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LASER TEMPERATURE JUMP RELAXATION MEASUREMENTS OF ADSORPTION DESORPTION KINETICS AT LIQUID SOLID INTERFACES

机译:固体界面上吸附脱附动力学的激光温度跳跃松弛测量

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The iodine laser temperature jump method is used to study adsorption/desorption kinetics at a methylated silica/solution interface. A suspension of C1-derivatized fumed silica is used for the kinetic measurements. The colloidal silica does not significantly change the attenuation of near-IR radiation from the iodine laser and allows the surface site concentration to be varied so that adsorption and desorption rates can be determined. The temperature jump relaxation method was used to investigate the effect of electrolyte on adsorption of a charged solute (ANS) on a C1 silica surface. Adsorption equilibrium conditions were optimized to observe a maximum relaxation signal. Without electrolyte, the relaxation signal is biexponential, which is also reflected in a broad chromatographic peak shape and a two-site sorption isotherm. When electrolyte is added, the relaxation signal is primarily single exponential, which agrees with the Linear adsorption isotherm. The adsorption rate and equilibrium constant were found to increase significantly with added electrolyte, which showed that adsorption kinetics can influence both band broadening and retention.
机译:碘激光温度跳跃法用于研究甲基化二氧化硅/溶液界面的吸附/解吸动力学。使用C1衍生的气相二氧化硅悬浮液进行动力学测量。胶态二氧化硅不会显着改变碘激光器发出的近红外辐射的衰减,并且可以改变表面部位的浓度,从而可以确定吸附和解吸速率。使用温度跃变松弛法研究电解质对C1二氧化硅表面上带电溶质(ANS)吸附的影响。优化吸附平衡条件以观察最大松弛信号。如果没有电解质,则弛豫信号是双指数的,这也反映在较宽的色谱峰形状和两点吸附等温线中。当添加电解质时,弛豫信号主要是单指数的,这与线性吸附等温线一致。发现吸附速率和平衡常数随电解质的添加而显着增加,这表明吸附动力学可以影响谱带的扩展和保留。

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