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Energy, exergy, economic and exergoenvironmental analyses of gas and air bottoming cycles for production of electricity and hydrogen with gas reformer

机译:用天然气重整器生产的气体和空气底层循环的能量,暴风,经济和淬火周期分析

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The purpose of this study is to investigate an intergration of three cycles consisting of gas, air bottom and steam cycles for electrical power generation and hydrogen production. The configuration of the three cycles is powered by the natural gas that is used by the gas cycle on the top. Then, the exhaust gas of the gas cycle is used by an air cycle at the bottom of the gas cycle and consequently a heat recovery steam generator (HRSG) is driven by the exhaust gas of the air cycle. The purpose of the HRSG cycle is to produce steam to be used in the reformer for the hydrogen production. The energy, exergy, economic and exergoenvironmental analyses of this combined cycle is examined. The results of this study show that addition of air gas cycle to natural gas cycle improves the energy efficiency from 17.2% to 28.% and Payback Period (PP) from 4.72 to 2.92. Whereas, adding HRSG to the whole cycle improves the energy efficiency to 67.6% and Payback Period to 0.41 years. Moreover, this interagation of the cycles improves the Net Present Value (NPV) from 1.13 x 10(9) to 2.07 x 10(9) for gas and air cycle, respectively and to 3.89 x 10(10) $ by the whole cycle. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究的目的是研究三个循环的整合,包括用于电力发电和氢气产生的气体,空气底部和蒸汽循环。三个循环的配置由顶部的气体循环使用的天然气供电。然后,气体循环的废气被气体循环底部的空气循环使用,因此热回收蒸汽发生器(HRSG)由空气循环的废气驱动。 HRSG循环的目的是生产用于氢生产的重整器中的蒸汽。检查了这种联合循环的能量,暴力,经济和经济和exergiOnalment分析。该研究的结果表明,向天然气循环添加空气气体循环从4.72至2.92增加到28.2%至28.%和回报期(PP)的能量效率。而且,向整个周期添加HRSG将能源效率提高到67.6%,回报率为0.41岁。此外,该循环的这种抗序机分别将1.13×10(9)至2.07×10(9)的净现值(NPV)改善了气体和空气循环,并通过整个周期的3.89×10(10)美元。 (c)2020 elestvier有限公司保留所有权利。

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