用户名: 密码: 验证码:
溶剂脱沥青工艺优化研究进展
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Progress on the optimization of solvent deasphalting process
  • 作者:徐晓胜 ; 王利平 ; 李青松 ; 李剑新 ; 段永生 ; 黄小侨 ; 李雨师
  • 英文作者:XU Xiao-sheng;WANG Li-ping;LI Qing-song;LI Jian-xin;DUAN Yong-sheng;HUANG Xiao-qiao;LI Yu-shi;State Key Laboratory of Heavy Oil Processing,China University of Petroleum(East China);Research Institute of Petro China Fuel Oil Co.,Ltd.;
  • 关键词:溶剂脱沥青 ; 脱油沥青 ; 脱沥青油 ; 超临界溶剂回收
  • 英文关键词:solvent deasphalting;;deoiled asphalt;;deasphalted oil;;supercritical solvent recovery
  • 中文刊名:SXHG
  • 英文刊名:Applied Chemical Industry
  • 机构:中国石油大学(华东)重质油国家重点实验室;中石油燃料油有限责任公司研究院;
  • 出版日期:2019-02-10
  • 出版单位:应用化工
  • 年:2019
  • 期:v.48;No.324
  • 基金:国家自然科学基金项目(51172284);; 中央高校基本科研业务费专项资金资助项目(15CX06048A)
  • 语种:中文;
  • 页:SXHG201902037
  • 页数:5
  • CN:02
  • ISSN:61-1370/TQ
  • 分类号:166-170
摘要
介绍了溶剂脱沥青的原理、工艺流程及发展情况。就目前国内外对溶剂脱沥青工艺优化的研究进展情况,从超临界溶剂回收技术、高效传质设备的使用和组合工艺的开发等几个方面进行综述,对未来我国溶剂脱沥青工艺的优化方向进行了分析与展望。
        The principle,process and development of solvent deasphalting were briefly described.To illustrate the progress on the optimization of solvent deasphalting process at home and abroad,several aspects including the use of supercritical solvent recovery technology,the use of high-efficiency mass transfer equipment and the development of combination processes were reviewed.Finally,the future optimization direction of solvent deasphalting process in China was analyzed and prospected.
引文
[1]赵文明,李宇静,白雪松,等.国内外重质原油市场与加工技术分析[J].化学工业,2014,32(7):1-12.
    [2]高建民,朱建华.我国重油和渣油加工技术展望[J].炼油与化工,2008,19(2):1-4.
    [3]谷振生,王晓明.国内外重油加工技术新进展[J].炼油与化工,2010,21(1):6-8.
    [4]曲涛,郭皎河,高鲜会.进口油溶剂脱沥青技术优化研究[J].石油沥青,2011,25(2):65-68.
    [5]龙军,王子军,黄伟祁,等.重溶剂脱沥青在含硫渣油加工中的应用[J].石油炼制与化工,2004,35(3):1-5.
    [6]曹玉亭,朱维强.减压渣油加工技术[J].石化技术与应用,2009,27(3):279-283.
    [7]水恒福,沈本贤,高晋生,等.混合C4溶剂脱沥青工艺研究-DAO与DOA影响因素考察[J].安徽工业大学学报:自然科学版,2000,17(1):15-19.
    [8]Rana M S,Sámano V,Ancheyta J,et al.A review of recent advances on process technologies for upgrading of heavy oils and residua[J].Fuel,2007,86(9):1216-1231.
    [9]Liu X,Yang Y,Lin X,et al.Deoiled asphalt as carbon source for preparation of various carbon materials by chemical vapor deposition[J].Fuel Processing Technology,2006,87(10):919-925.
    [10]Penning R T,Vickers A G,Shah B R.Extraction upgrades resid[J].Hydrocarbon Processing,1982,61(5):145-150.
    [11]柴志杰,任满年.沥青生产与应用技术问答[M].2版.北京:中国石化出版社,2010:224-225.
    [12]李德飞.溶剂脱沥青专利技术及其应用[J].当代化工,2005(1):4-7.
    [13]卢俊财.渣油掺炼煤焦油常压溶剂脱沥青效果研究[D].上海:华东理工大学,2011.
    [14]肖家旺,刘剑,夏伟健.溶剂脱沥青装置的可行性探讨[J].山东化工,2017,46(19):104-105,108.
    [15]李晓文.溶剂脱沥青的技术进展与工艺优化[J].中外能源,2007(2):68-75.
    [16]黄灏,傅徐钢,易发军,等.溶剂脱沥青工艺优化浅谈[J].润滑油,2010,25(4):61-64.
    [17]康洪波,侯宗玉,武永红,等.丙烷脱沥青装置改造生产光亮油原料[J].山东化工,2014,43(6):111-112.
    [18]Long J,Shen B X,Ling H,et al.Improving the solvent deasphalting process by the co-treating of residue and coal[J].Energy Sources,2013,35(20):1956-1963.
    [19]杨书显,柴志杰,任满年.溶剂脱沥青-催化裂化组合工艺[J].炼油技术与工程,2005(3):37-40.
    [20]赵渊杰,王会东,关毅.减压渣油掺炼催化裂化油浆丁烷脱沥青-糠醛精制组合工艺研究[J].石油炼制与化工,2007(8):23-27.
    [21]石磊.FCC油浆溶剂精制及利用的研究[D].上海:华东理工大学,2011.
    [22]Wang Y,Chen Z,Shen B.The dual-purpose of solvent deasphalting integrated with FCC for production of qualified pavement asphalt and FCC feedstock to realize its maximum potential[J].Energy Sources,2012,34(13):1187-1195.
    [23]吴子明.掺炼脱沥青油加氢裂化工艺研究[J].当代化工,2009,38(2):131-133.
    [24]Sámano V,Guerrero F,Ancheyta J,et al.A batch reactor study of the effect of deasphalting on hydrotreating of heavy oil[J].Catalysis Today,2010,150(3):264-271.
    [25]王辉,郑延成.蜡油加氢装置高比例掺炼脱沥青油的可行性分析[J].炼油技术与工程,2017,47(2):20-23.
    [26]Varma R L,Bakhshi N N,Ranganathan R.Nonhydrogenative co-processing of saskatchewan heavy oil and coal[J].Canadian Journal of Chemical Engineering,2010,67(1):150-156.
    [27]李波海,张玉贞.减压渣油溶剂脱沥青-焦化总液体收率的研究[J].石油炼制与化工,2006(7):30-33.
    [28]刘文举,王少锋,江莉.溶剂脱沥青-焦化联合提高重质油综合液体收率实验研究[J].石油炼制与化工,2013,44(9):51-54.
    [29]Li R,Wang Z,Long J.Combined process of low degree solvent deasphalting and delayed coking:US,6673234 B2[P].2004-01-06.
    [30]Gillis D B.Integration of solvent deasphalting with resin hydroprocessing and with delayed coking:US,9296959 B2[P].2016-03-29.
    [31]来晓燕,张艳华,宋宜诺.重油加工技术的进展及发展趋势[J].石油化工腐蚀与防护,2008,25(1):37-39.
    [32]王玉翠,康彪.福建炼油化工公司溶剂脱沥青/汽电一体化技术方案与分析[J].炼油技术与工程,2001,31(5):10-14.
    [33]徐燕平.高软化点条件下的脱油沥青气化工业试验[J].中外能源,2010,15(3):92-96.
    [34]钟英竹,靳爱民.渣油加工技术现状及发展趋势[J].石油学报:石油加工,2015,31(2):436-443.
    [35]张翠侦,王凯,张海洪,等.溶剂脱沥青技术浅析[J].广东化工,2013,40(16):93-94.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700