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废弃煤炭井巷抽水储能的全生命周期成本研究 被引量:6
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作者 姚西龙 葛帅帅 +5 位作者 郭枝 栗继祖 韩云菲 刘昕 ahmed dulal TACHEGA Mark Awe 《中国矿业》 北大核心 2020年第10期50-56,65,共8页
废弃煤炭井巷抽水储能不仅有利于废弃煤炭井巷资源的再利用,而且有利于促进可再生能源电力的消纳,能够推动煤炭资源型地区能源供给系统的转型发展。废弃煤炭井巷抽水储能的全生命周期成本核算是该项技术推广的前提,具有必要性和现实意... 废弃煤炭井巷抽水储能不仅有利于废弃煤炭井巷资源的再利用,而且有利于促进可再生能源电力的消纳,能够推动煤炭资源型地区能源供给系统的转型发展。废弃煤炭井巷抽水储能的全生命周期成本核算是该项技术推广的前提,具有必要性和现实意义。本文参照大柳塔煤矿地下水库的相关数据,建立了废弃煤炭井巷抽水储能的技术参数体系;通过与传统抽水储能电站进行对比,分析废弃煤炭井巷抽水储能的全生命周期经济成本和环境成本;利用敏感性分析,得出各影响因素对平准化发电成本的影响程度。结果显示:①在不考虑施工难度的情况下,同等装机规模的废弃煤炭井巷抽水储能的平准化储能成本低于传统抽水储能电站的平准化储能成本;在考虑施工难度的情况下,若废弃煤炭井巷抽水储能的施工难度系数小于传统抽水储能的1.26倍,则废弃煤炭井巷抽水储能的成本要小于传统抽水储能;②废弃煤炭井巷抽水储能的装机规模小于传统抽水储能时,其平准化储能成本虽然高于传统抽水储能,但低于当地峰谷差价,具有经济可行性;③施工难度是影响废弃煤炭井巷抽水储能成本的关键因素,环境成本对废弃煤炭井巷抽水储能平准化发电成本影响程度最小;④废弃煤炭井巷抽水储能的环境成本较低,在全生命周期发电成本中所占比重较小,废弃煤炭井巷抽水储能具有良好的环境效益。 展开更多
关键词 废弃煤炭井巷:抽水储能 全生命周期
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Impact of Renewable Energy on Carbon Dioxide Emission Reduction in Bangladesh 被引量:1
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作者 ahmed dulal Xilong Yao +3 位作者 Mandi Barker-Gibb Mark Awe Tachega Shuaishuai Ge Hui Li 《Journal of Power and Energy Engineering》 2021年第5期134-165,共32页
Economic growth and industrialization often default to a great dependency on fossil fuels (FF) to supply power needs. The carbon rich nature of FF combustion can impact global warming. Therefore, it is conducive to tr... Economic growth and industrialization often default to a great dependency on fossil fuels (FF) to supply power needs. The carbon rich nature of FF combustion can impact global warming. Therefore, it is conducive to transition from FF to renewable energy (RE). The present study aimed to address if replacement of a single FF by RE can mitigate carbon emissions. We conduct the study in a country undergoing mass urbanization and challenging energy demands. <span>Data from energy resources in the Power & Energy Sector Master Plan (PSMP2016;Bangladesh) are analyzed over the 2017-2021 trajectory. Two scenarios for imports, oil and coal are assessed. Environmental input output (E</span><span><span>-</span></span><span><span style="font-family:;" "=""><span>IO) analysis and percentage equivalence analysis measured data variables. The data is then further disaggregated into an emission reduction (ER) model with sensitivity analysis</span><span> to measure carbon emission reduction when each FF source is substituted by RE. </span></span></span><span>Results show the percentage share of energy generation capacity by both coal and RE increase over time. Solar and wind power contribute to the increase in RE. When oil is imported a 1% increase in oil, coal, and gas-based energy generation capacity increases carbon emissions by 1.25%, 1.48% and 0.93%, respectively. 1% increase in RE produces negligible carbon emissions (0.0042%). There was little difference in the percentages of carbon emissions when coal is imported. Substituting any FF with RE of equal energy capacity does not, in the short term, reduce carbon emissions in either scenario. Therefore, we conclude that for long term clean energy prospects in Bangladesh, RE needs to be developed to operate at greater capacity in conjunction with other carbon management factors. The research findings herein offer insights for clean energy implementation in developing nations.</span> 展开更多
关键词 Carbon Emission Carbon Emission Reduction Renewable Energy Fossil Fuels Environmental Input Output (E-IO)
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