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首页> 外文期刊>The Korean journal of chemical engineering >Mass transfer coefficient of slug flow for organic solvent-aqueous system in a microreactor
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Mass transfer coefficient of slug flow for organic solvent-aqueous system in a microreactor

机译:微反应器中有机溶剂-水系统的团状流传质系数

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摘要

Application of microreactor systems could be the next break-through in the intensification of chemical and biochemical processes. The common flow regime for organic solvent-aqueous phase two-phase systems is a segmented flow. Internal circulations in segments cause high mass transfer and conversion. We analyzed slug flow in seven systems of organic solvents and aqueous phase. To analyze how slug lengths in tested systems depend on linear velocity and physical and chemical properties of used organic solvents, regression models were proposed. It was shown that models based on linearization of approximation by potentials give low correlation for slug length prediction; however, application of an essential nonlinear model of multiple layer perceptron (MLP) neural network gives high correlation with R-2=0.9. General sensitivity analysis was applied for the MLP neural network model, which showed that 80% of variance in slug length for the both phases is accounted for the viscosity and density of the organic phases; 10% is accounted by surface tension of the organic phase, while molecular masses and flow rates each account for 5%. For defined geometry of microreactor, mass transfer has been determined by carrying out the neutralization experiment with NaOH where acetic acid diffuses from organic phase (hexane) into aqueous phase. Estimated mass transfer coefficients were in the range k(L)a=4,652-1,9807 h(-1).
机译:微反应器系统的应用可能是化学和生化过程密集化的下一个突破。有机溶剂-水相两相系统的常见流态是分段流。段内的内部循环导致高质量的传递和转化。我们分析了七种有机溶剂和水相系统中的团状流。为了分析测试系统中的段塞长度如何取决于线速度以及所用有机溶剂的物理和化学性质,提出了回归模型。结果表明,基于电势近似线性化的模型对于弹头长度预测的相关性很低。然而,多层感知器(MLP)神经网络的基本非线性模型的应用与R-2 = 0.9具有高度相关性。对MLP神经网络模型进行了一般敏感性分析,结果表明,两相的段塞长度的80%的变化是有机相的粘度和密度的原因。有机相的表面张力占10%,而分子质量和流速各占5%。对于确定的微反应器几何形状,已经通过用NaOH中和实验进行了传质,其中乙酸从有机相(己烷)扩散到水相中。估计的传质系数在k(L)a = 4,652-1,9807 h(-1)范围内。

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