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Life cycle cost analysis: A case study of hydrogen energy application on the Orkney Islands

机译:生命周期成本分析:以奥克尼群岛上的氢能应用为例

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Hydrogen can compensate for the intermittent nature of some renewable energy sources and encompass the options of supplying renewables to offset the use of fossil fuels. The integrating of hydrogen application into the energy system will change the current energy market. Therefore, this paper deploys the life cycle cost analysis of hydrogen production by polymer electrolyte membrane (PEM) electrolysis and applications for electricity and mobility purposes. The hydrogen production process includes electricity generated from wind turbines, PEM electrolyser, hydrogen compression, storage, and distribution by H-2 truck and tube trailer. The hydrogen application process includes PEM fuel cell stacks generating electricity, a H-2 refuelling station supplying hydrogen, and range extender fuel cell electric vehicles (RE-FCEVs). The cost analysis is conducted from a demonstration project of green hydrogen on a remote archipelago. The methodology of life cycle cost is employed to conduct the cost of hydrogen production and application. Five scenarios are developed to compare the cost of hydrogen applications with the conventional energy sources considering CO2 emission cost. The comparisons show the cost of using hydrogen for energy purposes is still higher than the cost of using fossil fuels. The largest contributor of the cost is the electricity consumption. In the sensitivity analysis, policy supports such as feed-in tariff (FITs) could bring completive of hydrogen with fossil fuels in current energy market. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氢可以补偿某些可再生能源的间歇性,并涵盖提供可再生能源以抵消化石燃料使用的选择。将氢气应用整合到能源系统中将改变当前的能源市场。因此,本文采用了聚合物电解质膜(PEM)电解制氢的生命周期成本分析方法,并将其应用于电力和流动性方面。氢气的生产过程包括风力涡轮机,PEM电解槽产生的电能,氢气的压缩,存储以及通过H-2卡车和管式拖车的分配。氢的施加过程包括发电的PEM燃料电池堆,供应氢的H-2加油站以及增程燃料电池电动汽车(RE-FCEV)。成本分析是从一个偏远的群岛上的绿色氢气示范项目进行的。使用生命周期成本的方法论来进行氢气生产和使用的成本。考虑到CO2排放成本,开发了五种方案来比较氢气的应用成本与常规能源的成本。比较表明,将氢用于能源目的的成本仍高于使用化石燃料的成本。成本的最大贡献是电力消耗。在敏感性分析中,诸如上网电价(FITs)之类的政策支持可能会在当前能源市场上使氢与化石燃料竞争。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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