Skip to main content

Energy Payback Times for Nuclear

Last Sunday, Palm Beach Post wrote an article about students from Florida Atlantic University protesting FPL's nuclear plant expansions. What struck me about the article was this claim made by the anti-nuclear energy group - Nuclear Information and Resource Service:
A nuclear power plant takes so much water and energy to build, it has to run for 15 years to offset its carbon footprint, according to the nonprofit group, the Nuclear Information and Resource Service. Mary Olson, director of the organization's southeast office, was a summit keynote speaker.
Fifteen years? I don't think so. This claim appears to be apart of the whole lifecycle emissions claim we’ve dealt with from Storm van Leeuwen and Smith. The two have claimed that nuclear’s lifecycle emissions are comparable to a gas plant based on the energy requirements at each stage of a nuclear plant’s cycle. In SLS' study, they mis-calculate the energy payback time
for a nuclear plant at 10-15 years.

What's the real energy payback time?
The NIRS claim above confuses three different subjects – water consumption, energy and carbon footprint. The debate really centers on how much energy nuclear plants consume during the front and back-end of the fuel cycle, and during construction and decommissioning of the plant. The water consumption and carbon footprint claims are based off of how much energy a nuclear plant consumes during each of these stages.

According to Table 2 in this link from the WNA, the estimated amount of energy from all stages of a nuclear plant using centrifuge enrichment technology for uranium is about two percent of a nuclear plant’s lifetime energy production. This means that if a nuclear plant runs for 40 years, it will take about 10 months of operation for a nuclear plant to offset its energy from all of its other stages. If a nuclear plant uses diffusion enrichment technology for uranium (much more energy intensive), then it would take about 2.4 years to offset its energy. Since the U.S. and world are moving towards centrifuge enrichment technology, it is reasonable to say a nuclear plant takes about one year to offset its energy consumption from its other stages.

Research on NIRS
I was almost positive the NIRS claim above came from Storm van Leeuwen and Smith. But to be sure, I went through NIRS’ website and found this webpage by Mary Olsen discussing nuclear's CO2 emissions. Here’s her quote on the issue:
A number of recent studies have found that when mining, processing, and extensive transportation of uranium in order to make nuclear fuel is considered, the release of carbon dioxide (CO2) as the result of making electricity from uranium is comparable to burning natural gas to make electric power. [6] Additional energy required for decommissioning and disposition of the wastes generated increases this CO2 output substantially.[7]
I went to both of the cited studies and found nothing to back up NIRS' claim. Here's what the study for their sixth citation actually stated on page 25 (pdf):
In summary, nuclear power could contribute to a certain extent to ambitious emissions reduction targets at the global level.
This statement is a bit contradictory for NIRS since they are trying to say nuclear can't make a difference in reducing emissions.

The study for the seventh citation made no mention of
nuclear's lifecycle emissions either. It was also a study we debunked back in the day. (If anyone would like to check my claim, use key words like uranium, natural gas, transportation, emissions etc. to search efficiently through the two cited documents.)

What’s interesting is the NIRS claim is exactly the same claim from Storm van Leeuwen and Smith, yet there is no citation anywhere for SLS. If you go to page 20 of SLS' Part C (pdf), you can see that NIRS chose the lowest line on the chart to show the energy payback time for nuclear at about 15 years. If you go to Chapter 1 on SLS' home page, you can find the same gas and nuclear lifecycle emissions comparison as claimed above by NIRS.

Why didn't NIRS cite SLS? Maybe NIRS is trying to distance themselves from SLS because they know SLS is no longer credible. So what does NIRS do? They
cite two studies that don't verify their statement, claim the statement is backed up by “a number of recent studies,” and then hope nobody checks their sources. Only antis could get away with such deceit.

Comments

David Bradish said…
When going back over NIRS' webpage I linked to in the post, it looks like I overlooked a certain paragraph. NIRS did cite SLS in the middle of the page, but not for the same claim I stated in the post. It still begs the question of why NIRS didn't use SLS from the beginning.
Joffan said…
I sometimes wonder how comfortable anti-nukes feel with the evasions and distortions.

