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环烷烃基富芳烃馏分的加氢烷基化改性及其对中间相发展的影响。

Hydroalkylation modification of naphthene-based aromatic-rich fraction and its influences on mesophase development.

作者信息

Li Ming, Liu Dong, Lou Bin, Zhang Yadong, Yu Shitao, Ding Jnuwei

机构信息

College of Chemical Engineering, Qingdao University of Science and Technology Qingdao China 266042

State Key Laboratory of Heavy Oil Processing, China University of Petroleum Qingdao China 266580

出版信息

RSC Adv. 2018 Jan 19;8(7):3750-3759. doi: 10.1039/c7ra12619k. eCollection 2018 Jan 16.

Abstract

Naphthene-based aromatic-rich fraction was modified by tetrahydronaphthalene and polyethylene glycol to obtain modified materials which were selected to prepare mesophase pitches by a direct condensation method. The structural composition of modified materials were characterized by simulated distillation (SIMDIS), elemental analysis, Fourier transform infrared spectrometry (FTIR) and H nuclear magnetic resonance (H NMR) spectroscopy. Influences of the naphthenic structures and alkyl chains in modified materials on the formation and development of mesophase structures were investigated by analyzing variations in optical texture, softening point, carbon residue, molecular and microcrystal structure of mesophase pitch. Results showed that the alkyl structures in modified materials treated by tetrahydronaphthalene and polyethylene glycol were mainly naphthenic structures and alkyl chains, respectively. The existence of alkyl structures in modified materials was beneficial for the formation of mesophase with high quality. Moreover, the naphthenic structures had a better improving effect than alkyl chains. Abundant naphthenic structures or an appropriate amount of alkyl chains in feedstock contributed to the preparation of mesophase pitch with large domain structure, low softening point, high carbon residue and ordered microcrystal structure.

摘要

采用四氢萘和聚乙二醇对环烷烃基富芳烃馏分进行改性,以获得改性材料,并选用这些改性材料通过直接缩聚法制备中间相沥青。采用模拟蒸馏(SIMDIS)、元素分析、傅里叶变换红外光谱(FTIR)和氢核磁共振(H NMR)光谱对改性材料的结构组成进行了表征。通过分析中间相沥青的光学织构、软化点、残炭、分子结构和微晶结构的变化,研究了改性材料中环烷烃结构和烷基链对中间相结构形成和发展的影响。结果表明,经四氢萘和聚乙二醇处理的改性材料中的烷基结构分别主要为环烷烃结构和烷基链。改性材料中烷基结构的存在有利于高质量中间相的形成。此外,环烷烃结构的改善效果优于烷基链。原料中丰富的环烷烃结构或适量的烷基链有助于制备具有大畴结构、低软化点、高残炭和有序微晶结构的中间相沥青。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/412f/9077666/4895b780d50a/c7ra12619k-f1.jpg

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