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基于聚合物的原位被动采样器对汞和甲基汞的初步研究。

Preliminary investigation of polymer-based in situ passive samplers for mercury and methylmercury.

机构信息

Department of Earth Science, Dartmouth College, Hanover, NH, USA.

Department of Biological Sciences, Dartmouth College, Hanover, NH, USA.

出版信息

Chemosphere. 2019 Nov;234:806-814. doi: 10.1016/j.chemosphere.2019.06.093. Epub 2019 Jun 18.

Abstract

Development of an in situ passive sampler for mercury (Hg), and its toxic form, methylmercury (MeHg), using simple polymer films, was explored for the potential to make an efficient and environmentally relevant monitoring tool for this widespread aquatic pollutant. The sulfur-containing polymers polysulfone (PS), and polyphenylene sulfide (PPS), were found to accumulate both MeHg and inorganic Hg (iHg), whereas polyethylene (PE) sorbed iHg but not MeHg, and polyoxymethylene (POM) and polyethersulfone (PES) films had low affinity for both Hg species. Uptake rates of Hg species into polymers were linear over two weeks, and dissolved organic matter at natural levels had no effect on partitioning of MeHg or iHg to the polymers. Sorption of MeHg to PS and PPS from three estuarine sediments correlated with uptake into diffusive gel-type samplers over time, and in PPS, with accumulation by the estuarine amphipod, Leptocheirus plumulosus. These polymers had lower MeHg adsorption rates, but are simpler to assemble, than diffusive gel-type samplers. Higher contaminant concentrations in polymer and gel-type samplers corresponded with porewater concentrations across sediments, suggesting they sample the dissolved MeHg pool, whereas MeHg levels in amphipods were more elevated with higher bulk sediment MeHg, which may reflect feeding strategy. While polymers with higher affinity for MeHg and iHg are needed for some environmental applications, this work suggests a simple sampling approach has potential for time-integrated, environmentally-meaningful MeHg monitoring in contaminated sediments.

摘要

开发了一种使用简单聚合物膜的原位被动采样器,用于汞 (Hg) 和其有毒形式甲基汞 (MeHg),以期成为一种用于监测这种广泛存在于水环境污染物的有效且与环境相关的监测工具。含硫聚合物聚砜 (PS) 和聚苯硫醚 (PPS) 被发现可同时积累 MeHg 和无机汞 (iHg),而聚乙烯 (PE) 吸附 iHg 但不吸附 MeHg,聚甲醛 (POM) 和聚醚砜 (PES) 薄膜对两种 Hg 物种的亲和力均较低。Hg 物种在聚合物中的吸收速率在两周内呈线性增长,且天然水平的溶解有机物对 MeHg 和 iHg 向聚合物的分配没有影响。PS 和 PPS 从三种河口沉积物中对 MeHg 的吸附与时间相关的扩散凝胶型采样器中的吸收有关,在 PPS 中,与河口端足类动物 Leptocheirus plumulosus 的积累有关。这些聚合物的 MeHg 吸附速率较低,但比扩散凝胶型采样器更容易组装。聚合物和凝胶型采样器中的污染物浓度较高与沉积物中孔隙水浓度相对应,表明它们可采样溶解的 MeHg 池,而在端足类动物中,MeHg 水平随底泥中总 MeHg 的升高而升高,这可能反映了其摄食策略。虽然对于某些环境应用需要对 MeHg 和 iHg 具有更高亲和力的聚合物,但这项工作表明,这种简单的采样方法具有在污染沉积物中进行时间积分、有意义的环境监测 MeHg 的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cc3/6742538/176fd7e122e9/nihms-1532728-f0008.jpg

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