电力行业二氧化碳减排策略研究任务书

 2021-10-20 07:10

1. 毕业设计(论文)的内容和要求

随着大气中二氧化碳(CO2)含量的逐年升高,温室效应、极端天气现象等全球环境问题日益突出。

煤、石油等化石燃料的消耗产生的温室气体尤其是二氧化碳是大气中CO2的主要来源。

我国是全球CO2排放总量最大的国家。

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2. 参考文献

[1] Zhang X, Yang H, Yu Q, et al. Analysis of carbon-abatement investment for thermal power market in carbon-dispatching mode and policy recommendations[J]. Energy, 2018, 149:954-966.[2] Zhang B, He M, Pan H. A study on the design of a hybrid policy for carbon abatement[J]. Chinese Journal of Population, Resources and Environment, 2017(01):54-61.[3] Keller K, Mcinerney D, Bradford D F. Carbon dioxide sequestration: how much and when? [J]. Climatic Change, 2008, 88(3-4):267-291.[4] Ibitoye F I, Akinbami J F K. Strategies for implementation of CO2-mitigation options in Nigeria s energy sector[J]. Applied Energy, 1999, 63(1):1-16.[5] 戴攀, 邹家勇, 田杰, et al. 中国电力行业碳减排综合优化[J]. 电力系统自动化, 2013, 37(14):1-6.[6] 段蒙. 武汉市典型行业碳减排潜力和减排成本分析[D]. 华中科技大学, 2016.[7] 马蓉, 甄金泉, 刘信信. 电力生产中化石燃料、核能和可再生能源间关于降低二氧化碳排放的成本比较[J]. 产业与科技论坛(19):71-73.[8] 董晓梅. 我国碳减排的成本和效益分析[D]. 华北电力大学, 2013.[9] Rubin E S, Chen C, Rao A B. Cost and performance of fossil fuel power plants with CO2 capture and storage[J]. Energy Policy, 2007, 35(9):4444-4454.[10] Kenneth V D B, Delarue E. Quantifying CO2 abatement costs in the power sector[J]. Energy Policy, 2015, 80:88-97.[11] De Melo C A, Gilberto D M J. Cost-effectiveness of CO2 emissions reduction through energy efficiency in Brazilian building sector[J]. Energy Efficiency, 2015, 8(4):815-826.[12] Li J, Hou Y, Wang P , et al. A Review of Carbon Capture and Storage Project Investment and Operational Decision-Making Based on Bibliometrics[J]. Energies, 2018, 12(1).[13] 王喜平,杜蕾,赵树军,李振伟.基于复合实物期权的燃煤电厂碳捕获与储存投资决策研究[J].中国电力,2016,49(7):179-184.[14] Petrescu L, Cormos C C. Environmental assessment of IGCC power plants with pre-combustion CO 2, capture by chemical calcium looping methods[J]. Journal of Cleaner Production, 2017, 158:233-244.[15] Zhao X, Yin H, Zhao Y. Impact of environmental regulations on the efficiency and CO2 emissions of power plants in China[J]. Applied Energy, 2015, 149:238-247.

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