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基于热解气相色谱/质谱联用分析的催化快速共热解研究综述

A Review on Catalytic Fast Co-Pyrolysis Using Analytical Py-GC/MS.

机构信息

Division of Sustainable Development, College of Science and Engineering, Hamad Bin Khalifa University, Qatar Foundation, Doha P.O. Box 34110, Qatar.

出版信息

Molecules. 2023 Mar 2;28(5):2313. doi: 10.3390/molecules28052313.

Abstract

Py-GC/MS combines pyrolysis with analytical tools of gas chromatography (GC) and mass spectrometry (MS) and is a quick and highly effective method to analyse the volatiles generated from small amounts of feeds. The review focuses on using zeolites and other catalysts in the fast co-pyrolysis of various feedstocks, including biomass wastes (plants and animals) and municipal waste materials, to improve the yield of specific volatile products. The utilisation of zeolite catalysts, including HZSM-5 and nMFI, results in a synergistic reduction of oxygen and an increase in the hydrocarbon content of pyrolysis products. The literature works also indicate HZSM-5 produced the most bio-oil and had the least coke deposition among the zeolites tested. Other catalysts, such as metals and metal oxides, and feedstocks that act as catalysts (self-catalysis), such as red mud and oil shale, are also discussed in the review. Combining catalysts, such as metal oxides and HZSM-5, further improves the yields of aromatics during co-pyrolysis. The review highlights the need for further research on the kinetics of the processes, optimisation of feed-to-catalyst ratios, and stability of catalysts and products.

摘要

Py-GC/MS 结合了热解技术以及气相色谱(GC)和质谱(MS)分析工具,是一种快速、高效的方法,可分析从少量饲料中产生的挥发性物质。本文重点介绍了沸石和其他催化剂在各种原料(包括生物质废物和城市废料)的快速共热解中的应用,以提高特定挥发性产品的产量。沸石催化剂(如 HZSM-5 和 nMFI)的使用可协同降低氧含量并增加热解产物中的烃含量。文献研究还表明,在测试的沸石中,HZSM-5 产生的生物油最多,焦炭沉积最少。该综述还讨论了其他催化剂,如金属和金属氧化物,以及作为催化剂的原料(自催化),如赤泥和油页岩。金属氧化物和 HZSM-5 等催化剂的组合进一步提高了共热解过程中芳烃的产率。本文强调了需要进一步研究这些过程的动力学、优化进料与催化剂的比例以及催化剂和产物的稳定性。

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