Characteristics of High-Molecular-Weight Components Obtained by Thermal Destruction of Oil Residue Asphaltenes in Supercritical Water

IF 0.8 4区 工程技术 Q4 CHEMISTRY, MULTIDISCIPLINARY
Kh. V. Nal’gieva, M. A. Kopytov
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Abstract

The composition and characteristics of high-molecular-weight components of the thermolysis products of petroleum residue asphaltenes obtained in supercritical water with and without a catalyst based on iron oxides have been studied. The experiments were carried out in an autoclave at a temperature of 450°C for 60 min; the catalyst was prepared in situ from iron(III) tris(acetylacetonate). The use of supercritical water and the in situ prepared catalyst made it possible to increase the yield of saturated and aromatic hydrocarbons by a factor of more than 9.5 compared to that in a control experiment (thermolysis without water and a catalyst) and decrease the yield of solid products insoluble in chloroform. The properties of high-molecular-weight components isolated from the thermolysis products were characterized using structural group analysis and IR spectroscopy. High-molecular-weight components obtained by thermolysis in supercritical water in the presence of the catalyst, in comparison with the products obtained in the control experiment, were characterized by higher H/C ratios and concentrations of oxygen-containing groups and lower average molecular weights.

Abstract Image

Abstract Image

在超临界水中热解残油沥青质所获得的高分子量成分的特性
摘要 研究了石油残渣沥青质在超临界水中加入和未加入氧化铁催化剂的热解产物中高分子量成分的组成和特性。实验在高压釜中进行,温度为 450°C,时间为 60 分钟;催化剂由三(乙酰丙酮)铁(III)就地制备。使用超临界水和就地制备的催化剂使饱和烃和芳香烃的产率比对照实验(无水和催化剂的热分解)提高了 9.5 倍以上,并降低了不溶于氯仿的固体产物的产率。利用结构基团分析和红外光谱分析了从热分解产物中分离出的高分子量成分的特性。与对照实验中获得的产物相比,在催化剂存在的超临界水中热解获得的高分子量组分的特点是含氧基团的 H/C 比值和浓度较高,平均分子量较低。
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来源期刊
Solid Fuel Chemistry
Solid Fuel Chemistry CHEMISTRY, MULTIDISCIPLINARY-ENERGY & FUELS
CiteScore
1.10
自引率
28.60%
发文量
52
审稿时长
6-12 weeks
期刊介绍: The journal publishes theoretical and applied articles on the chemistry and physics of solid fuels and carbonaceous materials. It addresses the composition, structure, and properties of solid fuels. The aim of the published articles is to demonstrate how novel discoveries, developments, and theories may be used in improved analysis and design of new types of fuels, chemicals, and by-products. The journal is particularly concerned with technological aspects of various chemical conversion processes and includes papers related to geochemistry, petrology and systematization of fossil fuels, their beneficiation and preparation for processing, the processes themselves, and the ultimate recovery of the liquid or gaseous end products.
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