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污水污泥、聚丙烯和高密度聚乙烯在共热解过程中的协同相互作用:基于等转化率无模型方法和主图分析的研究。

Synergistic interactions between sewage sludge, polypropylene, and high-density polyethylene during co-pyrolysis: An investigation based on iso-conversional model-free methods and master plot analysis.

机构信息

Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543, Singapore.

Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543, Singapore.

出版信息

J Hazard Mater. 2023 Aug 5;455:131600. doi: 10.1016/j.jhazmat.2023.131600. Epub 2023 May 9.

Abstract

Sewage sludge (SS) is a hazardous by-product of wastewater treatment processes that requires careful management for minimal environmental impacts and effective resource recovery. Through thermochemical processes such as pyrolysis, clean energy is recovered from SS in the form of bio-oil, biogas, and biochar. To improve the yield and quality of products, the co-pyrolysis of more than two materials is increasingly gaining interest. Here, the thermal behaviour, kinetics, and synergistic interactions during the co-pyrolysis of SS with polypropylene (PP) and high-density polyethylene (HDPE) were comparatively evaluated with thermogravimetric analysis at different mixing ratios and heat rates. Activation energies and reaction mechanisms were determined through iso-conversional model-free methods and master plot analysis. Evolved gases were monitored with thermogravimetric-mass spectrometry. Increased volatile conversion and degradation rates, and reduced activation energies during co-pyrolysis were mediated by synergistic interactions between H-radicals of PP/HDPE and oxygenated intermediates of SS. Contrary to the pyrolysis of SS, PP and HDPE, the co-pyrolysis processes are predominantly diffusion-controlled. Insights into the co-pyrolysis processes of SS/PP and SS/HDPE gained from this work provide the theoretical support for subsequent investigation, facilitate design of waste-to-energy reactor, and aid the adoption of the technology to harness the bioenergy potential of the feedstocks.

摘要

污水污泥(SS)是废水处理过程中的一种危险副产品,需要谨慎管理,以将其对环境的影响降到最低,并实现有效的资源回收。通过热化学过程,如热解,可以从 SS 中以生物油、沼气和生物炭的形式回收清洁能源。为了提高产品的产量和质量,越来越多的人对两种以上材料的共热解感兴趣。在这里,通过不同的混合比和加热速率,使用热重分析比较评估了 SS 与聚丙烯(PP)和高密度聚乙烯(HDPE)共热解过程中的热行为、动力学和协同作用。通过等转化率无模型方法和主图分析确定了反应机制和活化能。通过热重-质谱联用监测挥发物的逸出。共热解过程中协同作用增强了 H 自由基和 SS 中含氧中间体之间的相互作用,促进了挥发性物质的转化和降解速率的提高,并降低了活化能。与 SS、PP 和 HDPE 的热解过程相反,共热解过程主要是扩散控制的。这项工作对 SS/PP 和 SS/HDPE 共热解过程的深入了解为后续研究提供了理论支持,有助于设计废能转化反应器,并推动该技术的应用,以利用这些原料的生物能源潜力。

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