首页> 外文期刊>International journal of hydrogen energy >Ethanol and glycerin processor systems coupled to solid oxide fuel cells (SOFGs). Optimal operation and heat exchangers network synthesis
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Ethanol and glycerin processor systems coupled to solid oxide fuel cells (SOFGs). Optimal operation and heat exchangers network synthesis

机译:乙醇和甘油处理器系统耦合到固体氧化物燃料电池(SOFG)。最佳运行和热交换器网络综合

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This paper is aimed at presenting a methodology for the simultaneous synthesis of solid oxide fuel cell (SOFC) based systems and their associated heat exchangers network (HEN). The optimization model is formulated as a mixed integer nonlinear mathematical pro-gramming (MINLP) problem. The optimization goal is to maximize the overall net efficiency of the integrated system. Ethanol and glycerin are studied as fuels fed to the SOFC system as they constitute two renewable and sustainable sources of energy. As main results, net global efficiency values of 69.35% and 66.97% were computed for ethanol and glycerin, respectively. For both cases, the computed optimal operation pres-sure, the SOFC operation temperature and the fed water/fuel molar ratio values were 2 atm, 1073 K and 3, respectively.
机译:本文旨在介绍一种同时合成基于固体氧化物燃料电池(SOFC)的系统及其相关的热交换器网络(HEN)的方法。优化模型被公式化为混合整数非线性数学规划(MINLP)问题。优化目标是使集成系统的整体净效率最大化。对乙醇和甘油作为送入SOFC系统的燃料进行了研究,因为它们构成了两种可再生和可持续的能源。作为主要结果,对于乙醇和甘油,净总效率值分别计算为69.35%和66.97%。对于这两种情况,计算出的最佳运行压力,SOFC运行温度和进料水/燃料摩尔比值分别为2 atm,1073 K和3。

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