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微通道内气液传质特性 被引量:8

Mass transfer characteristics for gas-liquid two-phase flow in microchannels
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摘要 研究了竖直放置Y形100μm×400μm和T形100μm×800μm两种矩形截面微通道内CO_2-蒸馏水气液两相流的质量传递行为,计算了体系的液相侧体积传质系数k_La。在T形100μm×800μm矩形截面微通道内,当蒸馏水表观速率J_L>0.03 m/s时,CO_2-蒸馏水气液两相流的液相侧体积传质系数k_La可达0.024~26.8 s^(-1),比常规尺度气-液接触设备至少提高了2个数量级。微通道中液相侧体积传质系数k_La同时受气液表观速率和气液两相流型的影响。在相同的气液两相流型下,k_La随气液表观速率的增大而增大,而对于不同的气液两相流型,液环流时k_La最大。结果表明微通道装置能显著强化传质。 研究了竖直放置Y形100μm×400μm和T形100μm×800μm两种矩形截面微通道内CO<sub>2</sub>-蒸馏水气液两相流的质量传递行为,计算了体系的液相侧体积传质系数k<sub>L</sub>a。在T形100μm×800μm矩形截面微通道内,当蒸馏水表观速率J<sub>L</sub>&gt;0.03 m/s时,CO<sub>2</sub>-蒸馏水气液两相流的液相侧体积传质系数k<sub>L</sub>a可达0.024~26.8 s<sup>-1</sup>,比常规尺度气-液接触设备至少提高了2个数量级。微通道中液相侧体积传质系数k<sub>L</sub>a同时受气液表观速率和气液两相流型的影响。在相同的气液两相流型下,k<sub>L</sub>a随气液表观速率的增大而增大,而对于不同的气液两相流型,液环流时k<sub>L</sub>a最大。结果表明微通道装置能显著强化传质。
出处 《化工进展》 EI CAS CSCD 北大核心 2011年第S2期95-98,共4页 Chemical Industry and Engineering Progress
基金 国家自然科学基金(20876107 20911130358) 化学工程国家重点实验室开放基金(SKL-ChE-08B06)
关键词 微通道 传质 气液两相流 液环流 过程强化 microchannel mass transfer gas-liquid two-phase flow annular flow process inten-sification
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参考文献15

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