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疏水性有机化合物(HOC)在城市污水胶体有机碳中的分配行为。

Hydrophobic organic compound (HOC) partitioning behaviour to municipal wastewater colloidal organic carbon.

机构信息

Department of Civil and Environmental Engineering, University of Windsor, 401 Sunset Avenue, Windsor, Ontario, Canada N9B 3P4.

出版信息

Water Res. 2013 May 1;47(7):2222-30. doi: 10.1016/j.watres.2013.01.039. Epub 2013 Feb 13.

Abstract

The sorption behaviour of hydrophobic organic compounds (HOCs) 1,2,4,5-tetrachlor-obenzene (TeCB), pentachlorobenzene (PeCB) and hexachlorobenzene (HCB) to Aldrich humic acid (AHA) and municipal wastewater treatment plant (MWTP) influent colloidal organic carbon (COC) was investigated using the gas-stripping technique. Gas stripping assumptions of gas/water equilibrium and a constant volatilization rate were validated prior to calculation of partitioning parameters. The logKCOC coefficients determined for MWTP influent COC were 3.86, 3.89 and 3.19 for TeCB, PeCB and HCB, respectively. Due to the presence of COC, the mass transfer of TeCB, PeCB and HCB with the primary effluent to the secondary biological stage was predicted to increase 8.7%, 9.6% and 1.2%, respectively, based on the measured COC concentration and logKCOC values. The calculated increases in apparent solubility for TeCB, PeCB and HCB in the primary effluent were 14.4%, 22.0% and 6.5%, respectively. This partitioning did not follow the expected trend (TeCB < PeCB < HCB) based on hydrophobicity predicted by octanol/water partitioning. The trend observed differed from the current AHA standard and correlation-based trends derived from natural COCs. More experiments with other HOCs are needed to better understand and predict the magnitude and significance of MWTP influent COCs on the fate and transport of HOCs during the MWTP process.

摘要

采用气提技术研究了疏水性有机化合物(HOCs)1,2,4,5-四氯苯(TeCB)、五氯苯(PeCB)和六氯苯(HCB)在爱利希腐殖酸(AHA)和城市污水处理厂(MWTP)进水胶体有机碳(COC)上的吸附行为。在计算分配参数之前,验证了气/水平衡和恒挥发速率的气提假设。MWTP 进水 COC 确定的 logKCOC 系数分别为 TeCB、PeCB 和 HCB 的 3.86、3.89 和 3.19。由于 COC 的存在,根据实测 COC 浓度和 logKCOC 值,预测 TeCB、PeCB 和 HCB 从一级出水向二级生物阶段的传质将分别增加 8.7%、9.6%和 1.2%。计算得出一级出水中 TeCB、PeCB 和 HCB 的表观溶解度分别增加了 14.4%、22.0%和 6.5%。这种分配与根据辛醇/水分配预测的疏水性(TeCB < PeCB < HCB)不符。观察到的趋势与当前的 AHA 标准和基于天然 COC 得出的相关趋势不同。需要进行更多的实验来研究其他 HOC,以更好地了解和预测 MWTP 进水 COC 对 HOC 在 MWTP 过程中的归宿和传输的影响和重要性。

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