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Life-cycle Analysis for Assessing Environmental Impact

机译:生命周期分析以评估环境影响

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In this chapter, stationary energy storage systems are assessed concerning their environmental impacts via life-cycle assessment (LCA). The considered storage technologies are pumped hydroelectric storage, different types of batteries and heat storage. After a general introduction to the method of LCA, some methodological implications for energy storage systems and the selection of impact indicators are outlined. Subsequently, the environmental impacts of different energy storage options are assessed in three case studies. The first case study compares pumped hydroelectric storage and utility-scale battery storage applying a screening LCA. Both of the two following case studies are based on an island micro grid application and follow a stepwise approach. The starting point is a pair of cost-optimal energy scenarios - one with and the other without use of stationary battery storage. First, based on the given operational parameters, the environmental performance of different lithium-ion batteries is assessed. This allows the identification of the most appropriate battery chemistry for this specific application (case study 2). Applying these results, the battery-using energy system scenario is compared in terms of environmental performance with an alternative scenario without battery use in order to determine the contribution of energy storage within the whole energy system (case study 3). Under the given modelling assumptions, the use of battery storage results in increased environmental impacts in the majority of the assessed categories, both in comparison with pumped hydroelectric storage (case study 1) and in comparison with the standard small-scale energy system without battery storage (case study 3). Regarding heat storage, the underlying case study shows a low relevance of environmental impacts within the energy system.
机译:在本章中,将通过生命周期评估(LCA)对固定式储能系统的环境影响进行评估。考虑的存储技术是抽水蓄能,不同类型的电池和热量存储。在对LCA方法进行一般介绍之后,概述了对能量存储系统的一些方法学意义和影响指标的选择。随后,在三个案例研究中评估了不同储能方案对环境的影响。第一个案例研究比较了采用筛选LCA的抽水蓄能电站和公用事业规模蓄电池组。以下两个案例研究均基于孤岛微电网应用程序,并采用逐步方法。起点是一对成本最佳的能源方案-一种是使用固定电池存储,另一种是不使用固定电池存储。首先,基于给定的运行参数,评估不同锂离子电池的环境性能。这样就可以确定针对此特定应用的最合适的电池化学成分(案例研究2)。应用这些结果,就使用电池的能源系统方案在环境性能方面与不使用电池的替代方案进行了比较,以确定整个能源系统中储能的贡献(案例研究3)。在给定的建模假设下,与抽水式水力发电相比(案例研究1)和与没有电池储能的标准小型能源系统相比,电池储能的使用对大多数评估类别的环境影响都增加了(案例研究3)。关于蓄热,基础案例研究表明能源系统中环境影响的相关性较低。

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