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A technical, economic and environmental analysis of combining geothermal energy with carbon sequestration for hydrogen production

机译:将地热能量与碳封存结合氢气生产的技术,经济和环境分析

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Among numerous techniques for the hydrogen production without harmful emissions, especially avoiding the carbon dioxide emissions, hydrogen technologies driven by geothermal energy represent an attractive solution. This paper is interested in the process by which the electricity generated from geothermal power plant that is operated using CO2 as heat transmission fluid is exploited for hydrogen production through water electrolysis. A numerical simulation is used to evaluate the potential for hydrogen production and to estimate the levelized cost of electrolytic hydrogen. We also present a brief analysis of environmental issues, including the carbon tax. The results show that the process has a good potential for geothermal hydrogen production, is capable of producing about 22 kg/h of electrolytic hydrogen for the geothermal source of carbon dioxide mass flow rate of 40 kg/s and a temperature of 296 K. In economic regard, the electric energy system costs are the major component of the total hydrogen production cost (more than 90%). The estimated cost of hydrogen is 8.24 $/kg H2. By including the carbon tax, the cost of hydrogen production becomes far more competitive.
机译:在没有有害排放的氢气产生的许多技术中,特别是避免了二氧​​化碳排放,地热能驱动的氢技术代表了一种吸引力的解决方案。本文对该过程感兴趣,通过使用CO2运行的地热发电厂产生的方法是通过水电解产生氢气产生的。数值模拟用于评估氢生产的可能性,并估计电解氢的调用成本。我们还介绍了对环境问题的简要分析,包括碳税。结果表明,该方法具有良好的地热氢生产潜力,能够为电解氢的电解氢产生约22kg / h,电气源的二氧化碳质量流速为40kg / s,温度为296k。经济方面,电能系统成本是总氢生产成本(超过90%)的主要组成部分。估计的氢成本为8.24 $ / kg H2。通过包括碳税,氢生产成本变得更具竞争力。

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