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Comparative Study of the Chemical Compositions of Liquid Fuel from Thermal Cracking of Low and High-Density Polyethylene Plastic Waste.

机译:低密度聚乙烯塑料废热裂解液体燃料化学成分的比较研究。

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The increase in the rate of accumulation of plastic waste (PW) has been of great concern to the world especially in the developing countries due to its non-biodegradable nature and improper waste management practices. Hence, efforts towards the conversion of this waste (PW) to resourceful materials have led us to the exploration of pyrolysis (anaerobic thermal cracking) of plastic waste under a controlled condition to produce liquid fuel. A stainless steel batch reactor was used in the cracking of the low and high-density polyethylene (LDPE and HDPE) plastic wastes into liquid fuel components at a temperature of 230°C. The liquid fuel obtained from the pyrolyzed LDPE and HDPE was analyzed using GC-MS. Fifty (50) compounds each was identified for both LDPE and HDPE which revealed the presence of mostly alkenes and aromatics in the hydrocarbon ranges of C8 - C_(24). This is made up of 36% of gasoline fractions range from C6 - C_(12), 32% of diesel fractions range C_(13) - C_(20), and 14% oil of residual fuel range of C_(20)- C_(28) and 18% of non-hydrocarbons was discovered for the HDPE while 36% of gasoline fractions range of C6- C_(12), 34% of diesel fractions range C_(13) - C_(20), oil and 12% residual fuel range of C_(20)- C_(28) and 18 % of non-hydrocarbons was discovered for the LDPE . There is little or no difference in the products of pyrolysis of light and heavy polyethylene plastic waste.
机译:由于其非生物降解性质和不当的废物管理实践,塑料废物堆积(PW)的积累率的增加对世界尤其是在发展中国家的广泛关注。因此,努力转化这种废物(PW)到高兴的材料,使我们在受控条件下探索塑料废物的热解(无厌氧热裂化)以产生液体燃料。使用不锈钢批量反应器在低密度和高密度聚乙烯(LDPE和HDPE)塑料污水中的裂化中,在230℃的温度下进入液体燃料组分。使用GC-MS分析从热解的LDPE和HDPE获得的液体燃料。对于LDPE和HDPE鉴定了五十(50)化合物,其显示在C8 - C_(24)的烃范围内大多数烯烃和芳烃的存在。这由36%的汽油馏分组成,从C6 - C_(12),32%的柴油级分钟范围C_(13) - C_(20),以及C_(20) - C_的残留燃料范围的14%油(28)和18%的HDPE发现了非碳氢化合物,而36%的汽油馏分的C6-C_(12),34%的柴油级分钟范围C_(13) - C_(20),油和12%对于LDPE发现了C_(20) - C_(28)和18%的非碳氢化合物的残留燃料范围。轻质和重聚乙烯塑料废物的热解产品很少或没有差异。

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