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Three-dimensional parallelization of microfluidic droplet generators for a litre per hour volume production of single emulsions

机译:微流液滴产生器的三维并行化,每小时可生产一升的单乳液

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This paper looks at the design, fabrication and characterization of stackabte microfluidic emulsion generators, with coefficients of variation as low as ~6% and with production rates as high as ~1 L h~(-1). This work reports the highest throughput reported in the literature for a microfluidic device with simultaneous operation of liquid-liquid droplet generators. The device was achieved by stacking several layers of 128 flow-focusing droplet generators, organized in a circular array. These layers are interconnected via through-holes and fed with designated fractal distribution networks. The proposed layers were milled on poly(methylmethacrylate) (PMMA) sheets and the stack was thermo-compression bonded to create a three-dimensional device with a high density of generators and an integrated hydraulic manifold. The effect of stacking multiple layers was studied and the results show that fabrication accuracy has a greater impact on the dispersity of the emulsion than the addition of more layers to the stack. Particle crystallization of drugs was also demonstrated as a possible application of this technology in industry.
机译:本文着眼于堆叠式微流乳化液发生器的设计,制造和表征,其变异系数低至〜6%,生产率高达〜1 L h〜(-1)。这项工作报告了文献中报道的同时操作液-液滴发生器的微流体装置的最高通量。该装置是通过堆叠128个以流水线排列的流聚焦液滴生成器的多层来实现的。这些层通过通孔互连,并馈入指定的分形分布网络。将拟议的层在聚甲基丙烯酸甲酯(PMMA)板上研磨,然后对叠层进行热压粘合,以创建具有高密度发生器和集成液压歧管的三维装置。研究了多层堆叠的效果,结果表明,与向堆叠中添加更多层相比,制造精度对乳液的分散性影响更大。药物的颗粒结晶也被证明是该技术在工业中的可能应用。

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