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Characterisation and composition identification of waste-derived fuels obtained from municipal solid waste using thermogravimetry: A review

机译:使用热升降法从城市固体废物获得的废弃燃料的表征和组合鉴定:综述

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Thermogravimetric analysis (TGA) is the most widespread thermal analytical technique applied to waste materials. By way of critical review, we establish a theoretical framework for the use of TGA under non-isothermal conditions for compositional analysis of waste-derived fuels from municipal solid waste (MSW) (solid recovered fuel (SRF), or refuse-derived fuel (RDF)). Thermal behaviour of SRF/RDF is described as a complex mixture of several components at multiple levels (including an assembly of prevalent waste items, materials, and chemical compounds); and, operating conditions applied to TGA experiments of SRF/RDF are summarised. SRF/RDF mainly contains cellulose, hemicellulose, lignin, polyethylene, polypropylene, and polyethylene terephthalate. Polyvinyl chloride is also used in simulated samples, for its high chlorine content. We discuss the main limitations for TGA-based compositional analysis of SRF/RDF, due to inherently heterogeneous composition of MSW at multiple levels, overlapping degradation areas, and potential interaction effects among waste components and cross-contamination. Optimal generic TGA settings are highlighted (inert atmosphere and low heating rate (≤ 10°C), sufficient temperature range for material degradation (≥750°C), and representative amount of test portion). There is high potential to develop TGA-based composition identification and wider quality assurance and control methods using advanced thermo-analytical techniques (e.g. TGA with evolved gas analysis), coupled with statistical data analytics.
机译:热重分析(TGA)是应用于废料的最广泛的热分析技术。通过批判性审查,我们在非等温条件下建立了在城市固体废物(MSW)废弃燃料的非等温条件下使用TGA的理论框架(固体回收燃料(SRF),或拒绝源于燃料( RDF)))。 SRF / RDF的热行为被描述为多个水平的几个组分的复杂混合物(包括普遍存粉物品,材料和化合物的组件);并且,总结了应用于SRF / RDF的TGA实验的操作条件。 SRF / RDF主要含有纤维素,半纤维素,木质素,聚乙烯,聚丙烯和聚对苯二甲酸乙二醇酯。聚氯乙烯也用于模拟样品,其高氯含量。我们讨论了SRF / RDF基于TGA的组成分析的主要局限性,由于MSW的多个水平,重叠的降解区域和废物组分之间的潜在相互作用效应和交叉污染的潜在相互作用。最佳通用TGA设置突出显示(惰性气氛和低加热速率(≤10°C),物质劣化(≥750°C)的足够的温度范围,以及代表性的测试部分)。使用先进的热分析技术(例如,具有进化气体分析的TGA)的高潜力,利用基于TGA的组合鉴定和更广泛的质量保证和控制方法,与统计数据分析相结合。

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