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Performance evaluation of biogas upgrading systems from swine farm to biomethane production for renewable hydrogen source

机译:从养猪场到生产可再生氢源沼气的沼气升级系统的性能评估

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Biogas upgrading to biomethane is a necessary process for biohydrogen production from renewable source. In this work, absorption processes using water and diethanolamine (DEA) as absorbent were modeled in Aspen Plus software. The purpose was to find the optimal operating condition for sustainable production of biomethane using multi-criteria perspective considering technical, environmental and economic aspects. The absorption system was modified by including one additional absorber unit for improving biogas upgrading efficiency. The performance of the biogas upgrading system was evaluated and compared in terms of methane recovery, methane content in biomethane, and energy consumption. Effects of operating conditions such as operating pressure in absorber, concentration, and total flow rate of absorbents were investigated. The results revealed that the performance of the modified absorption system was superior to the conventional system. The methane content in biomethane, methane recovery, and energy consumption increased with the increase of operating pressure in the absorbers. Increasing concentration and total flow rate of absorbents increased the methane content in biomethane and the energy consumption but decreased the methane recovery. The optimal operating condition could achieve 96%v/v of methane content in biomethane with methane recovery of higher than 95%v/v in the modified water absorption system. The optimum operating pressures of absorber Units 1 and 2, and total absorbent flow rates were at 13 and 5 bar and 16,000 kmol/h, respectively. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:将沼气提质为生物甲烷是从可再生资源生产生物氢的必要过程。在这项工作中,在Aspen Plus软件中模拟了用水和二乙醇胺(DEA)作为吸收剂的吸收过程。目的是从多标准角度考虑技术,环境和经济方面,找到可持续生产生物甲烷的最佳操作条件。通过增加一个吸收器单元来改进吸收系统,以提高沼气的提质效率。对沼气升级系统的性能进行了评估,并根据甲烷回收率,生物甲烷中的甲烷含量和能耗进行了比较。研究了吸收剂的操作压力,吸收剂的浓度和总流速等操作条件的影响。结果表明,改进的吸收系统的性能优于常规系统。随着吸收塔中工作压力的增加,生物甲烷中的甲烷含量,甲烷回收率和能耗也增加了。吸收剂浓度和总流速的增加会增加生物甲烷中的甲烷含量和能耗,但会降低甲烷的回收率。最佳操作条件可以使生物甲烷中的甲烷含量达到96%v / v,而在改进的吸水系统中甲烷回收率要高于95%v / v。吸收器1和2的最佳工作压力以及总吸收剂流速分别为13 bar和5 bar和16,000 kmol / h。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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