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Recovery of carbon black from waste tire in continuous commercial rotary kiln pyrolysis reactor

机译:来自垃圾轮胎在连续商业旋转窑热解反应器中的废轮胎恢复

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摘要

Environmental problems caused by waste tires have become so glaring that it has attracted wide attention. This case study seeks to examine the properties of carbon black from waste tires continuous commercial scale pyrolysis. This work aims to contribute to this growing area of research by exploring the difference between the properties of products under the condition of mass production and those under the condition of laboratory scale or pilot scale production. A pyrolysis prototype, with a waste tire mass flow rate of 50-60 t d~(-1) was constructed and introduced. Steel-included tire granulates were pyrolyzed in micro-negative pressure furnace at about 420 ± 20 °C. This kind of nonstripping, micro-negative pressure and low-temperature continuous thermal pyrolysis technology can reduce the stripping process between rubber and steel wire, reduce the requirement of equipment sealing, and improve the utilization rate of resources. All three products including pyrolytic carbon black (CBp), tire pyrolysis oil (TPO) and pyrolysis gas showed good characteristics. Pyrolysis gas had been successfully re-used for pyrolysis furnaces and dryers. The higher heating value of TPO estimated to 37-40 MJ/ kg, which was comparable to diesel fuel through further treatment. Results of proximate analysis, element analysis, XPS, FTIR, XRD and surface structure confirmed that CBp with commercial scale production showed no apparent data difference with those in other small scale research cases. The morphological changes of carbon black particles were suggested, revealing a possible internal structure of CBp aggregates in commercial scale pyrolysis. This study is an attempt to push the existing research in this field to commercial production. This work generates fresh insight into the viability of continuous commercial pyrolysis and demonstrates the feasibility of the operation, providing reference for many researchers and units who study the pyrolysis technology of waste tires with the feasibility of industrial production.
机译:废旧轮胎引起的环境问题变得如此明显,它引起了广泛的关注。本案例研究旨在检查废轮胎连续商业规模热解的炭黑的性质。这项工作旨在通过探索批量生产条件和实验室规模条件下的产品的性质与试用规模生产条件下的产品性质之间的差异,为这项工作的贡献贡献。具有50-60td〜(-1)的废轮胎质量流速的热解原型并引入。钢包括在微负压炉中在约420±20℃下热解。这种非棘手,微负压和低温连续热热解解工艺可以减少橡胶和钢丝之间的剥离过程,降低设备密封的要求,提高资源利用率。所有三种产品,包括热解炭黑(CBP),轮胎热解油(TPO)和热解气体显示出良好的特性。热解气体已成功地用于热解炉和干燥器。 TPO的较高的加热值估计为37-40mJ / kg,通过进一步处理与柴油燃料相当。近期分析结果,元素分析,XPS,FTIR,XRD和表面结构证实,具有商业规模生产的CBP与其他小规模研究案例的数据差异显示出没有明显的数据差异。提出了炭黑颗粒的形态变化,揭示了商业规模热解中CBP聚集体的可能内部结构。本研究试图将该领域的现有研究推向商业生产。这项工作产生了对连续商业热解的可行性产生新的洞察力,并展示了运作的可行性,为许多研究人员和单位提供了参考,该研究人员和单位研究了废物轮胎的热解技术,具有工业生产的可行性。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|145507.1-145507.13|共13页
  • 作者单位

    College of Environmental Science and Engineering Tongji University Shanghai 200092 China;

    College of Environmental Science and Engineering Tongji University Shanghai 200092 China;

    College of Environmental Science and Engineering Tongji University Shanghai 200092 China;

    College of Environmental Science and Engineering Tongji University Shanghai 200092 China;

    Shanghai Tire Craftsman Technology Co. Ltd. Shanghai 201400 China;

    College of Environmental Science and Engineering Tongji University Shanghai 200092 China Shanghai Institute of Pollution Control and Ecological Security Shanghai 200092 China;

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

    Waste tire; Pyrolysis; Commercial scale; Pyrolytic carbon black; Continuous production;

    机译:浪费轮胎;热解;商业规模;热解炭黑;连续生产;

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