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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Development and evaluation of a new diffusive gradients in thin-films technique for measuring organotin compounds in coastal sediment pore water
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Development and evaluation of a new diffusive gradients in thin-films technique for measuring organotin compounds in coastal sediment pore water

机译:薄膜薄膜薄膜化合物中新型扩散梯度的开发与评价沿海沉积物孔隙水中的有机素化合物

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AbstractOrganotins present a toxicological risk to biota in the aquatic environment. Understanding the behaviour of these compounds in sediment is challenging, with sophisticated analytical techniques required for their measurement. We investigated the use of silica-bound sorbents for diffusive gradients in thin-films (DGT) adsorption gels to pre-concentrate five organotins (monobutlytin (MBT), dibutyltin (DBT), tributyltin (TBT), diphenyltin (DPhT), triphenyltin (TPhT)) found frequently in coastal sediment. C8sorbent showed optimum performance in uptake and recovery of organotins for pH and ionic strength ranges typical of coastal waters. Recoveries from adsorption gels deployed in filtered sea water were MBT = 123 ± 20%, DBT = 75 ± 12%, TBT = 81 ± 16%, DPhT = 72 ± 30%, TPhT = 58 ± 10% respectively. Devices were used to investigate DGT fluxes and pore water concentrations of organotins in coastal sediment collected from a contaminated site. DGT fluxes measured in sediment cores for the five organotins ranged between 4.3 × 10?8and 1.6 ×10?5ngcm2s?1. The depletion of organotin species within pore waters at the interface with DGT devices was measured over a series of deployment times (2, 7, 14, 21 and 28 days) and provided estimates of the concentration of organotins in pore waters at Langstone Harbour, UK, prior to depletion by the DGT device and information on their spatial heterogeneity. The novel in situ DGT device developed can pre-concentrate organotins from pore waters in coastal sediment core samples and allows their detection at low env
机译:<![cdata [ 抽象 有机锡对水生环境中Biota的毒性风险。了解这些化合物在沉积物中的行为是挑战,具有复杂的分析技术来测量。我们研究了薄膜(DGT)吸附凝胶中的二氧化硅结合的吸附剂在薄膜(DGT)吸附凝胶中以预浓缩五个有机蛋白蛋白(单闭素(MBT),二丁基锡(DBT),丁香霉素(TBT),二苯基锡(Dpht),三苯基滴( TPHT))经常在沿海沉积物中发现。 C 8 吸附剂显示出在沿海水域典型的pH和离子力量范围的有机素素的摄取和恢复的最佳性能。从过滤海水中部署的吸附凝胶中的回收率分别为233±20%,TBT = 81±16%,DPHT = 72±30%,TPHT = 58±10%。装置用于研究从污染部位收集的沿海沉积物中有机素的DGT助熔剂和孔隙水浓度。在沉积物核中测量的DGT助核,用于五个有机汀在4.3×10 ?8 和1.6×10 ?5 < / ce:sup> ngcm 2 s ?1 。在与DGT器件界面处的孔隙水中的有机素物种的耗竭在一系列部署时间(2,7,14,21和28天)上测量,并提供了英国兰斯通港的孔隙水中有机素浓度的估计,在DGT设备耗尽之前和关于它们的空间异质性的信息。原位DGT器件的新型开发了可以从沿海沉积物核心样品中从孔隙水中预浓缩有机杆菌,并在低env中允许它们的检测

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