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Studies on the pyrolysis behavior of gasification and melting systems for municipal solid waste

机译:城市生活垃圾气化熔融系统的热解行为研究

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It is important to investigate the pyrolysis processes of municipal solid waste (MSW) in the same way as for any mixture comprised of multiple substances. In this article, a two-reaction model for a variety of MSW mixtures is proposed to predict mass changes due to pyrolysis. In order to formulate the model based on pyrolysis kinetics, we conducted experiments to determine the kinetic model parameters. By thermal analysis of the typical components of MSW, mass changes attributable to the pyrolysis reaction were found at about 350℃ for paper, 400°-500℃ for plastics, and 200°-400℃ for garbage (dry condition). Activation energies were obtained by the Ozawa method based on the mass changes in pyrolysis. Thus, the pyrolysis behavior is formulated as a function of temperature. Then the pyrolysis mass change of the mixture can be predicted by using a weighted sum of the individual components. The model proved useful in experiments with real waste (refuse-derived fuels). Furthermore, the weight yields (pyrolysis gas, tars, solid residues) of the mixture can be calculated by their additive property after measuring the mass balance of each component.
机译:以与包含多种物质的任何混合物相同的方式研究城市固体废物(MSW)的热解过程非常重要。在本文中,提出了一种用于多种MSW混合物的双反应模型,以预测由于热解引起的质量变化。为了建立基于热解动力学的模型,我们进行了实验以确定动力学模型参数。通过对城市生活垃圾典型成分的热分析,发现热分解反应引起的质量变化在纸上约为350℃,塑料在400°-500℃,垃圾在200°-400℃(干燥条件)。基于热解的质量变化,通过小泽法获得了活化能。因此,将热解行为表示为温度的函数。然后,可以通过使用各个组分的加权总和来预测混合物的热解质量变化。该模型在实际废物(垃圾衍生燃料)的实验中证明是有用的。此外,在测量各成分的质量平衡之后,可以通过其加和性来计算混合物的重量产率(热解气,焦油,固体残留物)。

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