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Studies on process optimization for production of liquid fuels from waste plastics

机译:用废塑料生产液体燃料的工艺优化研究

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摘要

The present work involves the study of process optimization for the production of liquid fuel by the catalytic pyrolysis of different plastics waste such as polypropylene, low density polyethylene and polystyrene using kaolin and acid treated kaolin as catalyst in audlaboratory batch reactor. The effect of silica alumina, which has been extensively studied by different investigators for the pyrolysis of different plastics was also studied and compared with that of the catalytic performance of kaolin. From the experimental results,udit is found that kaolin is found to be suitable as a catalyst for the degradation of plastics waste to liquid fuel and valuable chemicals. However, silica alumina show superior performance compared to kaolin in terms of yield and reaction time. From the optimization study it is found that, the maximum oil yield in thermal pyrolysisudof polypropylene, low density polyethylene and polystyrene waste was 82.5wt.%, 71.5wt.% and 93wt.% at optimum condition of temperature, which is improved to 87.5wt.%, 79.5wt.% and 94.5wt.% respectively in kaolin catalysed degradation under optimum condition of temperature and feed ratio. The rate of reaction, oil yield and quality of oil obtained in the catalytic pyrolysis are significantly improved compared to thermal pyrolysis.
机译:目前的工作涉及在高实验室间歇反应器中,使用高岭土和酸处理过的高岭土作为催化剂,通过催化分解不同塑料废料(例如聚丙烯,低密度聚乙烯和聚苯乙烯)来热解液体燃料的工艺优化研究。还研究了二氧化硅氧化铝的作用,该作用已被不同的研究人员广泛研究,以热解不同的塑料,并将其与高岭土的催化性能进行了比较。从实验结果可以看出,发现高岭土适合作为将塑料废物降解为液体燃料和有价值的化学物质的催化剂。然而,就产率和反应时间而言,二氧化硅氧化铝比高岭土表现出优异的性能。通过优化研究发现,在最佳温度条件下,聚丙烯,低密度聚乙烯和聚苯乙烯废料的热解 ud的最大产油量分别为82.5wt。%,71.5wt。%和93wt。%。在最佳温度和进料比条件下,高岭土催化的降解分别为87.5wt。%,79.5wt。%和94.5wt。%。与热裂解相比,催化裂解中的反应速率,产油量和质量得到了显着提高。

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    Panda Achyut Kumar;

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  • 年度 2011
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