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Exergoeconomic analysis of hydrogen production using a standalone high-temperature electrolyzer

机译:独立高温电解器的氢气生产的Exergo经济分析

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The conventional hydrogen production methods, primarily steam methane reforming and coal gasification, produce massive amounts of greenhouse gas emissions which significantly cause impacts on the environment. An alternative hydrogen production method is high-temperature electrolysis using Solid Oxide Electrolyzer that combines both high conversion efficiency and saleable high purity hydrogen production. The produced hydrogen can feed the various industrial processes at different scales in addition to offering an environmentally friendly storage option. The scope of this paper is to examine the economic feasibility of this technology through the utilization of the exergoeconomic concept, which traces the flow of exergy through the system and price both waste and products. Therefore, a standalone solid oxide electrolyzer of a 1MWe is considered for hydrogen production using renewably generated electricity. Having the detailed exergy analysis conducted in earlier studies, the focus of this article is on the costing of each exergy stream to determine the exergy cost and the potential changes outcomes as a result of the system operating or design parameters optimization. It is found that the cost of hydrogen production through the modular high-temperature electrolyzer varies between $3-$9/kg with an average of about $5.7/kg, respectively. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:传统的氢气生产方法,主要是蒸汽甲烷重整和煤气化,产生大量的温室气体排放,从而显着引起对环境的影响。替代氢生产方法是使用固体氧化物电解槽的高温电解,其结合了高转化效率和可销售的高纯度氢气产生。除了提供环保存储选项外,所生产的氢气还可以在不同尺度上喂养各种工业过程。本文的范围是通过利用exergo经济概念来研究这项技术的经济可行性,该概念通过系统和价格追溯到浪费和产品的流动。因此,使用可再生产生的电力考虑1MWWE的独立固体氧化物电解槽。在早期研究中进行了详细的漏洞分析,本文的重点是每个Deertgy流的成本核算,以确定由于系统操作或设计参数优化而导致的漏洞成本和潜在的变化结果。结果发现,通过模块化高温电解箱的氢气产量分别在3-0美元/千克之间变化,平均分别为约5.7 / kg。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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