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Determination of mass transfer coefficient for continuous removal of cadmium by emulsion liquid membrane in a modified rotating disc contactor

机译:改进的转盘接触器中乳状液膜连续去除镉的传质系数的确定

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Based on our earlier proposed model, the mass transfer characteristics in a modified rotating disc contactor (MRDC) for continuous removal of cadmium by emulsion liquid membrane (ELM) were investigated. The overall mass transfer coefficient (K-oc) in the water and oil layers at the external interface of emulsion drop was calculated using the model. Unlike the classical two-film theory, the mass transfer resistance in the interfacial film (1/K-int) between the water and oil layers could not be ignored due to the effect of surfactant. As a result, the overall mass transfer resistance (1/K-oc) was composed of the mass transfer resistances in the water layer (1/k(M)), the interfacial film (1/K-int), and the oil layer (1/k(E)). The 1/K-int increased significantly with the molecular weight and the concentration of the surfactant. The effects of different experimental conditions on the mass transfer rate of Cd removal were also studied, respectively. The results showed that the increase in rotating speed and paddle width could increase the turbulence which led to the increase in the K-oc, the mass transfer coefficient (K-int) in the interfacial film, and specific interfacial area (a). Flow ratio mainly affected the a, while total flow markedly influenced the K-oc and the K-int. The variables of extractant concentration, pH in feed solution, and sulfuric acid concentration in internal phase primarily influenced the partition equilibriums between the phases. Finally, dimensionless correlations were calculated to estimate the K-oc and the K-int with the AAREs of 14.2% and 13.3%, respectively. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于我们较早提出的模型,研究了在乳化液膜(ELM)连续去除镉的改进型转盘接触器(MRDC)中的传质特性。使用该模型计算乳液滴外部界面处水和油层中的总传质系数(K-oc)。与经典的两层膜理论不同,由于表面活性剂的作用,水和油层之间的界面膜(1 / K-int)中的传质阻力无法忽略。结果,总传质阻力(1 / K-oc)由水层(1 / k(M)),界面膜(1 / K-int)和油中的传质阻力组成层(1 / k(E))。 1 / K-int随表面活性剂的分子量和浓度显着增加。还分别研究了不同实验条件对除镉传质速率的影响。结果表明,转速和桨叶宽度的增加会增加湍流,从而导致K-oc,界面膜中的传质系数(K-int)和特定界面面积(a)增大。流量比主要影响a,而总流量则显着影响K-oc和K-int。萃取剂浓度,进料溶液中的pH值和内相中硫酸浓度的变量主要影响相之间的分配平衡。最后,计算了无量纲相关性以估计K-oc和K-int,其AARE分别为14.2%和13.3%。 (C)2016 Elsevier B.V.保留所有权利。

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