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Retention behavior of hydrophobic organic chemicals as a function of temperature in soil leaching column chromatography

机译:Retention behavior of hydrophobic organic chemicals as a function of temperature in soil leaching column chromatography

摘要

To study the transport mechanism of hydrophobic organic chemicals (HOCs) and the energy change in soil/solvent system, a soil leaching column chromatographic (SLCC) experiment at an environmental temperature range of 20-40 degreesC was carried out, which utilized a reference soil (SP 14696) packed column and a methanol-water (1:4 by volume ratio) eluent. The transport process quickens with the increase of column temperature. The ratio of retention factors at 30 and 40 degreesC (k'(30)/k'(40)) ranged from 1.08 to 1.36. The lower enthalpy change of the solute transfer in SLCC (from eluent to soil) than in conventional reversed-phase liquid chromatography (e.g., from eluent to C-18) is consistent with the hypothesis that HOCs were dominantly and physically partitioned between solvent and soil. The results were also verified by the linear solvation energy relationships analysis. The chief factor controlling the retention was found to be the solute solvophobic partition, and the second important factor was the solute hydrogen-bond basicity, while the least important factors were the solute polarizability-dipolarity and hydrogen-bond acidity. With the increase of temperature, the contributions of the solute solvophobic partition and hydrogen-bond basicity gradually decrease, and the latter decreases faster than the former. (C) 2002 Elsevier Science Ltd. All rights reserved.
机译:为了研究疏水性有机化学物质(HOCs)的迁移机理和土壤/溶剂系统中的能量变化,在20-40摄氏度的环境温度范围内进行了土壤浸出柱色谱(SLCC)实验,该实验使用了参考土壤(SP 14696)填充柱和甲醇-水(体积比为1:4)洗脱液。随着柱温的升高,运输过程加快。 30和40摄氏度下的保留因子之比(k'(30)/ k'(40))为1.08至1.36。 SLCC(从淋洗液到土壤)中溶质转移的焓变比常规反相液相色谱(例如从淋洗液到C-18)更低,这与以下假设相符:HOC在溶剂和土壤之间占主导并且在物理上分配。线性溶剂化能量关系分析也验证了结果。发现控制保留的主要因素是溶质疏溶剂分配,第二个重要因素是溶质氢键碱性,而次要因素是溶质极化率-双极性和氢键酸度。随着温度的升高,疏溶性溶质分配和氢键碱度的贡献逐渐减小,而后者的下降速度快于前者。 (C)2002 Elsevier Science Ltd.保留所有权利。

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