首页> 外文期刊>Journal of the American Chemical Society >KINETIC VERSUS DIFFUSION CONTROL IN CARRIER-MEDIATED COTRANSPORT OF ALKALI CATIONS THROUGH SUPPORTED LIQUID MEMBRANES
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KINETIC VERSUS DIFFUSION CONTROL IN CARRIER-MEDIATED COTRANSPORT OF ALKALI CATIONS THROUGH SUPPORTED LIQUID MEMBRANES

机译:载体介导的碱金属在载体介导的共运输中的动力学与扩散控制

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摘要

Usually, the rate-limiting step of alkali cation transport through supported liquid membranes (SLM) mediated by neutral carriers is the diffusion of the carrier cation complex through the membrane. However, in this study, it is demonstrated that some macrocyclic carriers like calix[4]arene crown ethers and calixspherands show such slow kinetics of decomplexation that the release of salt from the membrane strongly affects the transport rates. The influence of rates of decomplexation on alkali cation transport can be described by a simple mathematical model. Data for the rate-limiting steps in the transport process have been obtained from maximum fluxes, lag-time measurements, temperature variation, and membrane permeation experiments with dyes. The relative contributions of diffusive and kinetic resistances inside the SLM were determined by variation of the membrane thickness. When kinetics of release are relatively slow, the transport selectivity (K+/Na+) is lower than in the transport regime of diffusion limitation. [References: 37]
机译:通常,碱阳离子通过中性载体介导的通过支撑液膜(SLM)传输的限速步骤是载体阳离子络合物通过膜的扩散。但是,在这项研究中,证明了某些大环载体,例如杯[4]亚芳基冠醚和杯体,显示出如此缓慢的分解动力学,以至于盐从膜中的释放强烈影响了传输速率。可以通过简单的数学模型描述解配合速率对碱金属阳离子迁移的影响。从最大通量,滞后时间测量,温度变化和染料的膜渗透实验获得了运输过程中限速步骤的数据。 SLM内部的扩散阻力和动力学阻力的相对贡献是通过改变膜厚度来确定的。当释放动力学相对较慢时,传输选择性(K + / Na +)低于扩散限制的传输方式。 [参考:37]

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