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Basic design and thermodynamic analysis of a high helium content natural gas-fuel cell power plant

机译:高氦含量天然气 - 燃料电池发电厂的基本设计与热力学分析

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摘要

In this paper, a new developed integrated process for the production of power, helium, and liquefied natural gas (LNG) is proposed and analyzed. The proposed integrated process is composed of the following subsystems: helium recovery and LNG production unit, molten carbonate fuel cell (MCFC), absorption refrigeration system (ARS), as well as the steam power plant. Natural gas enters the helium recovery unit, in which crude helium and LNG are produced, and then, methane-rich natural gas with a higher heating value enters the MCFC cycle, which is responsible for generating power and supplying required heat duty of the system. The produced cooling in the ARS unit is also introduced to the helium recovery cycle to provide its necessary cooling. A comprehensive comparative study is employed to assess process performance. In addition, a sensitivity analysis is performed to investigate the effect of the main operating parameters such as current density, fuel utilization factor, fuel cell temperature, and feed flow rate on process efficiency. Based on the energy analysis results, the electrical efficiency of MCFC and the overall thermal efficiency of the process are 42.01% and 94.91%, respectively. Also, the integrated system produces helium and LNG, with helium extraction rate of 91.42% and specific power consumption (SPC) of 0.2086 kWh/kg LNG, respectively, in conjunction with 4793 MW net power. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文提出并分析了一种新的发达的电力,氦气和液化天然气(LNG)的综合过程。拟议的综合过程由以下子系统组成:氦回收率和LNG生产单元,熔融碳酸盐燃料电池(MCFC),吸收制冷系统(ARS)以及蒸汽发电厂。天然气进入氦回收单元,其中产生粗氦和LNG,然后,具有更高的加热值的富含甲烷的天然气进入MCFC循环,这负责产生电力和供应系统所需的热义。 ARS单元中的产生冷却也被引入氦恢复循环,以提供其必要的冷却。采用全面的比较研究来评估过程性能。另外,进行灵敏度分析以研究主要操作参数,例如电流密度,燃料利用因子,燃料电池温度和进料流速对工艺效率的影响。基于能量分析结果,MCFC的电效率和该方法的总热效率分别为42.01%和94.91%。此外,综合系统还生产氦气和LNG,氦提取率为91.42%,特定功耗(SPC)分别与4793 MW净功率相结合。 (c)2020 elestvier有限公司保留所有权利。

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