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首页> 外文期刊>Energy Conversion & Management >Comprehensive exergy analysis of a gas engine-equipped anaerobic digestion plant producing electricity and biofertilizer from organic fraction of municipal solid waste
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Comprehensive exergy analysis of a gas engine-equipped anaerobic digestion plant producing electricity and biofertilizer from organic fraction of municipal solid waste

机译:配备燃气发动机的厌氧消化厂的综合火用分析,该厂利用城市固体废物的有机部分生产电力和生物肥料

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摘要

This study was devoted to comprehensively investigating the exergetic performance of a gas-engine equipped anaerobic digestion plant producing electric power as well as biofertilizer from organic fraction of municipal solid waste (OFMSW). The main aim of the current survey was to reveal the reasons and sources of thermodynamic losses occurring in the plant based on real operational data. The required data for the analysis were collected from a local OFMSW anaerobic digestion plant located in Tehran, Iran. After writing energy and exergy balances for all components of the plant, their exergetic performance parameters were measured individually. An attempt was also undertaken to quantify the contributions of the products to the overall exergetic efficiency of the plant. The exergetic value of the net electric power was determined at 1596.0 kW, while the chemical exergetic content of the biofertilizer was found to be 8758.3 kW. The overall exergetic efficiency of the plant was determined at 72.8%. The contributions of the electric power and the biofertilizer to the overall exergetic efficiency of the plant were found to be 15.4% and 84.6%, respectively. Generally, the exergetic analysis presented herein could provide important guidelines and methodological blueprints for future investigations in order to develop thermodynamically-efficient and environmentally-benign waste-to-energy plants.
机译:这项研究致力于全面研究配备燃气发动机的厌氧消化厂的能动性能,该厂利用城市固体废物(OFMSW)的有机成分生产电力和生物肥料。当前调查的主要目的是根据实际运行数据揭示工厂发生热力学损失的原因和来源。分析所需的数据是从位于伊朗德黑兰的当地OFMSW厌氧消化厂收集的。在记录了工厂所有组件的能量和火用平衡后,分别测量了它们的能动性能参数。还尝试了量化产品对植物总体能量利用效率的贡献。确定的净电力的高能值为1596.0 kW,而生物肥料的化学高能含量为8758.3 kW。确定该植物的总能效为72.8%。发现电力和生物肥料对植物总的能量利用效率的贡献分别为15.4%和84.6%。通常,本文提出的大量分析可以为将来的研究提供重要的指导方针和方法蓝图,以便发展热力学高效且对环境有益的废物变能源工厂。

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