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化工学报  2015 

超重力反应强化技术最新进展

DOI: 10.11949/j.issn.0438-1157.20150745, PP. 2805-2809

Keywords: 超重力反应强化技术,传质,混合,硫化氢,氧化,卤化

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Abstract:

由于可数量级强化传质和分子混合过程,超重力技术成为最受关注的化工过程强化技术之一。综述了北京化工大学教育部超重力工程研究中心近几年在超重力反应器基础研究及超重力反应强化技术在硫化氢脱除、氧化、卤化等方面的研究进展及工业应用情况,并对超重力反应强化技术的发展趋势进行了展望。

References

[1]  Cao Huibo(曹会博), Li Zhenhu(李振虎), Hao Guojun(郝国均), Qian Zhi(钱智), Wang Wenbin(王文宾), Guo Kai(郭锴). Pilot plant experiment for removal of hydrogen sulfide from oil-associated gas by high gravity complex iron method [J]. Petrochemical Technology (石油化工), 2009, 38(9): 971-975.
[2]  Qian Zhi, Li Zhenhu, Guo Kai. Industrial applied and modeling research on selective H2S removal using a rotating packed bed [J]. Ind. Eng. Chem. Res., 2012, 51(23): 8108-8116.
[3]  Qian Zhi (钱智), Xu Lianbin(徐联宾), Li Zhenhu (李振虎), Hao Guojun(郝国均), Guo Kai (郭锴). Simulation of selective absorption of H2S with aqueous N-methyldiethanolamine under high gravity field [J]. Petrochemical Technology(石油化工), 2010, 39(9): 1016-1022.
[4]  Zou Haikui(邹海魁), Chu Guangwen(初广文), Zhao Hong(赵宏), Xiang Yang(向阳), Chen Jianfeng(陈建峰).Process intensification of high-gravity reactor for environmental engineering: from fundamental to industrialization [J]. Scientia Sinica Chimica(中国科学:化学), 2014, 44(9): 1413-1422.
[5]  Xin Hu(辛虎). Cyclohexane oxidation to produce cyclohexanone high-gravity reactive process [D]. Beijing: Beijing University of Chemical Technology, 2006.
[6]  Chen Jianfeng(陈建峰), Xin Hu(辛虎), Zou Haikui(邹海魁), Chu Guangwen(初广文). The preparation method of cyclohexanone from cyclohexane by liquid phase oxidation process [P]: ZL, 200510130561.4. 2009-06-24.
[7]  Wang Qiaoran(王巧然). A marathon tough fighting — a survey of LPG sweetening technology self-developed by PetroChina with no spent caustic discharged [N/OL]. China Petroleum Daily(中国石油报), [2015-04-21]. http://news.cnpc.com.cn/system/2015/04/21/001538135. shtml.
[8]  Wang Wei, Zou Haikui, Chu Guangwen, Weng Zhan, Chen Jianfeng. Bromination of butyl rubber in rotating packed bed reactor [J]. Chem. Eng. J., 2014, 240: 503-508.
[9]  Wang Wei, Zou Haikui, Chu Guangwen, Xiang Yang, Peng Han, Chen Jianfeng. Effects of assistant solvents and mixing intensity on the bromination process of butyl rubber [J]. Chin. J. Chem. Eng., 2014, 22(4): 398-404..
[10]  Wang Wei, Zou Haikui, Shao Lei, Chu Guangwen, Xiang Yang, Weng Zhan, Chen Jianfeng. Development of a new preparation technique of bromobutyl rubber: bromination conditions of butyl rubber in the presence of NaClO and CH2Cl2 [J]. J. Chem. Eng. Jpn., 2014, 47(8): 698-703.
[11]  Wang Wei(王伟). Studies on intensification and mechanism of the preparation process of bromobutyl rubber with a rotating packed bed reactor [D]. Beijing: Beijing University of Chemical Technology, 2014.
[12]  Ramshaw C, Mallinson R H. Mass transfer process[P]:US, 05/963886.1981-08-11.
[13]  Ramshaw C. “HiGee” distillation—an example of process intensification [J]. Chem. Eng., 1983, 389: 13-14.
