Inorganic Chemicals Industry ›› 2019, Vol. 51 ›› Issue (9): 1-6.doi: 10.11962/1006-4990.2019-0171
• Reviews and Special Topics • Next Articles
Yu Haibin1,2,Wang Mengdi1,2(),Wu Wei2,Luo Jin2
Received:
2019-04-23
Online:
2019-09-10
Published:
2020-06-10
Contact:
Wang Mengdi
E-mail:wangmengdi0523@163.com
CLC Number:
Yu Haibin,Wang Mengdi,Wu Wei,Luo Jin. Research progress and prospect of preparation of catalytic materials by microreactor[J]. Inorganic Chemicals Industry, 2019, 51(9): 1-6.
[1] | Ju J X, Zeng C F, Zhang L X , et al. Development of the application of microchannel reactors in the synjournal of micro/nanoparticles[J]. Chemical Industry and Engineering Progress, 2006,25(2):152-158. |
[2] | DeMello A J . Control and detection of chemical reactions in micro-fluidic systems[J]. Nature, 2006,442:394-402. |
[3] | 陈光文, 袁权 . 微化工技术[J]. 化工学报, 2003,54(4):427-439. |
[4] | Phillips T W, Lignos I G, Maceiczyk R M , et al. Nanocrystal synjournal in microfluidic reactors:where next?[J]. Lab on a Chip, 2014,14(17):3172-3180. |
[5] | Xu C, Xie T L . Review of microfluidic liquid-liquid extractors[J]. Industrial & Engineering Chemistry Research, 2017,56(27):7593-7622. |
[6] | Kukard R S, Smith K J . Slurry-phase batch microreactor for hydro-conversion studies[J]. Energy & Fuels, 2015,29(8):5274-5281. |
[7] | Roberge D M, Ducry L, Bieler N , et al. Microreactor technology:a revolution for the fine chemical and pharmaceutical industries?[J]. Chemical Engineering & Technology, 2005,28(3):318-323. |
[8] | Schwarz J A, Contescu C, Contescu A . Methods for preparation of catalytic materials[J]. Chemical Reviews, 1995,95(3):477-510. |
[9] | 赵红, 徐晓敏, 徐建鸿 , 等. 微流控制备壳聚糖功能材料研究进展[J]. 化工学报, 2016,67(2):373-378. |
[10] | Elperin I T . Heat and mass transfer in opposing currents[J]. Journal of Engineering Physics, 1961,6(6):62-68. |
[11] | Xia Y, Xiong Y, Lim B , et al. Shape-controlled synjournal of metal nano-crystals:simple chemistry meets complex physics?[J]. Angewandte Chemie:International ed.in English, 2009,48(1):60-103. |
[12] |
Ghazal Tofighi, Abhijeet Gaur, Doronkin D E , et al. Microfiuidic synjournal of ultrasmall AuPd nanoparticles with a homogeneously mixed alloy structure in fast continuous flow for catalytic applica-tions[J]. Journal of Physical Chemistry C, 2018,122(3):1721-1731.
doi: 10.1021/acs.jpcc.7b11383 |
[13] | 魏开轩, 吴波, 王倩倩 , 等. 集束式对流微通道反应器制备超细MnO2粉体[J]. 中国粉体技术, 2018,24(6):14-18. |
[14] | Kumar D V R, Prasad B L V, Kulkarni A A . Impinging jet micro-mixer for flow synjournal of nanocrystalline MgO:role of mixing/im-pingement zone[J]. Industrial & Engineering Chemistry Research, 2013,52(49):17376-17382. |
[15] | Philipp Erni, Amal Elabbadi . Free impinging jet microreactors:co-ntrolling reactive flows via surface tension and fluid viscoelasti-city[J]. Langmuir:the ACS Journal of Surface and Colloids, 2013,29(25):7812-7824. |
[16] | 刘玉敏, 齐然, 张志昆 , 等. T型微通道和一锅混合法制备纳米二氧化硅影响因素研究[J]. 无机盐工业, 2018,50(12):37-40. |
[17] | Tsai S B, Ma H L . A Research on preparation and application of the monolithic catalyst with interconnecting pore structure[J]. Scienti- fic Reports, 2018,8(1):16605. |
[18] | Zhang Q C, Liu Z W, Zhu X H , et al. Application of micro-imping-ing stream reactors in the preparation of CuO/ZnO/Al2O3 catalysts for methanol synjournal[J]. Industrial & Engineering Chemistry Re- search, 2015,54(36):8874-8882. |
[19] | Wang J Y, Wang Y J, Luo G S , et al. Preparation of silica-alumina hollow spheres with a single surface holeby co-axial microchannel[J]. Chinese Journal of Chemical Engineering, 2014,22(11/12):1352-1356. |
[20] | Li J H, Yao H B, Wang Y J , et al. One-step preparation of Pd-SiO2 composite microspheres by the sol-gel process in a microchan- nel[J]. Industrial & Engineering Chemistry Research, 2014,53(26):10660-10666. |
[21] |
Wang D G, Zhu B K, Tao H C . Preparation of Fe3O4/MnOOH core- shell nanoparticles by a high-frequency impinging stream reactor[J]. Chinese Journal of Chemical Engineering, 2015,23:727-735.
