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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Generation of highly uniform droplets using asymmetric microchannels fabricated on a single crystal silicon plate:Effect of emulsifier and oil types
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Generation of highly uniform droplets using asymmetric microchannels fabricated on a single crystal silicon plate:Effect of emulsifier and oil types

机译:使用在单晶硅板上制造的不对称微通道产生高度均匀的液滴:乳化剂和油类型的影响

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摘要

Uniform droplets of soybean oil,MCT (medium-chain fatty acid triglyceride) oil and n-tetradecane with a mean diameter of 26-29 mu m have been generated using a silicon 24 x 24 mm microchip consisting of 23,489 asymmetric microchannels fabricated by photolitography and deep-reactive ion etching.Each microchannel consisted of a circular 10-um diameter straight hole with a length of 70 mu m and a 50 x 10 mu m rectangular microslot with a depth of 30 mu m.At the constant oil flux of 10 L m~(-2) h~(-1),the percent of active channels increased with increasing the oil viscosity and ranged from 4% for n-tetradecane to 48% for soybean oil.The size distribution span for SDS (sodium dodecyl sulphate)- and Tween 20 (polyoxyethylene (20) sorbitan monolaurate)-stabilized soybean and MCT oil droplets was 0.21-022.The ability of asymmetric microchannels to generate monodisperse soybean oil droplets at the very low SDS concentration of 0.01 wt.% has been demonstrated.At the SDS concentration below the CMC,the generated droplets tend to attach to the plate surface,whereas at the higher SDS concentration they detach from the plate as soon as they are formed.The agreement between the experimental and CFD (Computational Fluid Dynamics) simulation results was excellent for soybean oil and the poorest for n-tetradecane.
机译:使用硅24 x 24 mm硅微芯片(由23,489个不对称微通道组成,该微通道由光刻技术制成),并用平均直径为26-29μm的大豆油,MCT(中链脂肪酸甘油三酸酯)油和正十四烷均匀滴。深度反应离子刻蚀:每个微通道由一个直径为10um的圆形直孔,一个长度为70μm的孔和一个50x10μm的矩形微缝隙,深度为30μm组成,在恒定的油流量下为10 L m〜(-2)h〜(-1),活性通道的百分比随油粘度的增加而增加,范围从正十四烷的4%到大豆油的48%.SDS(十二烷基硫酸钠)的尺寸分布范围)和吐温20(聚氧乙烯(20)脱水山梨糖醇单月桂酸酯)稳定的大豆油滴和MCT油滴为0.21-022。已证明不对称微通道在0.01%的极低SDS浓度下产生单分散大豆油滴的能力。在SDS浓度低于CMC时,生成的液滴倾向于附着在板表面,而在较高的SDS浓度下,它们一旦形成便会从板中脱离。实验结果与CFD(计算流体力学)模拟结果之间的一致性非常好和最贫穷的正十四烷。

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