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Coupled transport of cyanide ions through liquid membranes

机译:氰离子通过液膜的耦合传输

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In this study, the transport kinetics of coupled transport of cyanide ions through liquid membrane (trichloromethane) containing tetraoctylammonium chloride as a carrier was examined at different temperatures. The kinetics of cyanide transport could be analyzed in the formalism of two consecutive irreversible first order reactions. The influence of the temperature on the kinetic parameters (k(1d), k(2m), k(2a), R-m(max), t(max), J(d)(max), J(a)(max)) has been established. For maximum membrane entrance and exit fluxes, J(d)(max) and Jamax, the activation energies were found from the slopes of the two linear relationships: 9.02 kcal/mol and 11.20 kcal/mol, respectively. The values of the found activation energy indicate that in the first step the transport process of cyanide ions through liquid membrane is difussional controlled, whereas in the second step it is most probably controlled by species diffusion and the rate of the reversible chemical reaction. [References: 19]
机译:在这项研究中,在不同温度下研究了氰化物离子通过含四辛基氯化铵作为载体的液膜(三氯甲烷)的耦合迁移动力学。氰化物转运的动力学可以用两个连续的不可逆的一级反应的形式来分析。温度对动力学参数(k(1d),k(2m),k(2a),Rm(max),t(max),J(d)(max),J(a)(max)的影响) 已经建立。对于最大的膜入口和出口通量J(d)(max)和Jamax,从两个线性关系的斜率分别找到了活化能:9.02 kcal / mol和11.20 kcal / mol。所发现的活化能的值表明,第一步是氰离子通过液膜的传输过程是扩散控制的,而第二步中,很有可能是通过物质扩散和可逆化学反应的速率来控制的。 [参考:19]

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