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Thermodynamic evaluation of geothermal energy powered hydrogen production by PEM water electrolysis

机译:PEM水电解生产地热能制氢的热力学评估

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Thermodynamic energy and exergy analysis of a PEM water electrolyzer driven by geothermal power for hydrogen production is performed. For this purpose, work is produced from a geothermal resource by means of the organic Rankine cycle; the resulting work is used as a work input for an electrolysis process; and electrolysis water is preheated by the waste geothermal water. The first and second-law based performance parameters are identified for the considered system and the system performance is evaluated. The effects of geothermal water and electrolysis temperatures on the amount of hydrogen production are studied and these parameters are found to be proportional to each other. We consider a geothermal resource at 160 ℃ available at a rate of 100 kg/s. Under realistic operating conditions, 3810 kW power can be produced in a binary geothermal power plant. The produced power is used for the electrolysis process. The electrolysis water can be preheated to 80 ℃ by the geothermal water leaving the power plant and hydrogen can be produced at a rate of 0.0340 kg/s. The energy and exergy efficiencies of the binary geothermal power plant are 11.4% and 45.1%, respectively. The corresponding efficiencies for the electrolysis system are 64.0% and 61.6%, respectively, and those for the overall system are 6.7% and 23.8%, respectively.
机译:进行了由地热发电驱动的PEM水电解槽的热力学能量和火用分析,用于制氢。为此,地热资源通过有机朗肯循环产生了功。所产生的功用作电解过程的功输入;电解水被废地热水预热。为所考虑的系统识别基于第一定律和第二定律的性能参数,并评估系统性能。研究了地热水和电解温度对产氢量的影响,发现这些参数彼此成正比。我们认为160℃的地热资源的可用速率为100 kg / s。在实际运行条件下,二元地热发电厂可产生3810 kW的功率。产生的功率用于电解过程。离开发电厂的地热水可以将电解水预热至80℃,并且可以以0.0340 kg / s的速度产生氢气。二元地热发电厂的能源效率和火用效率分别为11.4%和45.1%。电解系统的相应效率分别为64.0%和61.6%,而整个系统的相应效率分别为6.7%和23.8%。

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