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Organic Cosolvent Effects on Sorption Kinetics of Hydrophobic Organic Chemicals by Organoclays

机译:有机助溶剂对有机粘土对疏水性有机化学物质吸附动力学的影响

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摘要

Data obtained from batch kinetics sorption experiments for naphthalene and diuron using two organoclays [trimeth-ylphenylammonium (TMPA)-clay and benzyldimethyltet-radecylammonium (BDTDA)-clay] in aqueous and methanol-water systems were analyzed with a first-order one-site mass transfer model (OSMTM) to obtain kinetic parameters. The mass transfer coefficient (ε) exponentially decreased as the sorption coefficient (K_p) increased, and a log-linear increase in ε was observed with an increase in the volume fraction of cosolvent (f~c) in the system. Regression equations relating ε to f~c, measured in mixed solvents, could be extrapolated to f~c= 0 to obtain the coefficients in aqueous systems. The organic cosolvent effects on the sorption kinetics behavior of naphthalene and diuron depended on the sorbate structure, the cosolvent fraction, and the arrangement of the exchanged quaternary alkylammonium ions in montmorillonite-clay interlayers.
机译:使用一阶一点分析了在水和甲醇-水系统中使用两种有机粘土[三甲基-苯基苯基铵(TMPA)-粘土和苄基二甲基叔丁基-铵盐(BDTDA)-粘土]对萘和二氮杂进行分批动力学吸附实验的数据。传质模型(OSMTM)获得动力学参数。随着吸附系数(K_p)的增加,传质系数(ε)呈指数下降,并且随着体系中助溶剂体积分数(f〜c)的增加,观察到ε的对数线性增加。可以将在混合溶剂中测得的ε与f〜c的回归方程外推至f〜c = 0,以获得水性体系的系数。有机助溶剂对萘和杜伦的吸附动力学行为的影响取决于蒙脱土-粘土夹层中的吸附物结构,助溶剂级分和交换的季烷基铵离子的排列。

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