利用红外加热对氧化铁上煤快速热解的油气产物进行强化

IF 6.2 2区 化学 Q1 CHEMISTRY, ANALYTICAL
Fan Xu , Yongfu Zeng , Zhaohui Lu , Zuohua Liu , Erfeng Hu , Guangwen Xu , Moshan Li , Jianglong Yu , Shuai Li
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引用次数: 0

摘要

本研究考察了不同加热方式下氧化铁对煤热解行为的影响,特别是红外加热(IH)和电加热(EH)。通过TG-FTIR、GC-MS、XRD、FTIR、拉曼光谱等综合分析,阐明不同温度下热解产物分布、炭结构、官能团组成的变化。在煤热解过程中加入氧化铁作为催化剂,在600℃以下的温度下显著提高了原油收率,并增加了所有温度下的产气量。随着CH4、H2和CO含量的增加,CO2的生成减少,气体组成的热值有所改善。GC-MS分析表明,氧化铁促进了有价值的脂肪烃和醇的生成,同时最大限度地减少了热解油中不需要的酸的产生。与EH相比,IH通过促进挥发物之间更大的交叉相互作用,导致更高的产油量和更低的产油量。此外,随着温度的升高,IH有利于脂肪烃和酚的生成,同时抑制酸的形成。XRD分析进一步表明,在较低温度下,IH主要生成Fe3O4,这表明IH有效地抑制了不可凝性气体对Fe3O4的还原,从而保存了气体产物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced oil and gas products in fast coal pyrolysis over iron oxide using infrared heating
This study investigates the influence of iron oxide on the pyrolysis behavior of coal under varying heating methods, specifically infrared heating (IH) and electric heating (EH). Comprehensive analyses were conducted using TG-FTIR, GC-MS, XRD, FTIR, and Raman spectroscopy to elucidate the changes in pyrolysis product distribution, char structure, and functional group composition across different temperatures. The addition of iron oxide as a catalyst in coal pyrolysis significantly enhanced oil yield at temperatures below 600 °C and increased gas production across all temperatures. The gas composition showed improved heating value, with elevated levels of CH4, H2, and CO, and reduced CO2 formation. GC-MS analysis indicated that iron oxide promoted the generation of valuable aliphatic hydrocarbons and alcohols while minimizing the production of undesirable acids in the pyrolysis oil. Compared to EH, IH resulted in higher oil yields and lower water yields by facilitating greater cross-interaction between volatiles. Additionally, IH favored the production of aliphatic hydrocarbons and phenols while suppressing acid formation as temperatures increased. XRD analysis further revealed that IH predominantly yielded Fe3O4 in the char at lower temperatures, suggesting that IH effectively inhibited the reduction of Fe3O4 by non-condensable gases, thus preserving the gas products.
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来源期刊
CiteScore
9.10
自引率
11.70%
发文量
340
审稿时长
44 days
期刊介绍: The Journal of Analytical and Applied Pyrolysis (JAAP) is devoted to the publication of papers dealing with innovative applications of pyrolysis processes, the characterization of products related to pyrolysis reactions, and investigations of reaction mechanism. To be considered by JAAP, a manuscript should present significant progress in these topics. The novelty must be satisfactorily argued in the cover letter. A manuscript with a cover letter to the editor not addressing the novelty is likely to be rejected without review.
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