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Non-Isothermal Pyrolysis Kinetics of Municipal Solid Wastes

机译:城市固体废物的非等温热解动力学

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Energy conversion via the pyrolysis of municipal solid waste has recently been considered one of the key drivers to achieve a sustainable energy for an ever increasing global economic growth among developed and developing nations. In line with this consideration, this study focuses on the effects of non-isothermal reactor temperatures, heating rates and initial weight of several key components in the solid waste materials, such as, surrogate paper, cardboard, and plastic under pyrolysis conditions. Pyrolysis kinetic rates are determined under various conditions using nearly identical initial weight of surrogate solid waste materials between 4 to 5 grams at atmospheric pressure. Waste samples are confined inside cylindrical stainless steel containers that feature small openings to release non-condensable and condensable gases during pyrolysis conditions. The outside surfaces of the cylindrical containers are heated non-isothermally in a laminar flow reactor using the stoichiometric products of combustion of propane with air. The reactor temperatures during the pyrolysis experiments are maintained non-isothermally between 100 to 750 °C. Experimental results obtained on the non-isothermal pyrolysis kinetics of MSW will be presented in this paper.
机译:近来,人们认为通过城市固体废物的热解进行能源转换是实现可持续能源以促进发达国家和发展中国家之间不断增长的全球经济增长的关键驱动力之一。出于这种考虑,本研究着重研究了非等温反应堆温度,加热速率和固体废物中几种关键组分(例如,替代纸,纸板和塑料)在热解条件下的初始重量的影响。在大气压下使用介于4到5克之间的几乎相同的替代固体废物原料的初始重量,在各种条件下确定热解动力学速率。废物样品被限制在圆柱形不锈钢容器内,该容器具有小的开口,可在热解条件下释放出不可冷凝和可冷凝的气体。使用丙烷与空气燃烧的化学计量产物,在层流反应器中非等温加热圆柱形容器的外表面。热解实验期间的反应器温度非等温地保持在100至750°C之间。本文将给出关于城市固体废弃物非等温热解动力学的实验结果。

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