Judging by just the name of many anti-nuclear groups, they feel perfectly happy being less than straightforward. You guys are lucky that the name "Nuclear Energy Institute" didn't get appropriated.
Anonymous said…
Who funds NIRS? Why is NIRS so secretive about who supports it financially? Does NIRS have something to hide from the public?
Anonymous said…
"Judging by just the name of many anti-nuclear groups, they feel perfectly happy being less than straightforward. You guys are lucky that the name "Nuclear Energy Institute" didn't get appropriated."

The industry and pro-nuclear groups do exactly the same thing. Ecomagination, New Jersey CARES, etc. Everyone does it, hardly a unique indictment of antis.
Rod Adams said…
Ecomagination is HARDLY a term used to obscure a pro-nuclear program.

It is a marketing term chosen to describe a group of technologies that include wind turbines, natural gas fired combined cycle plants, diesel locomotives and even "clean coal" technologies by a company that would far rather sell wind turbines than nuclear reactors.

As a matter of fact, that company chose NOT to include any nuclear technologies in the program for the first year of its existence, even though it already had an advanced, licensed reactor design being built in Japan and Taiwan.
Joffan said…
anonymous 2:
Let's look at the name, "Nuclear Information and Resource Service". If I came across this name without foreknowledge, it would not suggest that the main purpose of the organisation was opposing nuclear power. In fact it loks like the opposite; that it is some kind of support site for people interested in working with and supporting the nuclear power industry. This is a mild example of what I'm talking about.
Unknown said…
how did you work out the pay-back time? calculations? exact figures? Sorry, I would like to use this as a source for a GCSE essay, but I'm a little confused as to how you worked it out, and I think we get more marks for understanding stuff.

Popular posts from this blog

Activists' Claims Distort Facts about Advanced Reactor Design

Below is from our rapid response team . Yesterday, regional anti-nuclear organizations asked federal nuclear energy regulators to launch an investigation into what it claims are “newly identified flaws” in Westinghouse’s advanced reactor design, the AP1000. During a teleconference releasing a report on the subject, participants urged the Nuclear Regulatory Commission to suspend license reviews of proposed AP1000 reactors. In its news release, even the groups making these allegations provide conflicting information on its findings. In one instance, the groups cite “dozens of corrosion holes” at reactor vessels and in another says that eight holes have been documented. In all cases, there is another containment mechanism that would provide a barrier to radiation release. Below, we examine why these claims are unwarranted and why the AP1000 design certification process should continue as designated by the NRC. Myth: In the AP1000 reactor design, the gap between the shield bu...

What Happens During a Refueling Outage?

You may have noticed over the past few weeks that a number of nuclear plants are shut down for refueling outages or are resuming operations after just returning from one. This type of routine outage usually occurs in the spring or fall when electricity demand is low so that nuclear reactors can replace about one-third of the spent fuel rods with new fuel and conduct other routine maintenance and repairs at the plant. To get a better sense of how refueling works at a nuclear energy facility, I spoke with Marcus Nichol, NEI’s senior project manager for used fuel storage and transportation, and asked him to explain the basics. Why does a nuclear plant need to replace one-third of its fuel? Nichol: The main purpose of a refueling outage is to replace older fuel that is depleted—meaning it can no longer efficiently produce energy from nuclear fission reactions—with new fuel. This “used fuel” has typically been used in the reactor for four-and-a-half to six years before it is pe...

How Much Land Does Nuclear, Wind and Solar Really Need?

Not too long ago, we reviewed a report that looked at nuclear energy (and other energy sources) as biodiversity agents. This had to do, in part, with the amount of land a facility needs to function. Nuclear energy and fossil fuel plants use relatively little, wind farms and solar arrays quite a lot of land . Based on an objective and transparent analysis of our sustainable energy choices, we have come to the evidence-based conclusion that nuclear energy is a good option for biodiversity conservation (and society in general) and that other alternatives to fossil fuels should be subjected to the same cost–benefit analyses (in terms of biodiversity and climate outcomes, as well as sociopolitical imperatives) before accepting or dismissing them. Writer Barry Brook, who collected 75 scientists to endorse his paper, is interested in land use as it impacts flora and fauna. Biodiversity concerns do not get as much play as they might – and, when they do, it annoys many when land is withdraw...