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Life-cycle performance of hydrogen as an energy management solution in hydropower plants: A case study in Central Italy

机译:氢作为水力发电厂能源管理解决方案的生命周期性能:以意大利中部为例

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The suitability of hydrogen as an energy management solution in a run-of-river hydropower plant in Central Italy is evaluated from a life-cycle perspective. Hydrogen production at off-peak hours via electrolysis is considered, as well as potential hydrogen storage in metal hydrides followed by hydrogen use at peak hours for power generation using fuel cell technology. Hydropower generation and hydrogen production are identified as the subsystems contributing most to the nine evaluated impact categories (e.g., global warming, abiotic depletion and cumulative energy demand). The renewable hydrogen produced shows a more favourable life-cycle environmental and energy performance than conventional hydrogen generated via steam methane reforming. Furthermore, when enlarging the system with hydrogen use for power generation, the renewable electricity product shows a better life-cycle profile than conventional electricity for the Italian electrical grid. Overall, under life-cycle aspects, hydrogen is found to be a suitable energy solution in hydropower plants both as a hydrogen product itself (e.g., for transportation) and as a feedstock for subsequent power generation at peak hours. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:从生命周期的角度评估了氢在意大利中部河流水电厂中作为能源管理解决方案的适用性。考虑了在非高峰时段通过电解产生的氢气,以及潜在的氢在金属氢化物中的存储,然后在高峰时段使用氢气进行燃料电池技术的发电。水电发电和氢气生产被确定为对九种评估影响类别(例如全球变暖,非生物耗竭和累积能源需求)贡献最大的子系统。与通过蒸汽甲烷重整生成的传统氢气相比,生成的可再生氢气显示出更有利的生命周期环境和能源性能。此外,将系统中的氢气使用量扩大时,可再生电力产品的寿命曲线要比意大利电网的常规电力更好。总体上,在生命周期方面,发现氢既是氢产物本身(例如,用于运输)又是用于高峰时段后续发电的原料,是水力发电厂中合适的能源解决方案。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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