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Sorption and partitioning parameters of benzotriazole compounds

机译:苯并三唑化合物的吸附和分配参数

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Benzotriazole compounds have major commercial applications as anticorrosive agents in automotive antifreeze and airplane deicer fluids. This study assesses the sorption of benzotriazole (BT), 5-methylbenzotriazole (MBT), and 5-chlorobenzotriazole (CBT) from aqueous solutions to four top soils. The concentration range of 10-500 mg 1(-1) was used with soils differing in total organic carbon content from 0.27 to 1.72%. Batch systems facilitated the equilibrium sorption with analysis by HPLC. The sorption of these compounds was as much as 60% by mass to a soil with 0.33% Org. C. The log octanol-water partition coefficients (log K-ow) were determined to be 1.23 for BT, 1.89 for MBT, and 2.17 for CBT. The relationship between the log of the sorption partition coefficient, log K-oc and log K-ow differed from previous correlations because hydrophobicity was not the only factor affecting sorption. These compounds have substantial permanent dipole moments as well as being hydrophobic. At high pH where CBT molecules approach their pK(a), sorption was approximately 50% less (by mass) than that of relatively non-ionized CBT molecules. (C) 2003 Elsevier B.V. All riahts reserved.
机译:苯并三唑化合物作为汽车防冻剂和飞机除冰剂液中的防腐剂具有重要的商业应用。这项研究评估了水溶液中苯并三唑(BT),5-甲基苯并三唑(MBT)和5-氯苯并三唑(CBT)对四种表层土壤的吸附。土壤的总有机碳含量在0.27%至1.72%之间,使用的浓度范围为10-500 mg 1(-1)。分批系统通过HPLC分析促进了平衡吸附。这些化合物在含0.33%Org的土壤上的吸附量高达60质量%。 C.对数辛醇-水分配系数(log K-ow)对于BT确定为1.23,对于MBT为1.89,对于CBT为2.17。吸附分配系数的对数,log K-oc和log K-ow之间的关系不同于以前的相关性,因为疏水性不是影响吸附的唯一因素。这些化合物具有相当大的永久偶极矩以及疏水性。在高pH下,CBT分子接近其pK(a),其吸附(质量)比相对未电离的CBT分子低约50%。 (C)2003 Elsevier B.V.保留所有权利。

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