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Design and Fabrication of Microwave Pyrolysis System

机译:微波热解系统的设计与制作

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This paper focuses on the design and fabrication of a microwave system for plastic pyrolysis. The microwave system used is a modified domestic microwave oven with a maximum power of 1,000 watt, single feed and 2.45 GHz frequency. Simulation was done to be able to study the field distribution inside the cavity. Distributions of electric field strength (E), dissipated power inside the oven cavity, skin-depth of electromagnetic waves in charcoal media, and mode generation were investigated to determine the dimension of the reactor and the best position for the reactor to be placed inside the cavity in order to get better heating generation. It was found that the dissipated power for the whole cavity was uneven. Skin-depth should be from 19.2 to 19.657 mm. The reactor should be of a diameter less than 19.2 mm and placed in the high-power density regions inside the cavity. A preliminary study was carried out using polypropylene (PP), Low-Density Polyethylene (LDPE) resins and charcoal as microwave absorber at 460-510degC
机译:本文着重于用于塑料热解的微波系统的设计和制造。所使用的微波系统是改进的家用微波炉,最大功率为1,000瓦,单馈电和2.45 GHz频率。进行仿真是为了能够研究腔体内的场分布。研究了电场强度(E),炉腔内部的耗散功率,木炭介质中电磁波的趋肤深度以及模式产生的分布,以确定反应堆的尺寸以及将反应堆放置在反应堆内部的最佳位置腔体以获得更好的发热。发现整个腔的耗散功率是不均匀的。皮肤深度应在19.2到19.657毫米之间。电抗器的直径应小于19.2毫米,并应放置在腔体内的高功率密度区域中。在460-510°C下使用聚丙烯(PP),低密度聚乙烯(LDPE)树脂和木炭作为微波吸收剂进行了初步研究

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