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Catalytic pyrolysis of mechanically non-recyclable waste plastics mixture: Kinetics and pyrolysis in laboratory-scale reactor

机译:机械不可再循环废塑料混合物的催化热解:实验室级反应器中的动力学和热解

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摘要

Post-consumer waste plastics that cannot be mechanically recycled represent a concerning environmental issue. According to the latest available data for Europe, as much as 25% of collected post-consumer waste plastics are landfilled, 43% is energy recovered, and 32% is recycled. One possible way of recovering non-recyclable plastics is pyrolysis, which is considered environmentally friendly technology for obtaining fuel or chemicals from plastic waste. To tackle the challenge of recovering non-recyclable plastics via pyrolysis, it is necessary to determine their actual composition. Visual separation of collected non-recyclable plastics was performed, and Fourier-transform infrared spectroscopy was used to confirm the accuracy of visual separation. A significant amount of plastics labelled as "other" was found. Since the composition of "other" waste plastics has not been sufficiently investigated, relatively few studies on their pyrolysis have been conducted. Therefore, they were characterised and added to the mixture with other found polymer types of non-recyclable plastics. Thermogravimetric analysis was conducted to determine thermochemical behaviour and kinetic parameters required for laboratory pyrolysis investigation. Kinetic analysis was conducted using the Friedman isoconversional model-free method and nonlinear multivariate regression method. The goal of this paper was to analyse the kinetics, determine the product yield and characteristics of the pyrolysis process of non-recyclable plastics over zeolite catalysts. It was found how the decomposition of non-recyclable plastics occurs in two decomposition steps. The activation energy of non-recyclable plastics was 144 kJ/mol in the first stage of decomposition and 262 kJ/mol in the second stage of decomposition. It decreased by 34% and 6.5% after fresh fluid catalytic cracking catalyst was added and 41% and 18.3% with iron-modified Zeolite Socony Mobil-5 catalyst. The yield of condensate was 55% (wax) for the original sample, and it decreased to 50% (wax and oil) and 27% (mostly oil) with fresh fluid catalytic cracking and iron modified Zeolite Socony Mobil-5 catalysts. Processes with catalysts promoted the formation of olefins and aromatic compounds in pyrolytic oil. All pyrolysis products had a high value of higher heating value ranging from 39 MJ/kg to 43 MJAg showing good potential for further energy use.
机译:消费后垃圾塑料不能机械回收代表了一个关于环境问题的一系列。根据欧洲最新的可用数据,多达25%的消费后废塑料填埋,43%是能源恢复,32%被回收。回收不可循环塑料的一种可能的方法是热解,这被认为是用于从塑料废物获得燃料或化学品的环保技术。为了解决通过热解回收不可再循环塑料的挑战,有必要确定其实际组成。进行了收集的非可回收塑料的视觉分离,使用傅里叶变换红外光谱法确认视觉分离的准确性。发现了标记为“其他”的大量塑料。由于“其他”废塑料的组成没有得到充分研究,因此已经进行了对其热解的研究。因此,它们的特征和加入混合物中与其他聚合物类型的不可循环塑料。进行了热重分析以确定实验室热解调查所需的热化学行为和动力学参数。使用Friedman Isoconversional Duments-Formo和非线性多变量回归法进行动力学分析。本文的目标是分析动力学,确定在沸石催化剂上不可再循环塑料的热解过程的产量和特性。发现如何在两个分解步骤中发生不可再循环的塑料的分解。在分解的第一阶段,在分解的第二阶段的第一阶段,不可再循环塑料的活化能量为144kJ / mol。加入新鲜流体催化裂化催化剂后,它在加入新鲜流体催化裂化催化剂后降低了34%和6.5%,铁改性沸石Socony Mobil-5催化剂41%和18.3%。缩合物的产率为原始样品为55%(蜡),其降至50%(蜡和油),27%(大多数油),新鲜流体催化裂化和铁改性沸石Socony Mobil-5催化剂。催化剂的方法促进了热解油中的烯烃和芳族化合物的形成。所有热解产品的高热值高,从39 MJ / kg到43幅显示出进一步的能源使用的潜力。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第15期|113145.1-113145.11|共11页
  • 作者单位

    University of Zagreb Faculty of Mechanical Engineering and Naval Architecture Ivana Lucica 5 10 002 Zagreb Croatia;

    University of Zagreb Faculty of Mechanical Engineering and Naval Architecture Ivana Lucica 5 10 002 Zagreb Croatia;

    University of Zagreb Faculty of Chemical Engineering and Technology Savska cesta 16 10 000 Zagreb Croatia;

    University of Split Faculty of Chemistry and Technology Rudera Boskovica 35 21 000 Split Croatia;

    University of Banja Luka Faculty of Technology Bulevar Vojvode Petra Bojovica 1A 78 000 Banja Luka Bosnia and Herzegovina;

    INA-Industrija Nafte d.d. Lovinciceva 4 10 002 Zagreb Croatia;

    University of Zagreb Faculty of Mechanical Engineering and Naval Architecture Ivana Lucica 5 10 002 Zagreb Croatia;

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

    Non-recyclable plastics; Pyrolysis; Isoconversional method; Kinetic study; Zeolite catalyst;

    机译:不可回收的塑料;热解;异组反转方法;动力学研究;沸石催化剂;

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