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Development and exergoeconomic evaluation of a SOFC-GT driven multi-generation system to supply residential demands: Electricity, fresh water and hydrogen

机译:SOFC-GT驱动的多代系统的开发和Exergo经济评估提供住宅需求:电力,淡水和氢气

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In this study, a novel multi-generation system is proposed by integrating a solid oxide fuel cell (SOFC)-gas turbine (GT) with multi-effect desalination (MED), organic flash cycle (OFC) and polymer electrolyte membrane electrolyzer (PEME) for simultaneous production of electricity, fresh water and hydrogen. A comprehensive exergoeconomic analysis and optimization are conducted to find the best design parameters considering exergy efficiency and total unit cost of products as objective functions. The results show that the exergy efficiency and the total unit cost of products in the optimal condition are 59.4% and 23.6 $/GJ, respectively, which offers an increase of 2% compared to exergy efficiency of SOFC-GT system. Moreover, the system is capable of producing 2.5 MW of electricity by the SOFC-GT system, 5.6 m(3)/h of fresh water by MED unit, and 1.8 kg/h of hydrogen by the PEME. The associated cost for producing electricity, fresh water and hydrogen are 3.4 cent/kWh, 37.8 cent/m(3), and 1.7 $/kg, respectively. A comparison between the results of the proposed system and those reported in other related papers are presented. The diagram of the exergy flow is also plotted for the exact determination of the exergy flow rate in each component, and also, location and value of exergy destruction. Finally, the capability of the proposed system for a case study of Iran is examined. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在该研究中,通过将固体氧化物燃料电池(SOFC) - GAS涡轮机(GT)与多效脱盐(MED),有机闪段(OFC)和聚合物电解质膜电解槽(PEME)(PEME)(PEME)(PEME)来提出一种新型多代系统)同时生产电力,淡水和氢气。进行了全面的exergo经济分析和优化,以找到考虑最佳效率和产品的总设备作为客观功能的最佳设计参数。结果表明,与SOFC-GT系统的高度效率相比,最佳效率和最佳条件下产品的总单位成本分别为59.4%和23.6美元/ GJ,增加了2%的增长率。此外,该系统能够通过SOFC-GT系统,5.6m(3)/ h通过MED单元的淡水5.6m(3)/ h和PEME通过1.8kg / h的氢气产生2.5毫升。电力,淡水和氢气的相关成本分别为3.4美分/千瓦时,分别为37.8美分(3)和1.7美元/千克。提出了拟议系统的结果与其他相关论文报告的结果的比较。还绘制了驱动流程图,用于确切地确定每个组件中的暴露流速,以及漏洞破坏的位置和值。最后,审查了拟议的制度的能力进行伊朗案例研究。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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