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EVALUATION OF A PREDICTIVE MODEL FOR AIR/SURFACE ADSORPTION EQUILIBRIUM CONSTANTS AND ENTHALPIES

机译:空气/表面吸附常数和焓的预测模型的评价。

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摘要

A model used to predict equilibrium adsorption to surfaces using a poly-parameter linear free-energy relationship as well as an empirical model used to predict enthalpies of adsorption of volatile compounds were evaluated with new experimental data to cover semivolatile compounds and a larger variability of compound classes. Equilibrium adsorption constants on a quartz surface ranging over seven orders of magnitude were measured for 142 compounds, and enthalpies of adsorption on a quartz surface from −33.7 to −99.8 kJ/mol were measured for 76 compounds. Agreement between experimental and predicted data was within a factor of two (82.1%) or three (100.0%) for the equilibrium adsorption constants and within 20% for the enthalpy of adsorption values. Thus, the scatter in the validation data sets reported here were practically the same as that for the calibration data sets used to derive the models. The few outliers that we identified in the prediction of equilibrium adsorption constants likely are caused by either shortcomings of the reported sorbate parameters or the occurrence of chemical speciation in the water layer on the surface of the quartz.
机译:使用新的实验数据评估了使用多参数线性自由能关系预测表面平衡吸附的模型以及预测挥发性化合物吸附焓的经验模型,以涵盖半挥发性化合物和较大的化合物变异性。类。测量了142种化合物在石英表面上的平衡吸附常数,范围超过七个数量级,并且测量了76种化合物在石英表面上的吸附焓为-33.7至-99.8 kJ / mol。实验数据与预测数据之间的一致性为平衡吸附常数的两倍(82.1%)或三(100.0%),而吸附值的焓为20%之内。因此,此处报告的验证数据集中的散布实际上与用于导出模型的校准数据集中的散布相同。我们在预测平衡吸附常数时发现的一些异常值可能是由于所报告的吸附物参数的缺陷或石英表面水层中化学形态的出现所致。

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