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Exergoeconomic and thermodynamic analyses of an externally fired combined cycle with hydrogen production and injection to the combustion chamber

机译:外燃联合循环的能经济和热力学分析,产生氢气并注入燃烧室

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A hydrogen production unit is successfully integrated with an externally fired combined cycle using biomass fuel. The hydrogen produced in an electrolyzer can be used for other purposes, but when there is temporarily no market for it is injected into the combustion chamber of an externally fired combined cycle. Injecting hydrogen into the combustion chamber was found to reduce fuel consumption by almost 27%. Moreover, hydrogen injection decreased the energy efficiency and exergy efficiency by 45%, and decreased both the exergy loss and exergy destruction rates. Meanwhile, CO2 emissions decreased by 32%. However, there are some disadvantages to hydrogen injection, especially from the viewpoint of exergoeconomics. The total unit product cost for the externally fired combined cycle with hydrogen injection is almost 27% more than the unit without hydrogen injection, although the exergy loss and destruction costs decreased with hydrogen injection. The value of the relative cost difference with hydrogen injection rises by 40%. Also the exergoeconomic assessment demonstrates that the cost of components (purchase and maintenance) are higher than cost of components' exergy destruction for both cycles, i.e., with and without hydrogen injection. As the compressor pressure ratio increases, optimal points are identified for biomass flow rate, energy and exergy efficiencies, exergy destruction and loss rates, exergy destruction and loss exergy cost rates, total unit product cost and relative cost difference. Crown Copyright (C) 2017 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC. All rights reserved.
机译:制氢装置已成功与使用生物质燃料的外燃联合循环整合。电解槽中产生的氢气可以用于其他目的,但是在暂时没有市场销售时,会将其注入外部燃烧联合循环的燃烧室。发现将氢气注入燃烧室可将燃料消耗降低近27%。此外,注氢使能量效率和火用效率降低了45%,并且降低了火用损失和火用破坏率。同时,二氧化碳排放量减少了32%。但是,特别是从能效经济学的观点来看,注氢存在一些缺点。带氢注入的外燃联合循环的总单位产品成本比不带氢注入的单位高出近27%,尽管通过氢注入降低了本能损失和破坏成本。氢气注入的相对成本差异值增加了40%。另外,能效经济评估表明,在两个循环中,即有或没有注入氢的情况下,部件的成本(购买和维护)都高于部件的火用破坏成本。随着压缩机压力比的增加,为生物质流速,能量和火用效率,火用破坏和损失率,火用破坏和损失火用成本率,总单位产品成本和相对成本差异确定了最佳点。官方版权(C)2017,由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。版权所有。

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