欢迎访问过程工程学报, 今天是
过程与工艺

石油基中间相沥青的研制

  • 何成友 聂毅 李佩佩 白璐 王启宝
展开
  • 1. 中国矿业大学(北京)化学与环境工程学院,北京 100083;2. 中国科学院过程工程研究所,北京 100190; 3. 郑州中科新兴产业技术研究院,河南 郑州 450003

收稿日期: 2017-01-12

  修回日期: 2017-03-14

  网络出版日期: 2017-10-10

基金资助

973国家重点基础研究发展计划项目;国家自然科学基金项目

Preparation of Mesophase Pitch from Petroleum Pitch

  • Chengyou HE Yi NIE Peipei LI Lu BAI Qibao WANG
Expand
  • 1. School of Chemistry & Environmental Engineering, China University of Mining & Technology Beijing, Beijing 100083, China; 2. Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China; 3. Zhengzhou Institute of Emerging Industrial Technology, Zhengzhou, Henan 450003, China

Received date: 2017-01-12

  Revised date: 2017-03-14

  Online published: 2017-10-10

摘要

以石油基中温沥青为原料,经过热聚合?氢化?热处理制备中间相含量大于80%的广域流线型的中间相沥青,对处理过程中沥青的组分和结构变化进行了表征,对低温长时间和高温短时间处理对中间相沥青形态的影响规律进行了探讨. 结果表明,原料通过热聚合,沥青中的甲苯不溶物含量和芳环数提高;再经过加氢改性,沥青分子中的脂环烃增加,流动性改善;最后经高温短时间或低温长时间热处理形成含侧链或环烷结构的稠环芳烃分子,低温长时间处理更有利于中间相分子充分发展,易获得广域流线型的中间相.

本文引用格式

何成友 聂毅 李佩佩 白璐 王启宝 . 石油基中间相沥青的研制[J]. 过程工程学报, 2017 , 17(5) : 1023 -1027 . DOI: 10.12034/j.issn.1009-606X.217112

Abstract

The petroleum asphalt was used to prepare the mesophase pitch through three steps treatment including polymerization, hydrogenation and heat treatment. The mesophase content in the obtained product is more than 80%. The composition and structure of asphalt in the three-step process were characterized. Besides, the influence of heat treatment conditions, like low temperature with a long time and high temperature with a short time, on mesophase pitch morphology was investigated. The results showed that the content of toluene insoluble and the number of aromatic rings in the asphalt were improved by thermal polymerization. After modified by hydrogenation, the alicyclic hydrocarbons in the asphalt molecules was increased and the mobility was improved. Finally, after thermal treatment, the polycyclic aromatic molecules were formed with side chains or naphthenic structure. The treatment by low temperature with long time was favorable to the development of mesophase molecules and obtaining wide-area streamlined mesophase.

