Liquid fuel production from high density polyethylene plastic waste

I. B. Alit, Rudy Sutanto
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Abstract

This research aims to determine the effect of heat exchanger diameter variations on the volume and physical properties of fuel derived from plastic waste. The plastic waste is converted using the thermal cracking method, which involves heating the raw material without oxygen. This process produces charcoal and oil from the gas condensation in the heat exchanger. The type of plastic used is High-Density Polyethylene (HDPE) waste. The variations of heat exchanger diameter used are 1/2inch, 3/4 inch, and 1 inch. The physical properties investigated include density, viscosity, and heating value. From the test results, it was found that density of the oil fuel produced from plastic waste decreased with increasing heat exchanger diameter. However, the volume and heating value of the fuel produced increased. Generally, the physical properties of plastic pyrolysis oil produced from the thermal cracking process of plastic waste resemble those of gasoline
利用高密度聚乙烯塑料废料生产液体燃料
本研究旨在确定热交换器直径变化对塑料废物燃料的体积和物理性质的影响。塑料废料是用热裂解法转化的,这种方法包括在没有氧气的情况下加热原料。这个过程从热交换器中的气体冷凝中产生木炭和油。使用的塑料类型是高密度聚乙烯(HDPE)废物。使用的热交换器直径的变化是1/2英寸,3/4英寸和1英寸。所研究的物理性质包括密度、粘度和热值。试验结果表明,随着换热器直径的增大,废塑料生产的燃油密度减小。然而,生产的燃料的体积和热值增加了。一般来说,塑料垃圾热裂解生产的塑料热解油的物理性质与汽油相似
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