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Exergy analyses of green hydrogen production methods from biogas-based electricity and sewage sludge

机译:利用沼气发电和污泥生产绿色氢的方法的火用分析

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In this study, five models are considered for the use of biogas-based electricity and sewage sludge obtained from a municipal wastewater treatment plant for green hydrogen production. These models include alkaline, PEM, high temperature water electrolysis, alkaline hydrogen sulfide electrolysis and dark fermentation biohydrogen production processes. Energy and exergy analyses are performed on these models by applying thermodynamic procedures and the results are compared. The daily hydrogen production rates of the models are found as 594, 625.4, 868.6, 10.8 and 56.74 kg and the exergetic efficiencies of the models are calculated as 19.81, 20.66, 25.83, 24.86 and 60.54%, respectively. In terms of the exergetic efficiency, the dark fermentation biohydrogen production process is found to be superior to the other models, followed by the high temperature steam electrolysis process. This paper aims to determine the most appropriate model for a wastewater treatment plant among the considered models in terms of exergy efficiency. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,考虑了五个模型,这些模型用于将从市政污水处理厂获得的沼气发电和污泥用于绿色氢气的生产。这些模型包括碱性,PEM,高温水电解,碱性硫化氢电解和暗发酵生物制氢工艺。通过应用热力学程序对这些模型进行能量和火用分析,并对结果进行比较。模型的日产氢量分别为594、625.4、868.6、10.8和56.74 kg,模型的高能效率分别计算为19.81%,20.66、25.83、24.86和60.54%。就充分利用效率而言,发现暗发酵生物氢的生产过程优于其他模型,其次是高温蒸汽电解过程。本文旨在从火用效率的角度出发,在考虑的模型中确定最适合废水处理厂的模型。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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