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Large-scale preparation of barium sulphate nanoparticles in a high-throughput tube-in-tube microchannel reactor

机译:在高通量管中微通道反应器中大规模制备硫酸钡纳米颗粒

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摘要

One method for increasing productivity of a microreactor is presented without demanding numbering-up processes by using a newly proposed microporous tube-in-tube microchannel reactor (MTMCR) with a high throughput of 9L/min. Barium sulphate nanoparticles with an average size of 37 nm and a narrow size distribution were successfully produced in MTMCR. The size of barium sulphate particles was strongly dependent on the flow rate of the reactants in the microchannel and high flow rate was beneficial for producing small particles. Furthermore, it was possible to control the average particle size in the range from 30 to 150nm by changing the reactant concentrations and the micropore size on the surface of the inner tube. The average particle size decreased by increasing the total flow rate and reactant concentrations or decreasing the micropore size. The dispersed-phase flow rate and mixing distance exhibited little effects on the particle size. The proposed microreactor concept was confirmed to be valid and promising for the industrial production of nanoparticles.
机译:通过使用新提出的具有9L / min的高通量的微孔管中管微通道反应器(MTMCR),提出了一种无需增加编号过程即可提高微反应器生产率的方法。在MTMCR中成功生产出平均尺寸为37 nm,尺寸分布窄的硫酸钡纳米颗粒。硫酸钡颗粒的大小强烈取决于微通道中反应物的流速,高流速有利于生产小颗粒。此外,通过改变内管表面上的反应物浓度和微孔尺寸,可以将平均粒径控制在30nm至150nm的范围内。通过增加总流速和反应物浓度或减小微孔尺寸来减小平均粒径。分散相流速和混合距离对粒径几乎没有影响。所提出的微反应器概念被证实对于纳米颗粒的工业生产是有效的并且有希望。

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