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readings.bib
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readings.bib
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title={The surprisingly inexpensive cost of state-driven emission control strategies},
author={Peng, Wei and Iyer, Gokul and Binsted, Matthew and Marlon, Jennifer and Clarke, Leon and Edmonds, James A and Victor, David G},
journal={Nature Climate Change},
volume={11},
number={9},
pages={738--745},
year={2021},
publisher={Nature Publishing Group},
doi={10.1038/s41558-021-01128-0}
}
@article{peng2021achieve,
title={To achieve deep cuts in US emissions, state-driven policy is only slightly more expensive than nationally uniform policy},
author={Peng, Wei and Iyer, Gokul and Binsted, Matthew and Marlon, Jennifer and Clarke, Leon and Edmonds, James A and Victor, David G},
journal={Nature Climate Change},
volume={11},
number={11},
pages={911--912},
year={2021},
publisher={Nature Publishing Group},
doi={10.1038/s41558-021-01193-5}
}
@misc{peng2021climate,
title={Climate policy models need to get real about people—here’s how},
author={Peng, Wei and Iyer, Gokul and Bosetti, Valentina and Chaturvedi, Vaibhav and Edmonds, James and Fawcett, Allen A and Hallegatte, St{\'e}phane and Victor, David G and van Vuuren, Detlef and Weyant, John},
year={2021},
publisher={Nature Publishing Group},
doi={10.1038/d41586-021-01500-2}
}
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title={Evaluating the performance of past climate model projections},
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pages={e2019GL085378},
year={2020},
publisher={Wiley Online Library},
doi={10.1029/2019GL085378}
}
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title={Five ways to ensure that models serve society: a manifesto},
author={Saltelli, Andrea and Bammer, Gabriele and Bruno, Isabelle and Charters, Erica and Di Fiore, Monica and Didier, Emmanuel and Nelson Espeland, Wendy and Kay, John and Lo Piano, Samuele and Mayo, Deborah and others},
year={2020},
publisher={Nature Publishing Group},
doi={10.1038/d41586-020-01812-9}
}
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date = {2015-12-08},
langid = {english},
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keywords = {climate change, energy cost, energy security, grid stability, Renewable energy}
}
@article{clack_evaluation_2017,
title = {Evaluation of a proposal for reliable low-cost grid power with 100\% wind, water, and solar},
issn = {0027-8424, 1091-6490},
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urldate = {2017-06-25},
date = {2017-06-19},
langid = {english},
pmid = {28630353},
keywords = {climate change, energy costs, Energy systems modeling, grid stability, Renewable energy}
}
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title={Africa needs context-relevant evidence to shape its clean energy future},
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title={Enabling a rapid and just transition away from coal in China},
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title={Standardized metrics to quantify solar energy-land relationships: a global systematic review},
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title={Land-use intensity of electricity production and tomorrow’s energy landscape},
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title={Water Energy Nexus Excerpt from the World Energy Outlook 2016},
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date = {2018-12-19},
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}
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urldate = {2022-09-09},
date = {2016-04-01},
langid = {english},
keywords = {Consumer behavior, Individual decision-making, Information channels, Leasing, Peer effects, Solar photovoltaic ({PV})}
}
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title = {Dynamics of energy technologies and global change},
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issn = {0301-4215},
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pages = {247--280},
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year = {2010},
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url = {https://www.sciencedirect.com/science/article/pii/S0301421510003526},
author = {Arnulf Grubler},
keywords = {France, Nuclear, Reactor costs}
}
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author = {Yelle, Louis E.},
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pages = {700--710},
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urldate = {2021-11-10},
date = {2018-12-01},
langid = {english},
keywords = {Solar energy, Cost model, Photovoltaics ({PV}), {PV} modules, Technological change}