[14]  Chen Jianfeng(陈建峰). High Gravity Technology and Application — A New Generation of Reaction and Separation Technology(超重力技术及应用——新一代反应与分离技术)[M]. Beijing: Chemical Industry Press, 2003:1-11.
[15]  Zou Haikui(邹海魁), Shao Lei(邵磊), Chen Jianfeng(陈建峰). Progress of higee technology—from laboratory to commercialization [J]. Journal of Chemical Industry and Engineering(China)(化工学报), 2006, 57(8): 1810-1816.
[16]  Yang Kuang(杨旷). Study on micromixing and gas-liquid mass transfer characteristic in rotating packed bed [D]. Beijing: Beijing University of Chemical Technology, 2010.
[17]  Sun Runlin(孙润林), Xiang Yang(向阳), Yang Yucheng(杨宇成), Zou Haikui(邹海魁), Chu Guangwen(初广文), Chen Jianfeng(陈建峰). A visual study of liquid flow in a rotating packing bed with super gravity [J]. Journal of Chemical Engineering of Chinese Universities(高校化学工程学报), 2013, 27(3): 411-416.
[18]  Zhao Zhiqiang(赵志强), Chu Guangwen(初广文), Luo Yong(罗勇), Zou Haikui(邹海魁), Xiang Yang(向阳), Chen Jianfeng(陈建峰). Gas pressure drop and desulfurization performance of a rotating packed bed with structured wire mesh packing [J]. The Chinese Journal of Process Engineering(过程工程学报), 2014, 14(5): 770-775.
[19]  Zhang Wenjie(张文洁). Micromixing efficiency of a rotating packed bed with foam packings [D]. Beijing: Beijing University of Chemical Technology, 2014.
[20]  Zhang Wenjie(张文洁), Chu Guangwen(初广文), Luo Yong(罗勇), Xiang Yang(向阳), Zou Haikui(邹海魁), Chen Jianfeng(陈建峰). Micromixing in rotating packed bed with ceramic foam packing [J]. CIESC Journal(化工学报), 2014, 65(8): 2976-2980.
[21]  Yi Fei(易飞). Modeling and experimental studies on absorption of carbon dioxide by higee technology [D]. Beijing: Beijing University of Chemical Technology, 2008.
[22]  Yi Fei, Zou HaiKui, Chu Guangwen, Shao Lei, Chen Jianfeng. Modeling and experimental studies on absorption of CO2 by benfield solution in rotating packed bed [J]. Chem. Eng. J., 2009, 45: 377-384.
[23]  Zhang L L, Wang J X, Xiang Y, Zeng X F, Chen J F. Absorption of carbon dioxide with ionic liquid in novel rotating packed bed contactor: mass transfer study [J]. Ind. Eng. Chem. Res., 2011, 11: 6957-6964.
[24]  Li W Y, Wu W, Zou H K, Chu G W, Shao L, Chen J F. A mass transfer model for devolatilization of highly viscous media in rotating packed bed [J]. Chin. J. Chem. Eng., 2010, 18(2): 194-201.
[25]  Sun Runlin(孙润林). A visual study of liquid flow and CFD simulation in a rotating packed bed [D]. Beijing: Beijing University of Chemical Technology, 2012.
[26]  Ding Zihao(丁子豪). Study on desulfurization of coke oven gas by high gravity method [D]. Beijing: Beijing University of Chemical Technology, 2014.
[27]  Li Hua(李华). Experiment study of Higee-absorption of H2S from gas mixtures [D]. Beijing: Beijing University of Chemical Technology, 2010..
[28]  Li Hua (李华), Qian Zhi(钱智), Yao Yuan(姚远), Guo Kai(郭锴). Removal of H2S by N-methyldiethanolamine and diethanolamine in a rotating packed bed [J]. Journal of Beijing University of Chemical Technology(北京化工大学学报:自然科学版), 2010, 37(5): 21-24.

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