首页> 外文期刊>Journal of Colloid and Interface Science >ADSORPTION, DESORPTION, AND EXCHANGE KINETICS OF MIXTURES ON PLANAR SURFACES
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ADSORPTION, DESORPTION, AND EXCHANGE KINETICS OF MIXTURES ON PLANAR SURFACES

机译:混合物在平面上的吸附,脱附和交换动力学

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A theory for the adsorption, desorption, and exchange kinetics of a multicomponent mixture onto planar surfaces for kinetic-diffusion-controlled models has been developed. Equations were derived to calculate (1) the rate constant for adsorption processes, (2) the effective coefficients of diffusion for the various mixture components, and (3) the time needed to attain the equilibrium states for the adsorption processes of mixtures by using the adsorption, desorption, and exchange kinetic data with associative polymers of different molecular weights at different adsorbate concentrations. It is shown that the adsorption kinetics for mixtures over a wide range of concentrations are governed by (I) the kinetic adsorption at the interface, (II) the kinetic adsorption at the interfaces as well as simultaneous diffusion in the adsorbed layer, and/or (III) diffusion in the adsorbed layer. Adsorption, desorption, and exchange kinetics for mixtures of water-soluble associative polymers with different molecular weights on a crystal of titanium dioxide [TiO2(001)] were studied by ellipsometry. The existence of regimes (I), (II), and (III) of adsorption and exchange kinetics for polymer mixtures is justified by using the experimental data for the adsorption and exchange kinetics of water-soluble associative polymers with different molecular weights. It is shown that the rate of the exchange kinetics of polymer mixtures for short times is increased or decreased depending on the values of effective coefficients of diffusion and adsorption isotherms of mixture components. (C) 1996 Academic Press, Inc. [References: 37]
机译:对于动力学扩散控制模型,已经开发了多组分混合物在平面上的吸附,解吸和交换动力学的理论。得出方程来计算(1)吸附过程的速率常数,(2)各种混合物组分的有效扩散系数,和(3)通过使用以下公式达到混合物吸附过程的平衡状态所需的时间。与不同分子量的缔合聚合物在不同吸附物浓度下的吸附,解吸和交换动力学数据。结果表明,混合物在宽浓度范围内的吸附动力学受(I)界面处的动态吸附,(II)界面处的动态吸附以及同时在吸附层中的扩散和/或(Ⅲ)在吸附层中的扩散。用椭偏光度法研究了不同分子量的水溶性缔合聚合物在二氧化钛[TiO2(001)]晶体上的吸附,解吸和交换动力学。通过使用具有不同分子量的水溶性缔合聚合物的吸附和交换动力学的实验数据,证明了聚合物混合物的吸附和交换动力学的方案(I),(II)和(III)的存在是合理的。结果表明,短时间内聚合物混合物的交换动力学速率根据混合物组分的有效扩散系数和吸附等温线的值而增加或降低。 (C)1996 Academic Press,Inc. [参考:37]

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