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Thermogravimetric and kinetic analysis of biomass and polyurethane foam mixtures Co-Pyrolysis

机译:生物质和聚氨酯泡沫混合物的热重刺激和动力学分析共热分解

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摘要

Alternative fuels are crucial for the decarbonisation of high-energy demanding processes. The utilisation of waste materials to produce alternative fuels is especially interesting since, the co-pyrolysis of waste plastics and biomass was lately introduced as promising method since the synergistic effect might enhance the product properties compared to those from individual pyrolysis. Furthermore, the utilisation of waste biomass, like sawdust, is interesting since it does not influence the sustainability of biomass consumption, and even more, it avoids the usage of raw feedstock. Thermogravimetric analysis is per -formed to determine the thermal degradation behaviour and kinetic parameters of investigated mixtures to find the most appropriate utilisation method. Co-pyrolysis was conducted for three mixtures with the following biomass/polyurethane ratios: 75-25%, 50-50%, 25-75%, over a temperature range of 30-800 degrees C, at three heating rates 5,10 and 20 degrees C/min, under an inert atmosphere. Obtained results were subjected to comprehensive kinetic analysis to determine effective activation energy using the iso-conversional model-free methods and provide a detailed analysis of the samples' thermal degradation process. This work aimed to identify the main thermal decomposition stages during co-pyrolysis of biomass and polyurethane mixtures and provide the mixture composition's influence on the considered thermochemical conversion process. (C) 2021 Elsevier Ltd. All rights reserved.
机译:替代燃料对于高能量苛刻过程的脱碳至关重要。利用废料产生替代燃料特别有趣,因为,最近将废塑料和生物质的共热解析为有前途的方法,因为与单个热解相比,协同效应可能增强产品性质。此外,利用废物生物量,如锯末,有趣的是,由于它不会影响生物质消耗的可持续性,甚至更多,它避免了原料原料的使用。热重分析是每种矫形,以确定研究的混合物的热劣化行为和动力学参数,以找到最合适的利用方法。用以下生物质/聚氨酯比例进行三种混合物进行共热分解:75-25%,50-50%,25-75%,在30-800℃的温度范围内,三次加热速率5,10和在惰性气氛下20℃/ min。获得的结果进行了综合动力学分析,以确定使用异型无模型方法确定有效的活化能量,并提供对样品的热降解过程的详细分析。该工作旨在鉴定生物质和聚氨酯混合物的共热分解过程中的主要热分解阶段,并提供混合物组合物对所考虑的热化学转化过程的影响。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Energy》 |2021年第2期|121592.1-121592.10|共10页
  • 作者单位

    Univ Zagreb Fac Mech Engn & Naval Architecture Ivana Lucica 5 Zagreb 10000 Croatia;

    Univ Zagreb Fac Mech Engn & Naval Architecture Ivana Lucica 5 Zagreb 10000 Croatia|Xi An Jiao Tong Univ Dept Thermal Engn Xianning West Rd Xian Shaanxi Peoples R China;

    Univ Belgrade Fac Mech Engn Kraljice Marije 16 Belgrade Serbia;

    Univ Belgrade Fac Mech Engn Kraljice Marije 16 Belgrade Serbia;

    Univ Zagreb Fac Mech Engn & Naval Architecture Ivana Lucica 5 Zagreb 10000 Croatia;

    Xi An Jiao Tong Univ Dept Thermal Engn Xianning West Rd Xian Shaanxi Peoples R China;

    Univ Zagreb Fac Mech Engn & Naval Architecture Ivana Lucica 5 Zagreb 10000 Croatia;

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

    Thermogravimetric analysis; Kinetic analysis; Sawdust; Polyurethane; Co-pyrolysis;

    机译:热重分析;动力学分析;锯末;聚氨酯;共热分解;

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