Effect of Variations in Pyrolysis Reactor With Glass Wool Equipped and Without Glass Wool on the Weight of the Oil Produced

I. Santhiarsa
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Abstract

Currently, plastic waste is a very serious threat because plastic waste pollution can harm all living things around and also harm the environment. The increasing volume of plastic waste is due to the lack of processing technology, so that the volume of plastic waste is increasing day by day. Plastic is a material that is difficult to decompose because it is non-biodegradable. One application of plastic waste processing technology offered in this study is to use the pyrolysis principle. Pyrolysis is a method of converting plastic into fuel oil through a thermal decomposition process without the use of oxygen. The pyrolysis process used with a variety of reactors equipped with glass wool and reactor variations without glass wool. The purpose of this study was to compare the yield of pyrolysis oil with a variety of reactors equipped with glass wool and reactors without glass wool. The plastic used is OPP (oriented polypropylene), with a constant reactor heating temperature of 200° C. The pyrolysis process is carried out for 1 hour each test, and the condenser cooling temperature is 28° C. Based on the results of the research, the reactor variation with glass wool got the highest oil weight of 175 grf, while the reactor variation without glass wool got the lowest oil weight of 17 grf. With a variety of reactors equipped with glass wool, the heat generated is more concentrated into the reactor core, resulting in higher oil weight and a more efficient pyrolysis process.
有玻璃棉和无玻璃棉热解反应器中的变化对产油重量的影响
目前,塑料垃圾是一个非常严重的威胁,因为塑料垃圾污染会危害周围的所有生物,也会危害环境。塑料垃圾数量的增加是由于缺乏处理技术,因此塑料垃圾的数量与日俱增。塑料是一种很难分解的材料,因为它是不可生物降解的。本研究提供的塑料垃圾处理技术的一个应用是利用热解原理。热解是一种在不使用氧气的情况下,通过热分解过程将塑料转化为燃料油的方法。配备玻璃棉的各种反应器和无玻璃棉的反应器使用的热解过程。本研究的目的是比较各种配备玻璃棉的反应器和不配备玻璃棉反应器的热解油产量。所用的塑料为OPP(取向聚丙烯),反应器加热温度恒定为200°C。每次试验进行1小时的热解过程,冷凝器冷却温度为28°C。根据研究结果,反应器随玻璃棉的变化获得了175 grf的最高油重,而没有玻璃棉的反应器变化得到的最低油重为17grf。在配备玻璃棉的各种反应器中,产生的热量更多地集中在反应器芯中,从而产生更高的油重量和更高效的热解过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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