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The influence of composition and final pyrolysis temperature variations on global kinetics of combustion of segregated municipal solid waste

机译:组成和最终热解温度变化对隔离市固体废物燃烧全局动力学的影响

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The combustion of segregated municipal solid waste (MSW) and the resulted char from the pyrolysis process were investigated in this research. The segregated MSW that was collected and used can be divided into organic and inorganic waste materials. The organic materials were bamboo and banana leaves and the inorganic materials were Styrofoam and snack wrappings. The composition ratio of the waste was based on the percentage of weight of each sample. The thermal behaviour of the segregated MSW was investigated by thermo gravimetric analysis. For the pyrolysis process the prepared samples of 200gram were heated from ambient temperature until a variance of final pyrolysis temperature of 550°C, 650°C and 750°C at a constant heating rate of 25°C/min. It was found that the highest activation energy of the raw materials is achieved from sample CC1 (Char with 100% inorganic materials). The activation energy of the raw materials is relatively lower than that of the char. The higher the final pyrolysis temperature, the lower the calorific value of char. The calorific value gradually increases with the amount of inorganic materials.
机译:研究了分离的城市固体废物(MSW)的燃烧和从热解过程中得到了从热解过程中的燃烧。收集和使用的隔离MSW可分为有机和无机废料。有机物质是竹子,香蕉叶,无机材料是聚苯乙烯泡沫塑料和零食包装。废物的组成比基于每个样品的重量的百分比。通过热重量分析研究了隔离MSW的热行为。对于热解过程,200克的制备的样品从环境温度加热,直至最终热解温度为550℃,650℃和750℃的差异,以25℃/ min的恒定加热速率。结果发现原料的最高活化能量是通过样品CC1(含有100%无机材料)的最高激活能量。原料的激活能量比炭的激活能量相对较低。最终热解温度越高,焦炭的热值越低。热值随着无机材料的量逐渐增加。

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