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Tributyltin Sorption To Marine Sedimentary Black Carbon And To Amended Activated Carbon

机译:三丁基锡对海洋沉积黑碳和活性炭的吸附

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Under marine conditions, tributyltin (TBT) is speciated mainly as an uncharged hydroxyl complex (TBTOH) that is expected to have a similar fate to hydrophobic organic contaminants. Earlier studies indicated that for the later compounds, sorption to black carbon (BC) can be more than two orders of magnitude stronger than sorption to organic carbon, notably at low and environmentally relevant concentrations. The aim of the present study was to investigate the sorption strength of spiked TBT to a sediment and its BC isolate. It was observed that carbon-normalized sorption coefficients were in the same range for the sediment total organic carbon (TOC) and for its BC (log K_(TOC) 5.05 L/kg_(TOC) and log K_(BC) 5.09 L/kg_(BC), respectively). This indicates that TBT does not sorb as strongly to BC as other hydrophobic organic contaminants. Activated carbon (AC), a strong man-made sorbent, has the potential to be used for in situ remediation of contaminated sediments and soils, in particular for polycyclic aromatic hydrocarbons and polychlorinated biphenyls. In the present study, both granular and powdered AC were found to strongly sorb TBT under marine conditions, with a log sorption coefficient of 6.8 L/kg_(carbon). Tributyl- and dibutyltin concentrations in the pore water of a natively contaminated sediment were reduced by more than 70% on addition of 2% of powdered AC, whereas granular AC did not show a similar reduction. The results indicate that powdered AC might be a feasible remediation agent for sediments contaminated by organotins.
机译:在海洋条件下,三丁基锡(TBT)主要被指定为不带电荷的羟基络合物(TBTOH),预计其命运将与疏水性有机污染物相似。较早的研究表明,对于较晚的化合物,对黑碳(BC)的吸附可能比对有机碳的吸附强两个数量级以上,特别是在低浓度且与环境相关的浓度下。本研究的目的是研究加标TBT对沉积物及其BC分离物的吸附强度。观察到沉积物总有机碳(TOC)及其BC的碳归一化吸附系数在相同范围内(log K_(TOC)5.05 L / kg_(TOC)和log K_(BC)5.09 L / kg_ (BC))。这表明TBT对BC的吸收不如其他疏水性有机污染物强。活性炭(AC)是一种强大的人造吸附剂,有潜力用于原位修复受污染的沉积物和土壤,特别是用于多环芳烃和多氯联苯。在本研究中,发现粒状和粉状AC在海洋条件下均能强烈吸附TBT,对数吸附系数为6.8 L / kg_(碳)。加入2%的粉末状AC后,自然污染沉积物的孔隙水中三丁基锡和二丁基锡的浓度降低了70%以上,而颗粒状AC并未显示出类似的降低。结果表明,粉状AC可能是对有机锡污染的沉积物的可行修复剂。

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