Please wait a minute...
材料导报  2024, Vol. 38 Issue (5): 22090187-8    https://doi.org/10.11896/cldb.22090187
  无机非金属及其复合材料 |
微通道萃取技术的研究进展
齐亚兵1,*, 贾宏磊2
1 西安建筑科技大学化学与化工学院,西安 710055
2 浙江先锋科技股份有限公司质保部,浙江 台州 317000
Research Advances of Matter Extraction Using Microchannels
QI Yabing1,*, JIA Honglei2
1 School of Chemistry and Chemical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China
2 Quality Assurance Department, Zhejiang Xianfeng Technologies Co., Ltd., Taizhou 317000, Zhejiang, China
下载:  全 文 ( PDF ) ( 14679KB ) 
输出:  BibTeX | EndNote (RIS)      
摘要 与传统的萃取器相比,微通道萃取器的表、界面效应更加明显,过程可控性更强;两相接触的相界面积更大,萃取过程达到相平衡所需的时间更短,萃取效率更高;设备高度集成,放大效应小,安全性更高。鉴于微通道反应器的诸多优点,近年来其在萃取领域引起了学者的广泛关注。本文介绍了微通道反应器的微混合构件类型及微通道内流体流型,综述了微通道萃取技术的研究进展,分析了微通道萃取技术存在的问题,展望了微通道萃取技术的发展方向,以期为相关学者的后续研究工作提供方向和指引。
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
齐亚兵
贾宏磊
关键词:  微通道  多相流  微混合  微流动  微萃取    
Abstract: Compared to traditional extractor, microchannel extractor has more obvious surface/interfacial effect, stronger process controllability, larger interfacial area, shorter phase equilibrium time, higher extraction efficiency, higher equipment integration, smaller scale-up effect and higher security. It has aroused widespread concern about extraction in microchannels due to these advantages. Mixed microstructure and flow patterns of microchannel extractors are introduced firstly. Then, research advances of extraction in mircochannels are reviewed. Furthermore, the existing problems of extraction in mircochannels are analyzed. Finally, the development trends of extraction in mircochannels are discussed. It can provide direction and guidance for the subsequent research.
Key words:  microchannels    multi-phase flow    micro-mixing    micro flows    micro-extraction
出版日期:  2024-03-10      发布日期:  2024-03-18
ZTFLH:  TQ021.4  
基金资助: 西安市碑林区科技计划项目(GX2323);西安建筑科技大学人才科技基金(RC1714);西安建筑科技大学青年科技基金(QN1509);西安建筑科技大学大学生创新创业训练计划项目(X2022189)
通讯作者:  *齐亚兵,西安建筑科技大学化学与化工学院讲师。2006年本科毕业于长安大学水利与环境学院,2009年和2013年分别在四川大学化工学院获得硕士和博士学位。2013年8月进入陕西化工研究院有限公司工作,2014年5月调入西安建筑科技大学应用化学系任教。目前主要从事传质与分离技术、水处理技术等研究工作。近年来在SCI、EI和中文核心期刊发表论文40余篇。qiyabing123@163.com   
引用本文:    
齐亚兵, 贾宏磊. 微通道萃取技术的研究进展[J]. 材料导报, 2024, 38(5): 22090187-8.
QI Yabing, JIA Honglei. Research Advances of Matter Extraction Using Microchannels. Materials Reports, 2024, 38(5): 22090187-8.
链接本文:  
https://www.mater-rep.com/CN/10.11896/cldb.22090187  或          https://www.mater-rep.com/CN/Y2024/V38/I5/22090187
1 Wang Q Q. Study on the application of a clustered countercurrent-flow micro-channel reaction in liquid-liquid extraction. Master's Thesis, Beijing University of Chemical Technology, China, 2018(in Chinese).
王倩倩. 集束式对流微通道反应器在液液萃取中的应用研究. 硕士学位论文, 北京化工大学, 2018.
