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Co-pyrolysis of wood and plastics: Influence of plastic type and content on product yield, gas composition and quality

机译:木材和塑料的共热解:塑料类型和含量对产品收率,气体成分和质量的影响

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摘要

In recent years, the world has witnessed a rapid rise in waste production and energy demand, which has increased interests in waste to energy processes, particularly the co-pyrolysis of wood and plastic waste. Nonetheless, for plastic waste, most research studies narrowly focus on polyolefins because of their abundance in waste streams and their high oil yields from pyrolysis. In this paper, we study the co-pyrolysis of non-polyolefins -polystyrene (PS) and polyvinyl chloride (PVC)- and poplar wood (PW), in order to investigate the synergistic effect of PS and PVC content on product yield, gas specie yield and heating value. The experiments were performed using a fixed-bed reactor, heated to 750 degrees C at a rate of 20 degrees C/min under nitrogen atmosphere. Our results show that PVC has a large positive synergy on char yield with a maximum value of 8 wt% at 30 wt% PVC content, whereas PS only showed a slightly positive synergy (2.5wt% maximum). Concerning oil and gas production, PS provides a small synergy. However, PVC showed a significant positive synergy on oil yield with a maximum value of 11 wt% at 50 wt% PVC content, which was linked to a strong negative synergy in gas production. Regarding gas specie yields, the addition of PS led to positive synergies in the formation of H-2, CH4, CO and CO2, although insignificant interactions were observed for CxHy compounds. Furthermore, by comparing the distribution of chloride species in the products of co-pyrolysis with PVC, using experimental and theoretical methods, we discovered that the negative synergy in HCl yield observed was mainly due to the dissolution of HCl in the water fraction of the condensed oil phase, rather than the formation of chlorinated organic compounds, as suggested in previous literature works. Our study therefore consolidates the understanding of the synergistic interactions between wood, PS and PVC co-pyrolysis, under conditions that favour gas production.
机译:近年来,世界见证了废物生产和能源需求的快速增长,这使人们越来越关注废物转化为能源的过程,特别是木材和塑料废物的共热解。但是,对于塑料废料,大多数研究只集中在聚烯烃上,这是因为它们在废料流中含量很高,并且热解的收率很高。在本文中,我们研究了非聚烯烃-聚苯乙烯(PS)和聚氯乙烯(PVC)-和杨木(PW)的共热解,以研究PS和PVC含量对产品收率,气体的协同作用。实物产量和热值。使用固定床反应器进行实验,该固定床反应器在氮气气氛下以20摄氏度/分钟的速度加热到750摄氏度。我们的结果表明,聚氯乙烯对焦炭产量具有较大的正协同作用,在聚氯乙烯含量为30 wt%时最大值为8 wt%,而聚苯乙烯仅表现出轻微的正协同作用(最大值为2.5 wt%)。关于石油和天然气生产,聚苯乙烯提供小的协同作用。但是,PVC对石油产量表现出明显的正协同作用,在PVC含量为50 wt%时最大值达到11 wt%,这与气体生产中的强烈负协同作用有关。关于气体种类的产率,尽管CxHy化合物的相互作用很小,但PS的添加在H-2,CH4,CO和CO2的形成中产生了积极的协同作用。此外,通过使用实验和理论方法,比较了与PVC共热解产物中氯化物种类的分布,我们发现观察到的HCl产量的负协同效应主要是由于HCl在冷凝水部分中的溶解所致。油相,而不是以前文献中所建议的形成氯化有机物。因此,我们的研究巩固了在有利于产气的条件下,木材,聚苯乙烯和聚氯乙烯共热解之间协同相互作用的理解。

著录项

  • 来源
    《Fuel 》 |2018年第1期| 110-117| 共8页
  • 作者单位

    Univ Toulouse, CNRS, RAPSODEE, Mines Albi,UMR 5302, Campus Jarlard, F-81013 Albi 09, France;

    Univ Toulouse, CNRS, RAPSODEE, Mines Albi,UMR 5302, Campus Jarlard, F-81013 Albi 09, France;

    SUEZ, 38 Rue President Wilson, F-78230 Le Pecq, France;

    SUEZ, 38 Rue President Wilson, F-78230 Le Pecq, France;

    Univ Toulouse, CNRS, RAPSODEE, Mines Albi,UMR 5302, Campus Jarlard, F-81013 Albi 09, France;

    Univ Toulouse, CNRS, RAPSODEE, Mines Albi,UMR 5302, Campus Jarlard, F-81013 Albi 09, France;

  • 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

    Waste; Co-pyrolysis; Wood; Polystyrene; Polyvinyl chloride; Thermodynamic equilibrium;

    机译:废物;共热解;木材;聚苯乙烯;聚氯乙烯;热力学平衡;

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