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首页> 外文期刊>Journal of Chemical Engineering of Japan >Thermal Behavior Study of Refuse-Derived Fuel (RDF) during Combustion by Thermogravimetric Analysis
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Thermal Behavior Study of Refuse-Derived Fuel (RDF) during Combustion by Thermogravimetric Analysis

机译:热重分析研究垃圾衍生燃料在燃烧过程中的热行为

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Municipal solid waste processing has attracted the attention of the government with economic growth. The application of the refuse-derived fuel (RDF) technology in cement plants can effectively solve the issue of processing municipal solid waste (MSW). This paper focuses on studying the properties of RDF to improve its applicability in cement plants. The thermal behavior of RDF, typical components of RDF (wood, food residue, fabric, and plastic), and their mixtures are investigated by means of thermogravimetric analysis (TGA). In addition to TGA, kinetic analysis was also performed on RDF and its typical components. The combustion of RDF has four major thermal stages: release of moisture, combustion of volatiles, combustion of fixed-carbon, and further combustion of fixed-carbon. The synergistic effect does not exist during the co-combustion process of biomass and biomass components of RDF, but it does during the co-combustion of biomass and combustible non-biomass of RDF, leading to a lower activation energy of RDF at 200-400 degrees C and 400-600 degrees C. The combustion of typical components can be approximately regarded as a first-order reaction.
机译:随着经济的增长,城市生活垃圾处理已经引起了政府的关注。垃圾衍生燃料(RDF)技术在水泥厂的应用可以有效解决城市生活垃圾(MSW)的处理问题。本文着重研究RDF的性能,以提高其在水泥厂中的适用性。通过热重分析(TGA)研究了RDF,RDF的典型成分(木材,食物残渣,织物和塑料)及其混合物的热行为。除了TGA,还对RDF及其典型成分进行了动力学分析。 RDF的燃烧有四个主要的热阶段:水分的释放,挥发物的燃烧,固定碳的燃烧以及固定碳的进一步燃烧。在RDF的生物质和生物质组分的共燃烧过程中不存在协同效应,但在RDF的生物质和可燃非生物质的共燃烧过程中却没有协同作用,导致RDF在200-400时的活化能较低分别在200摄氏度和400-600摄氏度之间。典型成分的燃烧可近似视为一阶反应。

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