2 Suryawanshi P L, Gumfekar S P, Bhanvase B A, et al. Chemical Engineering Science, 2018, 189, 431.
3 Dominguez M I, Centeno M A, Martinez T M, et al. Chemical Engineering Research and Design, 2021, 171, 13.
4 Zhang H, Yu Z Y, Su Y H. Chemical Industry and Engineering Progress, 2020, 39(12), 4908(in Chinese).
张红, 余肇誉, 苏远海. 化工进展, 2020, 39(12), 4908.
5 Luo G S, Wang K, Xu J H, et al. Scientia Sinica Chimica, 2014, 44(9), 1404(in Chinese).
骆广生, 王凯, 徐建鸿, 等. 中国科学:化学, 2014, 44(9), 1404.
6 Liu Z L, Zhang P F. Chemical Industry and Engineering Progress, 2016, 35(1), 10(in Chinese).
刘兆利, 张鹏飞. 化工进展, 2016, 35(1), 10.
7 Wang K, Li L T, Xie P, et al. Reaction Chemistry & Engineering, 2017, 2(5), 611.
8 Ciceri D, Perera J M, Stevens G W. Journal of Chemical Technology and Biotechnology, 2014, 89, 771.
9 Wang K, Luo G S. Chemical Engineering Science, 2017, 169, 18.
10 Sattari-Najafabadi M, Esfahany M N, Wu Z, et al. Chemical Engineering Journal, 2017, 322, 328.
11 Yagodnisyna A A, Kovalevab A V, Bilsky A V. Chemical Engineering Research and Design, 2020, 153, 391.
12 Matsuoka A, Mae K. Chemical Engineering & Processing: Process Intensification, 2021, 160, 108297.
13 Yagodnitsyna A A, Kovalev A V, Bilsky A V. Chemical Engineering Journal, 2016, 303, 547.
14 Jovanović J, Rebrov E V, Nijhuis T A, et al. Industrial & Engineering Chemistry Research, 2012, 51, 1015.
15 Kashid M, Kiwi-Minsker L. Chemical Engineering and Processing, 2011, 50, 972.
16 Tsaoulidis D, Angeli P. Chemical Engineering Journal, 2015, 262, 785.
17 Xu B J, Cai W F, Liu X L, et al. Chemical Engineering Research and Design, 2013, 91, 1203.
18 Sattari-Najafabadi M, Esfahany M N, Wu Z, et al. AIChE Journal, 2017, 63(11), 5019.
19 Ghaini A, Mescher A, Agar D W. Chemical Engineering Science, 2011, 66, 1168.
20 Tang J, Zhang X B, Cai W F, et al. Chemical Industry and Engineering Progress, 2013, 32(8), 1743(in Chinese).
唐静, 张旭斌, 蔡旺锋, 等. 化工进展, 2013, 32(8), 1743.
21 Plouffe P, Roberge D M, Sieber J, et al. Chemical Engineering Journal, 2016, 285, 605.
22 Le T, Xiao B Q, Ju S H, et al. Hydrometallurgy, 2019, 183, 79.
23 Xie W B, Zhang L B, Yang J Y, et al. Chemical Engineering & Proces-sing: Process Intensification, 2019, 143, 107562.
24 Jin N, Yue J, Zhao Y C, et al. Chemical Engineering Journal, 2021, 413, 127419.
25 Gürsel I V, Kurt S K, Adlders J, et al. Chemical Engineering Journal, 2016, 283, 855.
26 Zhang L H, Hessel V, Peng J H, et al. Chemical Engineering Journal, 2017, 307, 1.
27 Susanti I, Winkelman J G M, Schuur B, et al. Industrial & Engineering Chemistry Research, 2016, 55, 4691.
28 Xie T L, Chen M X, Xu C, et al. Chemical Engineering Journal, 2019, 356, 382.
29 Zhang L H, Hessel V, Peng J H. Chemical Engineering Journal, 2018, 332, 131.
30 Cheng K P. Flow/mixing characteristics and applications of countercurrent-flow microchannel reactors. Ph. D. Thesis, Beijing University of Chemical Technology, China, 2020(in Chinese).
程鵾鹏. 对流微通道反应器流动混合特性与应用研究. 博士学位论文, 北京化工大学, 2020.
