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移动型动态被动采样痕量有机化合物:多瑙河采样器性能评估。

Mobile dynamic passive sampling of trace organic compounds: Evaluation of sampler performance in the Danube River.

机构信息

Masaryk University, Faculty of Science, Research Centre for Toxic Compounds in the Environment (RECETOX), Kamenice 753/5, 625 00 Brno, Czech Republic.

Masaryk University, Faculty of Science, Research Centre for Toxic Compounds in the Environment (RECETOX), Kamenice 753/5, 625 00 Brno, Czech Republic.

出版信息

Sci Total Environ. 2018 Sep 15;636:1597-1607. doi: 10.1016/j.scitotenv.2018.03.242. Epub 2018 Mar 30.

Abstract

A "dynamic" passive sampling (DPS) device, consisting of an electrically driven large volume water pumping device coupled to a passive sampler exposure cell, was designed to enhance the sampling rate of trace organic compounds. The purpose of enhancing the sampling rate was to achieve sufficient method sensitivity, when the period available for sampling is limited to a few days. Because the uptake principle in the DPS remains the same as for conventionally-deployed passive samplers, free dissolved concentrations can be derived from the compound uptake using available passive sampler calibration parameters. This was confirmed by good agreement between aqueous concentrations of polycyclic aromatic hydrocarbons (PAHs), polychlorinated biphenyls (PCBs) and hexachlorobenzene (HCB) derived from DPS and conventional caged passive sampler. The DPS device enhanced sampling rates of compounds that are accumulated in samplers under water boundary layer control (WBL) more than five times compared with the conventionally deployed samplers. The DPS device was deployed from a ship cruising downstream the Danube River to provide temporally and spatially integrated concentrations. A DPS-deployed sampler with surface area of 400cm can reach sampling rates up to 83Ld. The comparison of three passive samplers made of different sorbents and co-deployed in the DPS device, namely silicone rubber (SR), low density polyethylene (LDPE) and SDB-RPS Empore™ disks showed a good correlation of surface specific uptake for compounds that were sampled integratively during the entire exposure period. This provided a good basis for a cross-calibration between the samplers. The good correlation of free dissolved PAHs, PCBs and HCB concentration estimates obtained using SR and LDPE confirmed that both samplers are suitable for the identification of concentration gradients and trends in the water column. We showed that the differences in calculated aqueous concentrations between sampler types are mainly associated with different applied uptake models.

摘要

一种“动态”被动采样(DPS)装置,由一个电动大体积水抽吸装置与一个被动采样暴露池耦合而成,旨在提高痕量有机化合物的采样率。提高采样率的目的是在采样时间有限的几天内获得足够的方法灵敏度。由于 DPS 中的采样原理与传统部署的被动采样器相同,因此可以使用可用的被动采样器校准参数从化合物的吸收中推导出自由溶解浓度。这通过 DPS 和传统笼式被动采样器得出的多环芳烃(PAHs)、多氯联苯(PCBs)和六氯苯(HCB)的水相浓度之间的良好一致性得到了证实。与传统部署的采样器相比,DPS 装置将受水边界层控制(WBL)下积累的化合物的采样率提高了五倍以上。DPS 装置从一艘在多瑙河下游巡航的船上部署,以提供时间和空间综合浓度。一个表面积为 400cm 的 DPS 部署的采样器可以达到高达 83Ld 的采样率。在 DPS 装置中共同部署的三种不同吸附剂制成的三个被动采样器的比较表明,在整个暴露期间进行积分采样的化合物的表面特定吸收具有很好的相关性。这为采样器之间的交叉校准提供了良好的基础。使用硅橡胶(SR)和低密度聚乙烯(LDPE)获得的自由溶解 PAHs、PCBs 和 HCB 浓度估计值的良好相关性证实了这两种采样器都适合识别水柱中的浓度梯度和趋势。我们表明,两种采样器之间计算出的水相浓度差异主要与不同的应用吸收模型有关。

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