}
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title = {Determining Benefits and Costs for Future Generations},
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langid = {english},
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urldate = {2019-11-19},
date = {2019-11-13},
langid = {english},
pmid = {31740599},
keywords = {{PM}2.5, air quality improvements, clean air actions, emission abatements, health benefits}
}
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title = {Modeling for insights, not numbers: the experiences of the energy modeling forum},
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url = {//www.sciencedirect.com/science/article/pii/0305048382900020},
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pages = {449--462},
number = {5},
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number = {2},
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date = {2011-04-01}
}
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title={Impacts of China’s 2010 to 2013 Mandatory Product Energy Efficiency Standards: A Retrospective and Prospective Look},
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year={2016},
organization={ACEEE}
}
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author={Koomey, Jonathan and Akbari, Hashem and Blumstein, Carl and Brown, Marilyn and Brown, Richard and Calwell, Chris and Carter, Sheryl and Cavanagh, Ralph and Chang, Audrey and Claridge, David and others},
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pages={014017},
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@report{iea_net_2021,
title = {Net Zero by 2050},
institution = {International Energy Agency},
author = {{IEA}},
date = {2021}
}
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location = {Abu Dhabi},
title = {Renewable power generation costs in 2021},
url = {https://www.irena.org/publications/2022/Jul/Renewable-Power-Generation-Costs-in-2021},
institution = {International Renewable Energy Agency},
author = {{IRENA}},
date = {2021-07},
langid = {english}
}
@article{grant_cost_2021,
title = {Cost reductions in renewables can substantially erode the value of carbon capture and storage in mitigation pathways},
volume = {4},
issn = {2590-3330, 2590-3322},
url = {https://www.cell.com/one-earth/abstract/S2590-3322(21)00610-2},
doi = {10.1016/j.oneear.2021.10.024},
pages = {1588--1601},
number = {11},
journaltitle = {One Earth},
shortjournal = {One Earth},
author = {Grant, Neil and Hawkes, Adam and Napp, Tamaryn and Gambhir, Ajay},
urldate = {2021-12-21},
date = {2021-11-19},
note = {Publisher: Elsevier},
keywords = {{CCS}, climate change, solar, mitigation, renewables, wind, {CDR}, {IAMs}, low-carbon scenarios, technology value}
}
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title = {Experiences and lessons from China{'}s success in providing electricity for all},
journal = {Resources, Conservation and Recycling},
year = {2017},
volume = {122},
pages = {335-338},
author = {He, G. and Victor, D.G.},
doi = {10.1016/j.resconrec.2017.03.011}
}
@article{he_rapid_2020,
title = {Rapid cost decrease of renewables and storage accelerates the decarbonization of China’s power system},
volume = {11},
rights = {2020 The Author(s)},
issn = {2041-1723},
url = {https://www.nature.com/articles/s41467-020-16184-x},
doi = {10.1038/s41467-020-16184-x},
abstract = {The costs for solar photovoltaics, wind, and battery storage have dropped markedly since 2010, however, many recent studies and reports around the world have not adequately captured such dramatic decrease. Those costs are projected to decline further in the near future, bringing new prospects for the widespread penetration of renewables and extensive power-sector decarbonization that previous policy discussions did not fully consider. Here we show if cost trends for renewables continue, 62\% of China’s electricity could come from non-fossil sources by 2030 at a cost that is 11\% lower than achieved through a business-as-usual approach. Further, China’s power sector could cut half of its 2015 carbon emissions at a cost about 6\% lower compared to business-as-usual conditions.},
pages = {2486},
number = {1},
journaltitle = {Nature Communications},
author = {He, Gang and Lin, Jiang and Sifuentes, Froylan and Liu, Xu and Abhyankar, Nikit and Phadke, Amol},
urldate = {2020-07-24},
date = {2020-05-19},
langid = {english},
note = {Number: 1
Publisher: Nature Publishing Group},
file = {Full Text PDF:/Users/ganghe/Box Sync/research/reference/Zotero/storage/UXSRMM5H/He et al. - 2020 - Rapid cost decrease of renewables and storage acce.pdf:application/pdf}
}