31 Yin S H, Zhang L B, Peng J H, et al. Chemical Engineering and Processing, 2015, 91, 1.
32 Cao Z, Wu Z, Sunden B. Chemical Engineering Journal, 2018, 344, 604.
33 Liu C. Study on Interfacial dynamics for aqueous glycerol solution/ionic liquid two-phase flow in microchannels. Master's Thesis, Tianjin University, China, 2018(in Chinese).
刘偲. 微通道内离子液体-甘油水溶液两相界面动力学的研究. 硕士学位论文, 天津大学, 2018.
34 Darekar M, Sen N, Singh K K, et al. Hydrometallurgy, 2014, 144-145, 54.
35 龙威, 王继尧, 陈娅君, 等. 中国专利, CN209451369U, 2019.
36 Marsousi S, Karimi-sabet J, Moosavian M A, et al. Chemical Enginee-ring Journal, 2019, 356, 492.
37 Wang Y B, Li J, Jin Y, et al. Separation and Purification Technology, 2018, 207, 158.
38 Zhang J W, Tian X H, Kuang C J. Journal of Chemical Engineering of Chinese Universities, 2013, 27(6), 952(in Chinese).
张建文, 田小花, 况春江. 高校化学工程学报, 2013, 27(6), 952.
39 Ma R, Fan C X, Luo J H, et al. Chemical Industry and Engineering Progress, 2020, 39(8), 3007(in Chinese).
马睿, 范椿欣, 罗建洪, 等. 化工进展, 2020, 39(8), 3007.
40 Ma R, Fan C X, Wang Y B, et al. Chemical Engineering & Processing: Process Intensification, 2020, 151, 107916.
41 Cao Y, Li J, Jin Y, et al. Chinese Journal of Chemical Engineering, 2019, 27, 2937.
42 王贵超, 陈颂英, 孙逊, 等. 中国专利, CN110339593A, 2019.
43 Liu X L, Li X T, Ju S H, et al. Precious Metals, 2020, 41(S1), 98(in Chinese).
刘晓玲, 李熙腾, 巨少华, 等. 贵金属, 2020, 41(S1), 98.
44 Kolar E, Catthoor R P R, Kriel F H, et al. Chemical Engineering Science, 2016, 148, 212.
45 Cui K H, Huang K. Separation and Purification Technology, 2021, 277, 119401.
46 Chen Z, Wang W T, Sang F N, et al. Separation and Purifification Technology, 2017, 174, 352.
47 He Y, Pei J N, Srinivasakannan C, et al. Hydrometallurgy, 2018, 179, 175.
48 Sattari-najafabadi M, Esfahany M N. Chemical Engineering & Proces-sing: Process Intensification, 2020, 157, 108156.
49 Yin S H, Chen K H, Srinivasakannan C, et al. Hydrometallurgy, 2018, 175, 266.
50 Zhou A, Li X T, Li X P, et al. Chemical Industry and Engineering Progress, 2019, 38(5), 2093(in Chinese).
周澳, 李熙腾, 李鑫培, 等. 化工进展, 2019, 38(5), 2093.
51 Yamamoto M, Taguchi S, Sato S, et al. Journal of Separation Science, 2015, 38, 1807.
52 Hou H L, Jing Y, Wang Y, et al. Journal of Rare Earths, 2015, 33(10), 1114.
53 Abbasi A, Rahbar-Kelishami A, Ghasemi M J. Journal of Rare Earths, 2018, 36, 1198.
54 Jiang F, Pei J N, Yin S H, et al. Minerals Engineering, 2018, 127, 296.
55 Liu Y, Zhang C, Wu K J, et al. Journal of Chemical Engineering of Chinese Universities, 2017, 31(3), 530(in Chinese).
刘妍, 张宸, 吴可君, 等. 高校化学工程学报, 2017, 31(3), 530.
56 Cheng Y F, Zhang L J, Zhang W, et al. Chemical Industry and Engineering, 2021, 38(2), 55(in Chinese).
程曜峰, 张丽娟, 张炜, 等. 化学工业与工程, 2021, 38(2), 55.