doi: 10.1016/j.cjche.2014.10.020 |
[22] |
Latoh R, Asano Y, Furuya A ,el al.Preparation of food emulsion us-ing a membrane emulsification system[J]. Journal of Membrane Science, 1996,113(1):131-135.
doi: 10.1016/0376-7388(95)00227-8 |
[23] | Wang Y J, Xu D Q, Sun H T ,el al.Preparation of pseudoboehmite with a large pore volume and a large pore size by using a membrane-dispersion microstructured reactor through the reaction of CO2 and a NaAlO2 solution[J]. Industrial & Engineering Chemistry Resea-rch, 2011,50(7):3889-3894. |
[24] | Wan Y C, Liu Y B, Wang Y J , et al.Preparation of large-pore-volu-me gamma-alumina nanofibers with a narrow pore size distribution in a membrane dispersion microreactor[J]. Industrial & Engineer-ing Chemistry Research, 2017,56(31):8888-8894. |
[25] | Yao H B, Wang Y G, Luo G S . A size-controllable precipitation method to prepare CeO2 nanoparticles in a membrane dispersion microreactor[J]. Industrial & Engineering Chemistry Research, 2017,56(17):4993-4999. |
[26] | Wang J C, Fan M H, Wang Y J , et al. Preparation of In(OH)3 nano-rods and nanocubes and the effect on In2O3 particle size in the microreactor[J]. Industrial & Engineering Chemistry Research, 2017,56(23):6637-6644. |
[27] | Zhang T B, Lu Y C, Liu J Q , et al. Continuous ammonium silicofluo-ride ammonification for SiO2 nanoparticles preparation in a micro-chemical system[J]. Industrial & Engineering Chemistry Research, 2013,52(16):5757-5764. |
[28] | Huang C, Wang Y J, Luo G S . Preparation of highly dispersed and small-sized ZnO nanoparticles in a membrane dispersion microreac-tor and their photocatalytic degradation[J]. Industrial & Engineer-ing Chemistry Research, 2013,52(16):5683-5690. |
[29] | Visaveliya N, Köhler J M . Single-step microfiuidic synjournal of va-rious nonspherical polymer nanoparticles via in situ assembling:dominating role of polyelectrolytes molecules[J]. ACS Applied Materials & Interfaces, 2014,6(14):11254-11264. |
[30] | 赵畅, 马学虎, 兰忠 , 等. 微反应器内制备三水碳酸镁工艺研究[J]. 高校化学工程学报, 2018,32(5):1140-1146. |
[31] | Gambhire S, Patel N, Gambhire G , et al. A review on different micro-mixers and its micromixing within microchannel[J].Inrpessco In-ternational Journal of Current Engineering and Technology Special Issue-4, 2016(4):409-413. |
[32] | Sasmito A P, Kurnia J C, Mujumdar A S . Numerical evaluation of transport phenomena in a T-junction microreactor with coils of di-fferent configurations[J]. Industrial & Engineering Chemistry Re-search, 2012,51(4):1970-1980. |
[33] | Hao N, Nie Y, Zhang J X Y .Microfiuidic flow synjournal of funct-ional mesoporous silica nanofibers with tunable aspect ratios[J]. ACS Sustainable Chemistry & Engineering, 2018,6:1522-1526. |
[34] |
Yu L, Pan Y, Wang C , et al. A two-phase segmented microfluidic technique for one-step continuous versatile preparation of zeo-lites[J]. Chemical Engineering Journal, 2013,219:78-85.
doi: 10.1016/j.cej.2013.01.009 |
[35] |
Elvira K S, Casadevall i Solvas X, Wootton R C R , et al.The past,present and potential for microfluidic reactor technology in chemi-cal synjournal[J]. Nature Chemistry, 2013,5(11):905-915.
doi: 10.1038/NCHEM.1753 |
[36] |
Deng J, Zhang J, Wang K , et al. Microreaction technology for synthe-tic chemistry[J]. Chinese Journal of Chemistry, 2018,37(2):161-170.
doi: 10.1002/cjoc.v37.2 |
[37] | Charpentier J C . Modern chemical engineering in the framework of globalization,sustainability,and technical innovation[J]. Indust-rial & Engineering Chemistry Research, 2007,46:3465-3485. |
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