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Exergoeconomic analysis and optimization of a novel hybrid cogeneration system: High-temperature proton exchange membrane fuel cell/Kalina cycle, driven by solar energy

机译:新型混合热电联产系统的能效经济分析和优化:高温质子交换膜燃料电池/卡里纳循环,由太阳能驱动

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摘要

Designing energy conversion systems with high efficiencies and low pollutant emission is essential for sustainable development. A new cogeneration system including a high-temperature proton exchange membrane fuel cell, integrated with a solar methanol steam reformer, and a Kalina cycle is proposed to produce electricity and heat. Using energy, exergy and cost balance, the proposed system is analyzed from the viewpoints of exergy, economy, and environmental impact. A Parametric study is performed and shows that a higher fuel cell temperature is in favor of the total product unit cost and carbon dioxide mass specific emission. Also, the exergy efficiency is maximized, and the total product unit cost as well as the carbon dioxide mass specific emission are minimized at some specific values of anode recirculation ratio. Optimization results show that the average daily exergy efficiency can increase by up to 29.3% and the total product unit cost as well as the carbon dioxide mass specific emission can decrease by up to 17.72% and 16.3%, respectively compared to the corresponding values under the base conditions. It is concluded that combining a Kalina cycle with a high-temperature proton exchange membrane fuel cell along with utilizing solar energy for reforming process yields an efficient energy conversion system with low emission.
机译:设计高效和低污染物排放的能源转换系统对于可持续发展至关重要。提出了一种新的热电联产系统,该系统包括一个高温质子交换膜燃料电池,一个太阳能甲醇蒸汽重整器和一个卡里纳循环,以产生电能和热量。利用能源,火用和成本平衡,从火用,经济和环境影响的角度分析了提出的系统。进行了参数研究,结果表明较高的燃料电池温度有利于总产品单位成本和二氧化碳质量比排放。同样,在阳极再循环率的某些特定值下,火用效率最大化,并且总产品单位成本以及二氧化碳质量比排放最小化。优化结果表明,与在此条件下的相应值相比,平均每日火用效率可提高高达29.3%,总产品单位成本以及二氧化碳质量单位排放量分别可降低多达17.72%和16.3%。基本条件。结论是,将卡利纳循环与高温质子交换膜燃料电池结合在一起,并利用太阳能进行重整过程,可产生一种高效,低排放的能量转换系统。

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