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A process study on the pyrolysis of waste polyethylene

机译:废聚乙烯的热解工艺研究

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摘要

The thermo-catalytic cracking of waste polyethylene bottles was thoroughly examined to determine the possibility of operating the process in continuous mode. Two types of zeolite catalysts renowned for their strong catalytic properties and precise selectivity, HUSY and HBeta, were used to study the slates and yields of the products generated under various operating conditions. The liquid and gas samples were analyzed via GC-MS to determine the hydrocarbons chain distribution in terms of paraffins, olefins and aromatics. Under thermal heating, the gas yield reached 17.8% in the absence of catalysts and it increased to 93-96% when HUSY and HBeta were used in vapor contact mode. This yield dropped to 57% when energy-efficient induction heating was applied. Under hydrogen cracking, the gas yield decreased further to 51.6% while the P/O ratio increased due to a rise in the C_(13)-C_(23+) paraffin contents. The catalyst deactivation stage showed that both HUSY and HBeta started to lose their activity as waste HDPE charges were continuously fed to the reactor. After the third HDPE charge, the amount of solid and liquid wax products dramatically increased and the process started to resemble to thermal pyrolysis. High gas yields of greater than 90% were achieved when the catalysts were regenerated with industrial air at 550 ℃, indicating full catalyst recovery.
机译:彻底检查了废聚乙烯瓶的热催化裂化,以确定以连续模式运行该工艺的可能性。两种以其强大的催化性能和精确的选择性而著称的沸石催化剂HUSY和HBeta被用于研究在各种操作条件下生成的产物的板岩和收率。通过GC-MS分析液体和气体样品,以烷烃,烯烃和芳烃的形式确定烃链分布。在热加热下,在不使用催化剂的情况下,气体收率达到17.8%,当HUSY和HBeta以蒸汽接触方式使用时,收率提高至93-96%。当使用节能感应加热时,该产率下降至57%。在氢裂化下,由于C_(13)-C_(23+)石蜡含量的增加,气体产率进一步降低至51.6%,而P / O比增加。催化剂失活阶段表明,随着废HDPE进料不断进料到反应器中,HUSY和HBeta都开始失去活性。在第三次HDPE装料之后,固体和液体蜡产品的数量急剧增加,并且该过程开始类似于热裂解。在550℃的工业空气中再生催化剂时,气体收率高达90%以上,表明催化剂已全部回收。

著录项

  • 来源
    《Fuel》 |2014年第1期|276-282|共7页
  • 作者

    J. Zeaiter;

  • 作者单位

    Chemical Engineering Program, Department of Mechanical Engineering, American University of Beirut, P.O. Box 11-0236, Lebanon;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plastic waste pyrolysis; Induction heating; Catalyst deactivation; Regeneration;

    机译:塑料废料热解;感应加热;催化剂失活;再生;

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