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首页> 外文期刊>Waste Management >Pyrolysis of waste expanded polystyrene and reduction of styrene via in-situ multiphase pyrolysis of product oil for the production of fuel range hydrocarbons
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Pyrolysis of waste expanded polystyrene and reduction of styrene via in-situ multiphase pyrolysis of product oil for the production of fuel range hydrocarbons

机译:废物膨胀聚苯乙烯的热解和苯乙烯的原位多相热解的产物油原位多相热解,用于生产燃料放射碳氢化合物

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摘要

Upgraded fuel oil was produced from the waste expanded polystyrene (WEPS) using pyrolysis and in-situ selective aromatization in a specially designed reactor. The catalytic pyrolysis of WEPS was performed keeping the catalyst in three different types of catalyst arrangements inside the reactor i.e., A-type/ catalyst in liquid phase, B-type/catalyst in vapour phase, and AB-type or Multiphase/catalyst in both liquid and vapour phases, respectively. The ZSM-5 ammonium powder was used as a catalyst with varying feed to catalyst ratio and 20:1 was found to be optimum. Aromatics of fuel range like benzene, toluene, and ethylbenzene (BTE) were significantly increased and styrene got reduced by many folds when AB-type/multiphase catalytic pyrolysis was performed. The thermal pyrolysis produced maximum liquid yield of 94.37 wt% at a temperature of 650 °C and a heating rate of 15 °C/min. The maximum liquid yield of 88.05 wt%, 78.85 wt%, and 75.11 wt% were obtained for the A-type, B-type, and AB-type catalytic pyrolysis at the temperature of 600 °C, 550 °C and 550 °C, respectively using the same heating rate. The liquid oil of thermal pyrolysis contains very low amount of fuel range aromatics i.e., BTE of 11.38 wt% and the highest amount of styrene (84.74 wt%). In contrarily, BTE content for the catalytic process increased progressively in the order of 18.98 wt% (A-type) < 24.27 wt% (B-type) < 28.12 wt% (AB-type). The styrene content significantly decreased to a very low value of 46.30 wt% for AB-type/multiphase pyrolysis at the temperature of 550 °C.
机译:使用热解和原位选择性芳族化在特定设计的反应器中,从废弃物膨胀的聚苯乙烯(WEPS)中产生升级的燃料油。进行WEP的催化热解,将催化剂保持在反应器内的三种不同类型的催化剂布置中,即液相,液相中的液相,B型/催化剂中的液相,B型/催化剂中的催化剂,以及两者的AB型或多相/催化剂液体和蒸气相。 ZSM-5铵粉末用作具有不同进料的催化剂与催化剂比,发现20:1是最佳的。燃料区的芳烃如苯,甲苯和乙苯(BTE)显着增加,当进行AB型/多相催化热解时,苯乙烯减少了许多折叠。热热解产生最大液体产率为94.37wt%,温度为650℃,加热速率为15℃/ min。在600℃,550℃和550℃的温度下,获得88.05wt%,78.85wt%和75.11wt%的最大液体产率为88.05wt%,785wt%和75.11wt% ,分别使用相同的加热速率。热热解的液体油含有非常低量的燃料水分芳烃,即11.38wt%的BTE,苯乙烯的最高量(84.74wt%)。相反,催化过程的BTE含量逐渐增加,大约为18.98wt%(a型)<24.27wt%(b型)<28.12wt%(ab型)。对于550℃的温度,苯乙烯含量显着降低至46.30wt%的低值46.30wt%。

著录项

  • 来源
    《Waste Management》 |2021年第2期|330-339|共10页
  • 作者单位

    Department of Chemical Engineering and Technology Indian Institute of Technology (Banaras Hindu University) Varanasi India;

    Department of Chemical Engineering and Technology Indian Institute of Technology (Banaras Hindu University) Varanasi India;

    Department of Chemical Engineering and Technology Indian Institute of Technology (Banaras Hindu University) Varanasi India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Waste expanded polystyrene; Aromatization; Pyrolysis; In-situ; Multiphase;

    机译:废弃物膨胀聚苯乙烯;芳香化;热解;原位;多相;

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