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不同来源黑碳对邻苯二甲酸酯的吸附作用。

Sorption of phthalate acid esters on black carbon from different sources.

作者信息

Xia Xinghui, Dai Zhineng, Zhang Ju

机构信息

School of Environment, Beijing Normal University/State Key Laboratory of Water Environment Simulation, Beijing, 100875, China.

出版信息

J Environ Monit. 2011 Oct;13(10):2858-64. doi: 10.1039/c1em10072f. Epub 2011 Aug 15.

Abstract

Black carbon (BC) is known as a strong sorbent for the sorption of planar hydrophobic organic compounds (HOCs), but there is very little information about the sorption of nonplanar HOCs on BC. In this study, the sorption of di-(2-ethyl-hexyl) phthalate (DEHP), one kind of nonplanar phthalate acid ester (PAE), by environmental BC collected from river sediments and pure BC (char-wood, char-stalk and soot-ash) was investigated. Strong and nonlinear sorption was observed for the sorption of DEHP on both pure BC and environmental BC with the Freundlich exponent ranging from 0.55 to 0.75 except for soot-ash, and the measured K(BC) (BC-water partition coefficient) of DEHP was about one order of magnitude higher than its organic carbon-water partition coefficient. There was a significant difference in sorption capacity among the environmental and pure BC. The presence of di-methyl phthalate (DMP) could significantly decrease the sorption of DEHP on BC, especially for environmental BC. In addition, the contribution of BC to the total sorption of DEHP on original river sediments was more than 50% when the equilibrium concentration of DEHP was less than 10 μg L(-1). This study indicated that ortho-substituted nonplanar PAEs could also be strongly sorbed by BC, and the difference in sorption among the BC samples revealed that it is important to take the source of BC into account when assessing its effects on the fate of HOCs in aquatic environment.

摘要

黑碳(BC)是一种对平面疏水有机化合物(HOCs)具有很强吸附能力的吸附剂,但关于非平面HOCs在BC上的吸附信息却非常少。在本研究中,对从河流沉积物中收集的环境BC以及纯BC(木炭、秸秆炭和煤灰)对邻苯二甲酸二(2-乙基己基)酯(DEHP)这种非平面邻苯二甲酸酯(PAE)的吸附进行了研究。观察到DEHP在纯BC和环境BC上均有强烈且非线性的吸附,除煤灰外,Freundlich指数范围为0.55至0.75,且测得的DEHP的K(BC)(BC-水分配系数)比其有机碳-水分配系数高约一个数量级。环境BC和纯BC之间的吸附容量存在显著差异。邻苯二甲酸二甲酯(DMP)的存在会显著降低DEHP在BC上的吸附,尤其是对环境BC。此外,当DEHP的平衡浓度小于10 μg L⁻¹时,BC对DEHP在原始河流沉积物上总吸附的贡献超过50%。本研究表明,邻位取代的非平面PAEs也能被BC强烈吸附,且BC样品之间吸附的差异表明,在评估其对水生环境中HOCs归宿的影响时,考虑BC的来源很重要。

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