参考文献

[1]Brooks J D, Taylor G H.The formation of graphitizing carbons from the liquid phase[J].Carbon, 1965, 3(2):185-193
[2]Taylor G H, Pennock G M, Fitz Gerald J D, et, al.Influence of QI on mesophase structure[J].Carbon, 1993, 31(2):341-354
[3]Lü Y G, Wu D, Zha Q F, et, al.Skin-core structure in mesophase pitch-based carbon fibers: causes and prevention[J].Carbon, 1998, 36(12):1719-1724
[4]查庆芳,郭燕生,吴明铂,等.减压渣油与油浆共炭化的化学组成变化[J].新型炭材料, 2002, 17(2):4-8
[5]Zha Q F, Guo Y S, Wu M B, et, al.Composition changes in the co-carbonization of FCC slurry and VR[J].New Carbon Materials, 2002, 17(2):4-8
[6]宋怀河,刘朗,张碧江.均四甲苯基中间相沥青纤维不熔化行为的研究[J].新型炭材料, 1999, 14(1):13-18
[7]Song H H, Liu L, Zhang B J.Stabilization of mesophase pitch fibers from durene methylene-bridged oligomers[J].New Carbon Materials, 1999, 14(1):13-18
[8]S Otani, S Watanabe, H Ogino.High modulus carbon fibers from pitch materials[J].Bulletin of the Chemical Society of Japan, 1972, 45(12):3710-3714
[9]Didchenko R, Barr J B, Chwastiak S, et, al.High modulus carbon fiber from pitch[J].Carbon, 1975, 13(6):555-556
[10]Mora E, Blanco C, Santamaria R, et, al.A novel method to obtain a petroleum-derived mesophase pitch suitable as carbon fiber precursor[J].Carbon, 2003, 41(3):445-452
[11]孙磊,郑长征,马丽斯,等.煤沥青及其改性后中间相的转化行为研究[J].煤炭转化, 2010, 33(1):82-85
[12]Sun L, Zheng C Z, Ma L S, et, al.Study on the mesophase transformations of coal-tar pitch and modified coal-tar pitch[J].Coal conversion, 2010, 33(1):82-85
[13]王惠,乔占平,冉新权,等.石油沥青制备中间相沥青[J].材料科学与工程, 2001, 19(2):58-60
[14]Wang H, Qiao Z P, Ran X Q, et, al.Study on mesophase pitch made by using petroleum pitch[J].Materials Science and Engineering, 2001, 19(2):58-60
[15]黄美荣,李新贵.中间相沥青的制备与应用[J].石油化工, 1998, 27(1):62-66
[16]Mochida I, Yoon S H, Korai Y.Mesoscopic Structure and properties of liquid crystalline mesophase pitch and its transformation into carbon fiber[J].The Chemical Record, 2002, 2(2):81-101
[17]Miyake M, Ida T, Yoshida H, et, al.Effects of reductively introduced alkyl groups and hydrogen to mesophase pitch on carbonization properties[J].Carbon, 1993, 31(5):705-714
[18]Li M, Liu D, Du H.Preparation of mesophase pitch by aromatics-rich distillate of naphthenic vacuum gas oil[J].Applied Petrochemical Research, 2015, 5(4):339-346
[19]Zhang J, Guo S, Wang Y, et, al.Effect of electrolytic systems on electrochemical hydrogenation of mesophase coal tar pitch[J].Fuel Processing Technology, 2003, 80(1):81-90
[20]Mochida I, Shimizu K, Fujiyama S.Preparation of mesophase pitch from aromatic hydrocarbons by the aid of HFBF3[J].Carbon, 1990, 28(2):311-319
[21]Korai Y, Nakamura M, Mochida I.Mesophase pitches prepared from methylnaphthalene by the aid of HFBF3[J].Carbon, 1991, 29(4):561-567
[22]舒欣,姚艳波,夏文丽,等.同步氢化热缩聚法制备中间相沥青[J].功能材料, 2011, 42(12):2185-2188
[23]Wazir A H, Kakakhel L.Preparation and characterization of pitch-based carbon fiber[J].New Carbon Materials, 2009, 24(1):83-88
[24] Li P P, Xiong J M, Ge M L.Preparation of pitch-based general purpose carbon fibers from catalytic slurry oil[J].Fuel Processing Technology, 2015, 2015(140):231-235
[25]Cheng X L, Zha Q F, Li X J.Modified characteristics of mesophase pitch prepared fromcoal tar pitch by adding waste polystyrene[J].Fuel Processing Technology, 2008, 89(12):1436-1441
[26]袁靖,迟伟东,沈曾民,等.采用加压-真空两断热缩聚法制备中间相沥青炭纤维的原料[J].炭素, 2002, 4(112):8-14
[27]Yuan J, Chi W D, Shen Z M, et, al.Manufacture raw of mesophase-pitch carbon fiber by two-stage thermal condensation method under pressure-vacuum[J].Carbon, 2002, 4(112):8-14
[28]盛英,李克健,李文博.煤直接液化残留物制备中间相沥青[J].煤炭学报, 2009, 34(8):1125-1128
[29]Sheng Y, Li K J, Li W B.Preparation of mesophase pitch using coal liquefaction residue[J].Journal of China coal society, 2009, 34(8):1125-1128
[30]李伏虎,沈曾民,迟伟东.两种不同原料中间相沥青分子结构的研究[J].炭素技术, 2009, 28(1):4-8
[31]Li F H, Shen Z M, Chi W D.Molecular structures of mesophase pitches prepared from different raw materials[J].Carbon techniques, 2009, 28(1):4-8
文章导航

/