" Apples and oranges: Comparing nuclear construction costs across nations, time periods, and technologies,"Įnergy Policy, Elsevier, vol. " Economic assessment of nuclear electricity from VVER-1000 reactor deployment in a developing country,"Įnergy, Elsevier, vol. Renewable and Sustainable Energy Reviews, Elsevier, vol. " Impacts of innovation on renewable energy technology cost reductions," " A Review of Factors Influencing the Cost Development of Electricity Generation Technologies,"Įnergies, MDPI, vol. " Building back better: How big are green spending multipliers?,"Įcological Economics, Elsevier, vol. Batini, Nicoletta & Di Serio, Mario & Fragetta, Matteo & Melina, Giovanni & Waldron, Anthony, 2022." Better late than never, but never late is better: Risk assessment of nuclear power construction projects,"Įnergy Policy, Elsevier, vol. " Research on the standardization strategy of China's nuclear industry," Gangyang, Zheng & Xianke, Peng & Xiaozhen, Li & Yexi, Kang & Xiangeng, Zhao, 2021." The economics of different generation technologies for frequency response provision,"Īpplied Energy, Elsevier, vol. Wyman-Pain, Heather & Bian, Yuankai & Thomas, Cain & Li, Furong, 2018." The experience curve theory and its application in the field of electricity generation technologies – A literature review," " Cost trajectories of low carbon electricity generation technologies in the UK: A study of cost uncertainty,"ġ506, Faculty of Economics, University of Cambridge.ĮPRG 1501, Energy Policy Research Group, Cambridge Judge Business School, University of Cambridge. " Youths Interests in the Biosphere and Sensitivity to Nuclear Power Technology in the UAE: With Discussions on Open Innovation and Technological Convergence in Energy and Water Sectors," International Journal of Energy Economics and Policy, Econjournals, vol. " Research trend on Nuclear Energy from 2008 to 2018: A Bibliometric Analysis," Luis Obregon & Cristhian Orozco & Josué Camargo & Jorge Duarte & Guillermo Valencia, 2019." Finland’s Dependence on Russian Energy-Mutually Beneficial Trade Relations or an Energy Security Threat?," Jääskeläinen & Sakari Höysniemi & Sanna Syri & Veli-Pekka Tynkkynen, 2018. " Nuclear energy - The solution to climate change?," Muellner, Nikolaus & Arnold, Nikolaus & Gufler, Klaus & Kromp, Wolfgang & Renneberg, Wolfgang & Liebert, Wolfgang, 2021." The role of nuclear in China's energy future: Insights from integrated assessment," Yu, Sha & Yarlagadda, Brinda & Siegel, Jonas Elliott & Zhou, Sheng & Kim, Sonny, 2020.38(11), pages 6793-6803, November.įull references (including those not matched with items on IDEAS) " The potential of fission nuclear power in resolving global climate change under the constraints of nuclear fuel resources and once-through fuel cycles,"Įnergy Policy, Elsevier, vol. Knapp, Vladimir & Pevec, Dubravko & Matijevic, Mario, 2010.Michel Berthélemy & Lina Escobar Rangel, 2015.markets: Causes, implications and policy options,"Įnergy Policy, Elsevier, vol. " Early nuclear retirements in deregulated U.S. " Nuclear power: Status report and future prospects,"Įnergy Policy, Elsevier, vol. " Greenhouse-gas emission targets for limiting global warming to 2 ☌," Raper & Katja Frieler & Reto Knutti & David J. Malte Meinshausen & Nicolai Meinshausen & William Hare & Sarah C." Climate and Carbon: Aligning Prices and Policies," " Nuclear reactors' construction costs: The role of lead-time, standardization and technological progress," Michel Berthélemy & Lina Escobar Rangel, 2013.In the long term, after 2065, we expect inherently safe molten salt thorium reactors to compete with fusion reactors. This nuclear expansion should be accompanied by effective international safety assurances, including a mandate to stop construction of unsafe nuclear power plants. In a strategy to eliminate all non-CCS coal power stations, some 1600 MW of nuclear power would be required and sufficient to cover the base load for the electrical energy supply system. This would be especially important in the years from about 2025 up to 2065, during which one cannot expect a serious contribution from nuclear fusion and even less from fossil fuels with carbon capture and storage (CCS) facilities. Nuclear power is expected to have more economic advantages than intermittent renewable sources for generating base load electrical energy requirements. For these years up to about 2065, fission energy from light water thermal reactors is relevant as an available, developed and proven non-carbon technology with the potential to make an essential contribution to the mitigation of global warming, in addition to renewable energy. The most serious problem facing humanity is that we have only a few decades in which to implement effective measures to stop global warming.
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