Flow distribution and ozonolysis in gas-liquid multichannel microreactors

被引:120
|
作者
Wada, Yasuhiro
Schmidt, Martin A.
Jensen, Klavs F. [1 ]
机构
[1] MIT, Dept Chem Engn, Cambridge, MA 02139 USA
[2] MIT, Microsyst Technol Labs, Cambridge, MA 02139 USA
关键词
D O I
10.1021/ie060893p
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Multichannel microreactors for gas-liquid reactions are designed and fabricated using silicon and Pyrex wafers. We perform oxidation of organic reagents by ozone (ozonolysis) in these microreactors motivated by the difficulty of handling ozone, its high reactivity, the potentially high selectivity for oxygenated products, and the reaction often being mass transfer limited. Pressure drop zones are included in the microreactors to achieve a uniform gas-liquid flow regime across the multiple channels. Flow visualization experiments show less than 3% variation in mass flow across the channel for a range of operating conditions. Microfabricated silicon posts are included in the channels as a means to increase mass transfer, and their effectiveness is evaluated by comparing conversion and selectivity to those obtained for microreactors without posts. Oxidations with ozone of phosphite, amine, and olefin as model compounds serve as case studies. In all cases, both conversion and selectivity are high, up to 100% at short contact times as low as 1 s.
引用
收藏
页码:8036 / 8042
页数:7
相关论文
共 50 条
  • [31] Flow Ozonolysis Using a Semipermeable Teflon AF-2400 Membrane To Effect Gas-Liquid Contact
    O'Brien, Matthew
    Baxendale, Ian R.
    Ley, Steven V.
    ORGANIC LETTERS, 2010, 12 (07) : 1596 - 1598
  • [32] Accelerated Organic Photoreactions in Flow Microreactors under Gas-Liquid Slug Flow Conditions Using N2 Gas as an Unreactive Substance
    Nakano, Momoe
    Morimoto, Tsumoru
    Noguchi, Jiro
    Tanimoto, Hiroki
    Mori, Hajime
    Tokumoto, Shin-ichi
    Koishi, Hideyuki
    Nishiyama, Yasuhiro
    Kakiuchi, Kiyomi
    BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 2019, 92 (09) : 1467 - 1473
  • [33] THE DISTRIBUTION OF DROP SIZE AND VELOCITY IN GAS-LIQUID ANNULAR-FLOW
    FORE, LB
    DUKLER, AE
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 1995, 21 (02) : 137 - 149
  • [34] Distribution of void fraction for gas-liquid slug flow in inclined tube
    Beijing Inst of Technology, Beijing, China
    Huagong Xuebao, 3 (367-371):
  • [35] Distribution of void fraction for gas-liquid slug flow in aninclined pipe
    XIA Guo-Dong1
    2 State Key Laboratory of Multiphase Flow in Power Engineering
    NuclearScienceandTechniques, 2001, (02) : 143 - 148
  • [36] Characteristics of flow and liquid distribution in a gas-liquid vortex separator with multi spiral arms
    Yao, Xiuying
    Zuo, Peng
    Lu, Chunxi
    E, Chenglin
    Liu, Mengxi
    PARTICUOLOGY, 2022, 68 : 101 - 113
  • [37] Spatial distribution of void fraction in the liquid slug in vertical Gas-Liquid slug flow
    Maldonado, Paul A. D.
    Rodrigues, Carolina C.
    Mancilla, Ernesto
    dos Santos, Eduardo N.
    da Fonseca Junior, Roberto
    Marcelino Neto, Moises A.
    da Silva, Marco J.
    Morales, Rigoberto E. M.
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2024, 151
  • [38] Liquid phase residence time distribution for gas-liquid flow in Kenics static mixer
    Keshav, Tirupati Reddy
    Somaraju, P.
    Kalyan, K.
    Saroha, A. K.
    Nigam, K. D. P.
    CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 2008, 47 (12) : 2275 - 2280
  • [39] Estimation of Gas-Liquid Slug Lengths for Parallelized T-shaped Microreactors
    Miyabayashi, Keisuke
    Tonomura, Osamu
    Taniguchi, Satoshi
    Hasebe, Shinji
    KAGAKU KOGAKU RONBUNSHU, 2015, 41 (04) : 246 - 252
  • [40] Multiphase Microreactors Based on Liquid-Liquid and Gas-Liquid Dispersions Stabilized by Colloidal Catalytic Particles
    Dedovets, Dmytro
    Li, Qingyuan
    Leclercq, Loic
    Nardello-Rataj, Veronique
    Leng, Jacques
    Zhao, Shuangliang
    Pera-Titus, Marc
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2022, 61 (04)