详细信息

微通道并行模块化设计制造及规模化制备功能材料    

Modularized microchannel parallelization design and fabrication for mass production of functional materials

文献类型:期刊文献

中文题名:微通道并行模块化设计制造及规模化制备功能材料

英文题名:Modularized microchannel parallelization design and fabrication for mass production of functional materials

作者:韩腾腾[1];张莉[1];宣晋[1];董政[1];徐宏[1]

机构:[1]华东理工大学机械与动力工程学院化学工程联合国家重点实验室,上海200237

年份:2017

卷号:36

期号:B11

起止页码:51

中文期刊名:化工进展

外文期刊名:Chemical Industry and Engineering Progress

收录:CSTPCD;;Scopus;北大核心:【北大核心2014】;CSCD:【CSCD2017_2018】;

基金:上海市科学技术委员会资助材料基因组工程研究院项目(16DZ2260604)

语种:中文

中文关键词:液滴微流控;微通道并行;放大;模块化设计;功能材料

外文关键词:drop-microfluidics; microchannel parallelization; scale-up; modularization designfunctional materials

摘要:液滴微流控技术可控制备功能微粒材料目前一直局限于实验室规模产量,制约着规模化的产业应用。本文基于微通道并行概念,以数量放大为基本原则,设计了八通道并行的微流控放大模块,模块由位于不同平面的两相流体的分配功能区和液滴制备功能区构建组合而成。借助激光雕刻技术以PMMA作为基板材料进行加工制造,实现了规模化制备均匀液滴的目的。同时研究了流速控制对各个通道液滴制备过程的影响,分析了微通道阵列由于流体分配关键问题所产生的放大效应。两种通道阵列形式对比实验表明,环形阵列制备出液滴的均匀性比线性阵列提高近42.4%,主要得益于完全对称的环形阵列减小了结构性因素对流体分配性能的影响。并借助环形并行模块平台大规模制备了具有广阔应用前景的壳聚糖微球,平均粒径为540.59μm,CV值为2.73%,并行放大模块在提升产量的同时确保了微球的高单分散性。
Advanced material synthesized from microfluidic technology has been largely restrained into the scale of laboratory study, hindering its large scale industrial application. Here, based on channel parallelization concept with numbering up principle, microIquidic large-scale module of eight channels was designed. The module consists of distribution layers for two phases and droplet generation layer under different planes. The module was fabricated with PMMA substrate using laser microfabrication engraving equipment, achieving the large-scale production of uniform droplets. The flow rates of two phases were investigated on the droplets formation of parallelized channels with scaling effect resulting from the significant problem of fluid distribution. Experimental comparison of two arrays showed the circular array with symmetrical arrangement improved the size uniformity of 42. 4% compared to the parallel array. Widely applied functional chitosan microspheres were also mass-synthesized with an average diameter of 540. 59/~m and a CV of 2. 73~. The throughput was largely improved while maintaining excellent uniformity compared to individual channel.

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