Energy Storage Science and Technology ›› 2021, Vol. 10 ›› Issue (5): 1477-1485.doi: 10.19799/j.cnki.2095-4239.2021.0389
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Haisheng CHEN1,2(), Chang LIU1, Yujie XU1,2, Fen YUE3, Wei LIU3, Zhenhua YU3
Received:
2021-08-02
Revised:
2021-08-06
Online:
2021-09-05
Published:
2021-09-08
Contact:
Haisheng CHEN
E-mail:chen_hs@iet.cn
CLC Number:
Haisheng CHEN, Chang LIU, Yujie XU, Fen YUE, Wei LIU, Zhenhua YU. The strategic position and role of energy storage under the goal of carbon peak and carbon neutrality[J]. Energy Storage Science and Technology, 2021, 10(5): 1477-1485.
1 | 清华大学气候变化与可持续发展研究院. 中国长期低碳发展战略与转型路径研究[J]. 中国人口•资源与环境, 2020, 30(11): 1-23. |
Institute of Climate Change and Sustainable Development, Tsinghua University. Study on China's long-term low-carbon development strategy and transition path[J]. China Population Resources and Environment. 2020, 30(11): 1-23. | |
2 | 英国石油公司. 2020年世界能源统计评论[R]. 2020. |
British Petroleum (BP). Statistical review of world energy 2020[R]. 2020. | |
3 | 落基山研究所, 能源转型委员会. 电力增长零碳化(2020—2030): 中国实现碳中和的必经之路[R]. 2021. |
Rocky Mountain Institute, Energy Transition Council. Zero carbon power growth (2020—2030): China's path to carbon neutrality[R]. 2021. | |
4 | 何建坤. 中国长期低碳发展战略研究[R]. [2020-10-30]. |
HE J K. Study on China's long-term low-carbon development strategy[R]. Tsinghua University, 2020. | |
5 | RIFKIN J. The third industrial revolution how lateral power is transforming energy, the economy, and the world[M]. Beijing: CITIC Publishing House, 2012 |
6 | 余家豪. 全球能源转型带来的地缘政治风险[J]. 能源, 2019(3): 90-91. |
YU J H. The geopolitical risks posed by the global energy transition[J]. Energy, 2019(3): 90-91. | |
7 | 张新敬, 陈海生, 刘金超, 等. 压缩空气储能技术研究进展[J]. 储能科学与技术, 2012, 1(1): 26-40. |
ZHANG X J, CHEN H S, LIU J C, et al. Research progress in compressed air energy storage system: A review[J]. Energy Storage Science and Technology, 2012, 1(1): 26-40. | |
8 | CHEN H S, CONG N T, YANG W, et al. Progress in electrical energy storage system: A critical review[J]. Progress in Natural Sciences, 2009, 19(3): 291-312. |
9 | 陈海生, 凌浩恕, 徐玉杰. 能源革命中的物理储能技术[J]. 中国科学院院刊, 2019, 34(4): 450-459. |
CHEN H S, LING H S, XU Y J. Physical energy storage technology in the energy revolution[J]. Bulletin of the Chinese Academy of Sciences. 2019, 34(4): 450-459. | |
10 | 李先锋, 张洪章, 郑琼, 等. 能源革命中的电化学储能技术[J]. 中国科学院院刊, 2019, 34(4): 443-449. |
LI X F, ZHANG H Z, ZHENG Q, et al. Electrochemical energy storage technology in the energy revolution[J]. Bulletin of the Chinese Academy of Sciences, 2019, 34(4): 443-449. | |
11 | Statista. Number of mobile internet device subscriptions worldwide and Number of internet user in China[EB/OL]. 2020. https://www.statista.com/statistics/273018/number-of-internet-users-worldwide/. |
12 | 国际能源署. 全球电动汽车展望2021[R]. 2021. |
International Energy Agency (IEA). Global electric vehicle outlook 2021[R]. 2021. | |
13 | Statista. Global plug-in vehicle fleet and estimated plug-in electric vehicle sales in the United States and China [EB/OL]. 2020. https://www.statista.com/statistics/665774/global-sales-of-plug-in-light-vehicles/. |
14 | 国际能源署. 2021—2022年可再生能源市场前景更新报告[R]. 2021. |
International Energy Agency (IEA). Renewable energy market outlook update 2021—2022[R]. 2021. | |
15 | 中国水电水利规划设计总院. 中国可再生能源发展报告2019[R]. 2020. |
Institute of China Hydropower Planning and Design General. China renewable energy development report 2019[R]. 2020. | |
16 | 中国能源研究会储能专委会, 中关村储能产业技术联盟. 储能产业研究白皮书2021[R]. 2021. |
Energy Storage Committee of China Energy Research Society, China Energy Storage Alliance. White paper of energy storage industry research 2021[R]. 2021. | |
17 | 陈海生, 刘畅, 齐智平. 分布式储能的发展现状与趋势[J]. 中国科学院院刊, 2016, 31(2): 224-231. |
CHEN H S, LIU C, QI Z P. Development status and trend of distributed energy storage[J]. Bulletin of Chinese Academy of Sciences, 2016, 31(2): 224-231. | |
18 | 可再生能源署. 电力储存与可再生能源: 2030年的成本与市场[R]. 2021. |
International Renewable Energy Agency (IRENA). Electricity storage and renewable energy: Costs and markets 2030[R]. 2021. | |
19 | 世界能源理事会. 储能监测: 2019发展趋势[R]. 2020. |
World Energy Council (WEC). Energy storage monitoring: 2019 Trends[R]. 2020. | |
20 | 国家发展改革委. 关于加快推动新型储能发展的指导意见(征求意见稿)[EB/OL]. 2021. http://www.gov.cn/xinwen/2021-04/22/content_5601283.htm. |
National Development and Reform Commission. Guidelines on accelerating the development of new energy storage (draft)[EB/OL]. 2021. http://www.gov.cn/xinwen/2021-04/22/content_5601283.htm. | |
21 | 前瞻产业研究院. 2021—2026中国储能电站行业市场前瞻与投资规划分析报告[R]. 2021. |
Foresight Industrial Research Institute. 2021—2026 Market outlook and investment planning analysis report of energy storage power station industry in China [R]. 2021. | |
22 | 国家电网能源研究院. 中国能源电力发展展望2020[R]. 2020. |
State Grid Energy Research Institute. China's energy and power development outlook 2020[R]. 2020. | |
23 | U.S. Department of Energy (DOE). Energy storage grand challenge roadmap[R]. 2020. |
24 | Pacific Northwest National Laboratory. 2020 grid energy storage technology cost and performance assessment[R]. 2020. |
25 | GTM Research. 2015—2020电网规模储能平衡系统: 结构、成本和参与者[R]. 2016 |
GTM Research. 2015—2020 grid scale energy storage balance system: Structure, cost and participants[R]. 2016. | |
26 | 中国能源研究会储能专委会, 中关村储能产业技术联盟. 储能产业研究白皮书2020[R]. 2020. |
Energy Storage Committee of China Energy Research Society, China Energy Storage Alliance. White paper of energy storage industry research 2020[R]. 2020. | |
27 | 刘英军, 刘亚奇, 张华良, 等. 我国储能政策分析与建议[J]. 储能科学与技术, 2021, 10(4): 1463-1473. |
LIU Y J, LIU Y Q, ZHANG H L, et al. Energy storage policy analysis and suggestions in China[J]. Energy Storage Science and Technology, 2021, 10(4): 1463-1473. |
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