高硫焦煤与聚丙烯共热解特性及动力学分析

IF 0.5 Q4 ENGINEERING, CHEMICAL
Bin Yang, Jiayun Dan, Yonggen Peng, Weijing Guo, Shijie Wang
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引用次数: 0

摘要

随着优质炼焦煤资源的日益紧缺,高硫炼焦煤的高效清洁利用已成为煤化工领域的一个重要研究方向。与此同时,传统塑料处理方法(如填埋、焚烧等)造成的环境问题日益突出。因此,本研究提出富氢塑料聚丙烯(PP)作为供氢材料与高硫炼焦煤共热解。通过热重实验系统研究了煤的特性和掺混比对热解失重特性和动力学参数的影响。结果表明:煤与聚丙烯的主要热解失重温度范围有明显重叠,为两者的相互作用提供了有利条件;在共热解过程中,实际失重量与理论计算值存在较大偏差。这一现象说明PP在热解过程中产生的富氢组分和活性自由基能够与煤相互作用,两者之间存在显著的协同效应。通过动力学分析,确定了单煤和混合煤在不同热解阶段的动力学机理函数。聚丙烯的加入使第二热解区的温度范围明显变窄,活化能增加,而第三热解区的活化能降低。这一发现不仅再次验证了协同效应,也为进一步了解煤与塑料共热解机理提供了重要依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Co-Pyrolysis Characteristics and Kinetic Analysis of High-Sulfur Coking Coal and Polypropylene

Co-Pyrolysis Characteristics and Kinetic Analysis of High-Sulfur Coking Coal and Polypropylene

Co-Pyrolysis Characteristics and Kinetic Analysis of High-Sulfur Coking Coal and Polypropylene

With the increasing shortage of high-quality coking coal resources, the efficient and clean utilization of high-sulfur coking coal has become an important research direction in the field of coal chemical industry. At the same time, the environmental problems caused by traditional plastic treatment methods (such as landfill and incineration) have become increasingly prominent. Therefore, in this study, hydrogen-rich plastic polypropylene (PP) was proposed as a hydrogen donor to co-pyrolysis with high-sulfur coking coal. The effects of coal characteristics and mixing ratio on pyrolysis weight loss characteristics and kinetic parameters were systematically studied by thermogravimetric experiment. The results show that the main pyrolysis weight loss temperature ranges of coal and polypropylene overlap significantly, which provides favorable conditions for the interaction between the two. Moreover, there is a significant deviation between the actual weight loss and the theoretical calculation value in the co-pyrolysis process. This phenomenon indicates that the hydrogen-rich components and active free radicals produced by PP during pyrolysis can interact with coal, and there is a significant synergistic effect between the two. Through kinetic analysis, the kinetic mechanism functions of single coal and mixture at different pyrolysis stages were determined. The addition of polypropylene made the temperature range of the second pyrolysis zone significantly narrower and the activation energy increased, but the activation energy of the third pyrolysis zone decreased. This finding not only verifies the synergistic effect again, but also provides an important basis for further understanding the co-pyrolysis mechanism of coal and plastic.

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来源期刊
Coke and Chemistry
Coke and Chemistry ENGINEERING, CHEMICAL-
CiteScore
0.70
自引率
50.00%
发文量
36
期刊介绍: The journal publishes scientific developments and applications in the field of coal beneficiation and preparation for coking, coking processes, design of coking ovens and equipment, by-product recovery, automation of technological processes, ecology and economics. It also presents indispensable information on the scientific events devoted to thermal rectification, use of smokeless coal as an energy source, and manufacture of different liquid and solid chemical products.
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