57 Abraham E, Sulochana G N M, Soundarajan B, et al. Industrial & Engineering Chemistry Research, 2017, 56, 10845.
58 Luo Q, Li S W, Guo X Q, et al. Journal of Chemical Engineering of Chinese Universities, 2014, 28(3), 524(in Chinese).
罗强, 李少伟, 郭绪强, 等. 高校化学工程学报, 2014, 28(3), 524.
59 Assmann N, von Rohr P R. Chemical Engineering and Processing, 2011, 50, 822.
60 Xie T L, Liu X G, Xu C, et al. Chemical Engineering and Processing, 2017, 120, 9.
61 Sattari-Najafabadi M, Esfahany M N. Chemical Engineering and Proces-sing, 2017, 117, 9.
[1] 赵楠, 刘鹏, 王林, 林书行, 李昊阳. 回转窑中回收炉气与煤粉混合燃烧的数值模拟[J]. 材料导报, 2024, 38(16): 23040062-6.
[2] 郑伍魁, 赵悦瑶, 王雅晨, 李辉. 用于泡沫混凝土制备的静态混合器模拟研究[J]. 材料导报, 2024, 38(15): 23010061-8.
[3] 郭俊江,朱香平,许彦涛,曹伟伟,邹永星,陆敏,彭波,司金海,郭海涛. 原子层沉积微通道板的研究进展[J]. 材料导报, 2020, 34(3): 3080-3089.
[1] Yanzhen WANG, Mingming CHEN, Chengyang WANG. Preparation and Electrochemical Properties Characterization of High-rate SiO2/C Composite Materials[J]. Materials Reports, 2018, 32(3): 357 -361 .
[2] Yimeng XIA, Shuai WU, Feng TAN, Wei LI, Qingmao WEI, Chungang MIN, Xikun YANG. Effect of Anionic Groups of Cobalt Salt on the Electrocatalytic Activity of Co-N-C Catalysts[J]. Materials Reports, 2018, 32(3): 362 -367 .
[3] Qingshun GUAN,Jian LI,Ruyuan SONG,Zhaoyang XU,Weibing WU,Yi JING,Hongqi DAI,Guigan FANG. A Survey on Preparation and Application of Aerogels Based on Nanomaterials[J]. Materials Reports, 2018, 32(3): 384 -390 .
[4] Lijing YANG,Zhengxian LI,Chunliang HUANG,Pei WANG,Jianhua YAO. Producing Hard Material Coatings by Laser-assisted Cold Spray:a Technological Review[J]. Materials Reports, 2018, 32(3): 412 -417 .
[5] Zhiqiang QIAN,Zhijian WU,Shidong WANG,Huifang ZHANG,Haining LIU,Xiushen YE,Quan LI. Research Progress in Preparation of Superhydrophobic Coatings on Magnesium Alloys and Its Application[J]. Materials Reports, 2018, 32(1): 102 -109 .
[6] Wen XI,Zheng CHEN,Shi HU. Research Progress of Deformation Induced Localized Solid-state Amorphization in Nanocrystalline Materials[J]. Materials Reports, 2018, 32(1): 116 -121 .
[7] Xing LIANG, Guohua GAO, Guangming WU. Research Development of Vanadium Oxide Serving as Cathode Materials for Lithium Ion Batteries[J]. Materials Reports, 2018, 32(1): 12 -33 .
[8] Hao ZHANG,Yongde HUANG,Yue GUO,Qingsong LU. Technological and Process Advances in Robotic Friction Stir Welding[J]. Materials Reports, 2018, 32(1): 128 -134 .
[9] Laima LUO, Mengyao XU, Xiang ZAN, Xiaoyong ZHU, Ping LI, Jigui CHENG, Yucheng WU. Progress in Irradiation Damage of Tungsten and Tungsten AlloysUnder Different Irradiation Particles[J]. Materials Reports, 2018, 32(1): 41 -46 .
[10] Fengsen MA,Yan YU,Jie ZHANG,Haibo CHEN. A State-of-the-art Review of Cytotoxicity Evaluation of Biomaterials[J]. Materials Reports, 2018, 32(1): 76 -85 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed