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Optimization of a novel solar-based multi-generation system for waste heat recovery in a cement plant

机译:用于水泥厂废热回收的新型太阳能多发系统的优化

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This article presents a novel renewable-based multi-generation energy system. The system is based on a double effect absorption chiller, an ejector refrigeration cycle, a proton exchange membrane electrolyzer, an amine-based CO2 capture system, an organic Rankine cycle, and a heater. The proposed integrated system is fueled by a biomass combustor, a photovoltaic thermal solar panels, and a waste heat recovery from a cement plant located in Abyek, Iran. This innovative configuration of energy system can produce electricity, cooling, heating, and hydrogen in summer and winter modes, in addition to removing CO2 from the flue gas of the cement plant. The system is analyzed in energetic, exergetic and thermoeconomic terms. The performance of the system is investigated parametrically by examining the effect of variation of selected key parameters. To perform comprehensive modeling, the system is assessed thermoeconomically through estimating unit cost of each product and total cost rate of the product. Finally, single and multi-objective optimizations are performed by an evolutionary algorithm and illustrated on a Pareto frontier in order to achieve the optimum scheme of the multi-generation system regarding technical and economic viewpoints. According to the results, the studied integrated system produces 17.4 MW and 18.4 MW electricity in summer and winter, 4.1 MW heating power, 1.2 MW cooling power, 5.8 kg/h and 11.3 kg/h hydrogen in summer and winter. Moreover, the system captures 234.1 kg/s CO2 with 90% removal factor from the cement plant. The result of the optimization indicates in winter product cost rate of the Combined Cooling, Heating and Power (CCHP) subsection can reduce 24%. However, in summer for a 0.47% increase in product cost rate, the exergy efficiency is capable of increase by 39%. (C) 2019 Published by Elsevier Ltd.
机译:本文介绍了一种新颖的基于可再生能源的多代能源系统。该系统基于双效吸收式冷却器,喷射器制冷循环,质子交换膜电解器,胺基CO2捕集系统,有机朗肯循环和加热器。拟议的集成系统由生物质燃烧器,光伏热太阳能电池板和位于伊朗阿比耶克的水泥厂的余热回收提供燃料。除了从水泥厂的烟道气中去除CO2之外,这种创新的能源系统配置还可以在夏季和冬季模式下产生电力,制冷,供热和氢气。从能量,能量和热经济方面对系统进行了分析。通过检查所选关键参数变化的影响,以参数方式研究系统的性能。为了进行全面的建模,通过估算每种产品的单位成本和产品的总成本率对系统进行热经济评估。最后,通过进化算法执行单目标和多目标优化,并在帕累托边界上进行说明,以便从技术和经济角度实现多代系统的最佳方案。根据结果​​,所研究的集成系统在夏季和冬季分别产生17.4 MW和18.4 MW的电力,在夏季和冬季产生4.1 MW的加热功率,1.2 MW的冷却功率,5.8 kg / h和11.3 kg / h的氢气。此外,该系统可从水泥厂中以23%的去除率捕获234.1 kg / s的CO2。优化结果表明,冷热电三联产的冬季产品成本率可降低24%。但是,在夏季,产品成本率提高0.47%,能效效率可以提高39%。 (C)2019由Elsevier Ltd.发布

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