评估利用能源储存的区域减排潜力

A. Pimm, E. Barbour, T. Cockerill, Jan Palczewski
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引用次数: 6

摘要

储能是低碳发电的推动者,然而一些研究表明,即使储能具有100%的往返效率,它的使用也会导致碳排放的显著增加。为了了解储能运行和需求响应对排放的影响,有必要确定储能或需求响应运行时的边际排放因子(MEF)。本文介绍了利用按燃料类型划分的区域电力需求和发电量数据来确定区域mef的统计方法,并使用一个简单的潮流模型来确定按区域划分的消费排放。该技术将于2018年应用于英国的电力系统。研究发现,储能的影响因地点和运行模式的不同而有很大差异,在消耗大量化石燃料发电的地区,储能用于减少弃风时,减排效果最大,而在不弃风的地区,储能用于风平衡时,排放增幅最大。最高排放量减少和最高排放量增加之间的差异是显著的,每千瓦时通过储存的二氧化碳为785克。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating the regional potential for emissions reduction using energy storage
Energy storage is an enabler of low carbon electricity generation, however several studies have shown that its use can cause a non-trivial increase in carbon emissions even if the storage has 100% round-trip efficiency. To understand the impact of storage operation and demand response on emissions, it is necessary to determine the marginal emissions factor (MEF) at the time the storage or demand response was operated. This paper presents statistical approaches to determining regional MEFs using data on regional electricity demand and generation by fuel type, with a simple power flow model used to determine consumption emissions by region. The technique is applied to the electricity system in Great Britain in 2018. It is found that the impact of storage varies widely by location and operating mode, with the greatest emissions reductions achieved when storage is used to reduce wind curtailment in areas which consume high levels of fossil fuel generation, and the greatest emissions increases occurring where storage is used for wind balancing in areas where wind is not curtailed. The difference between the highest emissions reduction and highest emissions increase is found to be significant, at 785 gCO2 per kWh that passes through storage.
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