globe in sufficient quantities to displace big-coal and Australia is just too flat and dry to expect that much more hydro to be added any time soon. That leaves us with solar, wind, geothermal, nuclear and a few fringe technologies like tidal. Furthermore if you look around the world, you will find individual solar thermal plants coming up, new wind farms here and there, etc. However, read for example this post about a wind project in Poland. Note in the section titled ‘The Good Energies coming’ the total price will be Euro 350 million [AU $575 million] and the combined ‘capacity’ will be 240 Megawatts. Consider though that typical wind projects achieve only about 30% of that capacity or about 80 Megawatts on average annually. Spend about four times as much money and you could end up with about 320 Megawatts from wind, or one 1000 Megawatt nuclear reactor. Using this example, it may be easier to understand the lifecycle analyses linked above. The bottom line is that nowhere – not a single country on the planet – are renewables [other than hydro] being used to displace fossil fuel electricity generation capacity to the extent required to meet emissions targets. Denmark is one example of a country that is trying, and failing despite huge subsidies to renewable technologies.

So that leaves nuclear. If Australia is serious about reducing emissions we must keep nuclear on the table. If you’re OK with a calculator, pen and pad, check this post.

How will nuclear power stations affect Australians?

Nuclear operations and stations typically bring with them highly skilled jobs [including a significant number of trade jobs during construction as well as periodic maintenance outages], boosts to the local economies through tax revenues, boosts to local business [several hundred staff have to eat lunch, buy their groceries, get their cars serviced somewhere, correct?] and help sustain local industries such as machine shops that typically support plant maintenance activities, etc.

In addition to the local effects, operating nuclear power stations will of course help Australia meet our energy needs without adversely impacting the environment.

Nuclear plants make good neighbors. I have lived near them in the past and would gladly do so again in the future.

What are your personal views on Nuclear Power / why?

In addition to what I have said above, I don’t really think it’s a matter of ‘will’ Australia go nuclear, but when. It is noble to promote significant and broad lifestyle changes to reduce emissions and to deploy renewables where it makes sense to do so. While these efforts certainly do help – the impact falls well short of what is required to make a real difference.

My own approach is similar to what is recommended in the wedge analysis completed by Princeton University. It’s not so much a nuclear vs. renewables discussion [although such debates work well to distract the attention of environmentally minded people away form the coal industry to – I would imagine – their extreme delight], but rather what will it take to reduce global emissions in absolute terms. In other words, it’s no good to displace one 1000 MWe coal plant in the USA if China commences operations at three of them the next month.

I support the deployment of all no/low emissions technologies that have a demonstrated capacity to displace emissions linked to climate change, in a sustainable way, while improving global energy security. I do not believe we will achieve the relevant goals without considerable nuclear technology deployment in many countries around the world. Certainly the relevant risks will have to be carefully managed – but that challenge pales in comparison to the very real projected impacts from climate change – for which Australia’s portion appears to be severe.

Thursday, 17 May 2007

Wood fires up nuclear industry


As reported in the Herald Sun (photo courtesy of):


FREED Iraqi hostage Douglas Wood would happily live next-door to a nuclear power plant, and wants a job helping to develop an Australian nuclear energy industry.

But the Melbourne-based engineer, who was a project manager building nuclear plants in the US, said Australia's engineers and industrial suppliers would be under-qualified to build a local plant.

I fully agree with this conclusion, as I've said here. Wood continues...

But a nuclear industry would have to go offshore for suppliers and engineers with appropriate skill levels.

He'd happily take a job in any emerging industry, however. "Sign me up!" Mr Wood said.

The PM has expressed a hope that Australia will be producing nuclear energy by 2020 but Mr Wood said at least four years would be needed before building could commence, as specialist engineers would have to be trained.

Refusing to name potential sites, he said a coastal location would be best. "It would be logical to use the ocean (as a water source for cooling)."

Nothing quite like the words of someone with practical experience.

So many times in recent months have I read or listened to Australian nuclear industry advocates promote domestic scientific achievements in defence of nuclear energy technology deployment. But I believe this is an erroneous link as the endeavour is principally engineering related (e.g. the application of existing technology to a schedule and budget, where science is more about discovery and the quest to conquer knowledge). And one need not look far to find that nuclear engineering resources around the world are scarce - particularly those under say about 45 years old.

Those who wish to advocate domestic nuclear energy should consider this among other issues.

Sunday, 13 May 2007

In Recent News

Ziggy predicts nuclear power in 20 years - from News.com.au

Dr. Ziggy Switkowski predicts 8 nuclear plants for Victoria by 2050 and speaks of the role carbon trading will play in any attempt to reduce Australia's pitiful emissions.

Sadly, Dr. Switkowski has hopped on the bandwagon of looking at Australia's emissions from a nation-state perspective. To me this makes absolutely no sense. Why shouldn't larger nations, particularly those that are developing such as India and China have the right to as much wealth, as much productivity, as much energy and as much emissions (per person) as we Australians.

Do we really think that a do as I say, not as I do approach will work? Is this global leadership at it's best? I believe we can do better. And better we MUST do, because as I've said before in this post - it's our backside that's going to get burnt first.

Also from this Editorial from The Australian:

The Opposition Leader, and his cheer squad in the media, also show signs of being outfoxed over climate change. This is an issue Labor thought to make its own, by attacking the Government on its supposed lack of interest in global warming. Mr Rudd's call for greenhouse gas emissions to be cut by 60 per cent by 2050 certainly looks like a winner to the Left. But while Labor and the Greens have talked a lot about the evils of coal and the risks of nuclear power, they have never explained how Australians are to heat and cool their houses without cheap electricity, or how the country could ever replace the export earnings - and jobs - generated by uranium and coal exports. While Mr Rudd's supporters have huffed and puffed about wind and solar power, in early 2005 the Prime Minister began a serious debate about why we should contemplate nuclear power at home. That Labor continues to support uranium exports but opposes a domestic nuclear industry makes it a good question. Our vast coal resources mean nuclear power for domestic use will never be economically competitive, but this is not the point. As the Government's nuclear adviser, Ziggy Switkowski, says, if Australian initiatives led to nuclear-generated electricity increasing from 15 per cent to just 16 per cent of the worldwide total, the effect would be the same as a 60per cent reduction in our greenhouse gases. And it could be achieved in a bare decade. As the economic impossibility and environmental folly of relying on inefficient alternative energy becomes ever clearer, the trap Mr Howard prepared for Labor with Dr Switkowski's support is now sprung. Mr Rudd is likely to find it hard to explain in an election campaign why he will not support the clean power generation that is used in all the "Kyoto powers" of Western Europe. A scare campaign about nuclear power plants will fall as flat as the Work Choices scare campaign inevitably will.

Sunday, 18 March 2007

Inside an operating reactor



A narrated video of Columbia Generating Station, produced by Energy Northwest - USA, showing:
- The nuclear power plant reactor core,
- The plant control room,
- Electricity generating turbines,
- Plant cooling system,
- Nuclear power plant refueling process,
- Used nuclear fuel dry cask storage and
- A review of the range of jobs at the nuclear power plant.

I am adding this to give an idea of what goes on inside a typical plant. Yes, it is produced from within the industry and should be viewed as such. But I thought there may be some interest in seeing the actual systems, hearing about the jobs, etc.