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Isoconversional nonisothermal kinetic analysis of municipal solid waste, refuse‐derived fuel, and coal

机译:市政固体废物,垃圾源性燃料和煤炭的异核官能的非吸管动力学分析

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The thermal characteristics and kinetic behavior of various solid wastes, including refuse‐derived fuel (RDF) and municipal solid waste (MSW), were investigated as a potential renewable energy source, in comparison with low‐rank coal. The experimental data were obtained in nonisothermal conditions through TGA analysis at specific heating rates. In addition to thermal characteristics of solid fuels, four isoconversional (model‐free) kinetic methods: a: Kissinger‐Akahira‐Sunose (KAS), b: Flynn‐Wall‐Ozawa (FWO), c: Friedman, and d: Vyazovkin were applied to calculate activation energies. In case of solid wastes, it is possible to say that the trend of activation energies of all isoconversional methods remains almost same in the selected region of conversion (0.1‐0.6 and 0.7‐0.9). Whereas in case of coal, Friedman model exhibits lower and inconsistent values of activation energy than others selected isoconversional methods. The experimental and modeling results revealed that that solid wastes (RDF and MSW) can be promising alternative energy sources to encounter energy crisis and uncontrolled waste disposal issues.
机译:热特性和各种固体废物,包括垃圾衍生燃料(RDF)和城市固体废物(MSW)的动力学行为,进行了调查作为一个潜在的可再生能源,与低秩煤比较。在TGA分析在特定加热速率的非等温条件下获得的实验数据。除了固体燃料的热特性,四等转化率(无模型)动力学方法制备:a:基辛格-赤平-Sunose(KAS),B:弗林墙小泽(FWO)中,c:弗里德曼,和d:Vyazovkin分别应用于计算活化能。在固体废物的情况下,也可以说,所有的方法等转化率活化能的趋势依然在转化率(0.1〜0.6和0.7〜0.9)的所选择的区域几乎相同。而在煤的情况下,弗里德曼模型展品降低和活化能的不一致的值比其他的选择等转化率的方法。实验和模拟结果表明,该固体废弃物(RDF和MSW)可看好替代能源遭遇能源危机和不受控制的废物处理问题。

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