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Influence of Char Intermediates on Synergistic Effects During Co-Pyrolysis of Pinewood and Polycarbonate

机译:Char中间体对松木和聚碳酸酯共热分解过程中的协同效应的影响

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摘要

Combined use of plastic and biomass wastes offers promising pathway for simultaneous energy production and waste disposal. In this article, the co-pyrolysis of pinewood and polycarbonate (PC) was performed in a fixed bed reactor to quantify their synergistic interaction on the product output and determine the effect of char intermediates on the synergistic effects. The extent of synergistic effects was obtained via a direct comparison of results from co-pyrolysis of pinewood-polycarbonate mixture with the weighted average values from pyrolysis of individual components. The observed synergistic effects were further examined from the influence of char intermediates using tailored feedstock configurations to gain more insights into the synergistic mechanism. The results showed co-pyrolysis resulted in enhancement by 33% in H_2, 26% in CO, and 19% in total syngas yields compared to their weighted values from individual pyrolysis. Co-pyrolysis also exhibited superiority in energy recovery with the overall energy efficiency promoted from 42.9% to 48.6%. Deconvolution of synergistic effects revealed that pinewood char catalytically enhanced PC degradation, while the effect of PC char on pinewood pyrolysis was minimal. This article provides results on deconvolved understanding of synergistic effects in co-pyrolysis oflig-nocellulosic biomass and PC wastes, which is very helpful in designing clean and efficient energy recovery systems from these waste resources.
机译:塑料和生物质废物的综合使用提供了有希望的能源生产和废物处理的通道。在本文中,在固定床反应器中进行松木和聚碳酸酯(PC)的共热解,以定量其对产物输出的协同相互作用,并确定Char中间体对协同效应的影响。通过直接比较的协同效应程度通过直接比较,从松木 - 聚碳酸酯混合物与单个组分的热解的加权平均值的加权平均值进行了直接比较。通过使用量身定制的原料配置,从Char中间体的影响进一步检查了观察到的协同效应,以获得更多地洞察协同机制。结果表明,共热解析导致H_2的增强33%,共26%,与单个热解的加权值相比,总合成气产率为19%。共热分解也表现出能量回收的优势,总能量效率从42.9%升高到48.6%。协同效应的去卷积揭示了松木焦炭催化增强的PC降解,而PC焦炭对松木热解的影响是最小的。本文提供了对Lig-nocellosic生物量和PC废物共热解的协同作用的解碳理解的结果,这非常有助于从这些废物资源设计清洁和有效的能量回收系统。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2021年第5期|052107.1-052107.8|共8页
  • 作者单位

    The Combustion Laboratory Department of Mechanical Engineering University of Maryland College Park MD 20742 State Key Laboratory of Multiphase Flow in Power Engineering School of Energy and Power Engineering Xi'an Jiaotong University Xi'an 710049 China;

    The Combustion Laboratory Department of Mechanical Engineering University of Maryland College Park MD 20742;

    The Combustion Laboratory Department of Mechanical Engineering University of Maryland College Park MD 20742 College of Environmental Engineering Henan University of Technology Zhengzhou 450001 China;

    The Combustion Laboratory Department of Mechanical Engineering University of Maryland College Park MD 20742 School of Safety Engineering China University of Mining and Technology Xuzhou 221116 China;

    State Key Laboratory of Multiphase Flow in Power Engineering School of Energy and Power Engineering Xi'an Jiaotong University Xi'an 710049 China;

    The Combustion Laboratory Department of Mechanical Engineering University of Maryland College Park MD 20742;

  • 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

    lignocellulosic biomass; waste polycarbonate; co-pyrolysis; synergistic effects; feedstock configuration; alternative energy sources; energy conversion/systems; energy extraction of energy from its natural resource; energy from biomass;

    机译:木质纤维素生物质;废聚碳酸酯;共热分解;协同效应;原料配置;替代能源;能量转换/系统;从其自然资源提取能量的能量;生物质的能量;

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