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三丁基锡与天然沉积物的吸附和解吸行为

Sorption and desorption behavior of tributyltin with natural sediments.

作者信息

Burton Edward D, Phillips Ian R, Hawker Darryl W

机构信息

Faculty of Environmental Sciences, Griffith University, Nathan, Queensland 4111, Australia.

出版信息

Environ Sci Technol. 2004 Dec 15;38(24):6694-700. doi: 10.1021/es049291s.

Abstract

Tributyltin (TBT) sorption to four natural sediment samples in artificial seawater was examined under a range of modified pH and salinity conditions. Three of the sediment samples were relatively pristine with regard to TBT contamination, but the fourth was a TBT-contaminated sediment from a commercial marina. Sorption of TBT was described well by linear sorption isotherms, with distribution coefficients ranging from 6.1 to 5210 L/kg depending on the pH and salinity. The sediment organic C content and particle size distribution were important determinants of sorption behavior. The presence of resident TBT in the contaminated marina sediment caused a substantial reduction in further TBT sorption. Desorption of TBT from the marina sediment was described by relatively large observed distribution coefficients ranging from 5100 to 9400 L/kg, suggesting that aging effects may reduce sorption reversibility. Increased artificial seawater salinity generally reduced TBT sorption at pH 4 and 6, but enhanced TBT sorption at pH 8. Regardless of salinity, maximum sorption of TBT was observed at pH 6, which is attributed to an optimal balance between the abundance of cationic TBT+ species and deprotonated surface ligands. Consideration of aqueous TBT speciation along with octanol-water partitioning behavior suggests that hydrophobic partitioning of TBTCl(0) to nonpolar organic matter was important for pH < 6, while partitioning of TBTOH(0) was important at higher pH.

摘要

在一系列经过调整的pH值和盐度条件下,研究了三丁基锡(TBT)在人工海水中对四种天然沉积物样品的吸附情况。其中三个沉积物样品在TBT污染方面相对原始,但第四个是来自商业码头的受TBT污染的沉积物。TBT的吸附情况通过线性吸附等温线得到了很好的描述,其分配系数根据pH值和盐度的不同,在6.1至5210 L/kg之间变化。沉积物中的有机碳含量和粒度分布是吸附行为的重要决定因素。受污染的码头沉积物中存在的残留TBT导致进一步的TBT吸附大幅减少。从码头沉积物中解吸TBT的情况通过相对较大的观测分配系数来描述,其范围在5100至9400 L/kg之间,这表明老化效应可能会降低吸附的可逆性。在pH值为4和6时,人工海水盐度的增加通常会降低TBT的吸附,但在pH值为8时会增强TBT的吸附。无论盐度如何,在pH值为6时观察到TBT的最大吸附,这归因于阳离子TBT⁺物种的丰度与去质子化表面配体之间的最佳平衡。考虑到水相TBT的形态以及正辛醇-水分配行为表明,对于pH < 6,TBTCl(0)向非极性有机物的疏水分配很重要,而在较高pH值时,TBTOH(0)的分配很重要。

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