首页> 外文会议>International Conference on Waste Management and the Environment >DEVELOPMENT OF AN ANALYTICAL REACTION KINETICS MATHEMATICAL MODEL BASED ON THERMOGRAVIMETRIC DATA FOR RECLAIMED PLASTIC WASTE FROM ACTIVE LANDFILLS
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DEVELOPMENT OF AN ANALYTICAL REACTION KINETICS MATHEMATICAL MODEL BASED ON THERMOGRAVIMETRIC DATA FOR RECLAIMED PLASTIC WASTE FROM ACTIVE LANDFILLS

机译:基于热灌注液的热重复数据的分析反应动力学数学模型的开发

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Landfill mining(i.e.waste reclamation)has been receiving renewed attention in research circles.This strategy provides a solution to the overgrowing problem of land use for the classical solution of landfilling.In addition,it provides added value for the materials recovered with a potential of boosting local economies,especially considering circular economy market development.In this work,the degradation kinetics were investigated for solid waste retrieved from three active landfill sites.The landfill sites operate unsanitary processing schemes for the management of the municipal solid waste they receive.Thermogravimetric analysis was used to study the micro-kinetics using standardized ICTAC methods,which yielded an apparent activation energy(Ea)for one of the sites in the range of 100 to 121 kJ mol~(-1)using the Criado method.Another site showed a range between 87 to 107 kJ mol~(-1)using the same method.The Avrami-Erofeev expression for degradation mechanism was identified as the prevailing one based on the analysis conducted.Furthermore,an analytical solution model based on reaction order and degradation curves'initial and final set-points was developed to yield the desired parameters in a more realistic manner.We conclude that the type of waste,period of burial and sensitivity of kinetic models used are the most prevailing parameters in determining reaction mechanisms and kinetics expressions,which effect the development of industrial units that use thermal kinetics data for their design of treating various waste components.
机译:垃圾填埋场挖掘(iewaste填海)一直在研究界得到重新关注。该策略为垃圾填埋场经典解决方案提供了过多的土地利用问题的解决方案。此外,它为具有潜力恢复的材料提供了附加值促进当地经济,特别是考虑循环经济市场发展。在这项工作中,研究了从三个活跃的垃圾填埋场检出的固体废物的降解动力学。垃圾填埋场工作是为管理管理的不卫生处理计划,他们收到的市政固体废物。用于使用标准化的ICTAC方法研究微动术,其使用CRIADO方法在100至121kJ摩尔〜(-1)范围内的一系列位点产生表观活化能量(EA)。其他网站显示了一个使用相同方法的87至107 kJ mol〜(-1)之间的范围。拟定降解机制的Avrami-erofeev表达式被识别为预期基于分析的IALIVES,开发了一种基于反应顺序和降解曲线的分析液和最终设定点的分析溶液模型以更现实的方式产生所需参数。我们得出结论,废物类型,期间所使用的动力学模型的埋葬和敏感性是确定反应机制和动力学表达中最具普遍的参数,这影响了使用热动力学数据的工业单元的开发,用于处理各种废物组分的设计。

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