Adsorption of trace metals onto different plastics during long-term exposure in an estuarine environment: Influence of time, stratified water column, and specific surface area

IF 3 3区 地球科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Ana Rapljenović, Željko Kwokal, Marija Purgar, Marko Viskić, Vlado Cuculić
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Abstract

The pervasive increase of plastics in marine systems and subsequent trace metals (TM) adsorption represents a critical environmental challenge. This long-term study is first to investigate how duration of exposure and stratified water column impact TM adsorption on various plastics in an estuary. We exposed polypropylene (PP), polyethylene (PE), poly(ethylene terephthalate) (PET), and fluorinated ethylene propylene (FEP) to estuarine conditions, categorizing them into three distinct groups to capture diverse human activities: pre-production pellets (Pellets), single-use plastics (SUP) and laboratory plastics (Lab). Plastic and water samples were analyzed before deployment and 1, 4, 7 and 16 months after deployment at three depths in the stratified Krka River estuary (Croatia). We measured TM concentrations, pH and salinity in the water column, and adsorbed TM amounts on plastics. Additionally, we examined plastic sample surfaces by Raman spectroscopy and scanning electron microscopy. TM speciation was modeled from water column data to better explain adsorption processes. Statistical analysis indicates that Zn, Cd, Pb, Ni, and Co adsorption depends on both duration of exposure and stratified water column, while Cu is influenced solely by duration of exposure to estuarine environment. Adsorbed TM amounts varied significantly among the plastic groups (Pellets, SUP and Lab), but not among different polymer types (PP, PE, PET and FEP). A noteworthy observation was the difference in the results of statistical analysis when investigating TM amounts expressed by plastic sample mass and by plastic sample surface area. Results expressed by plastic sample mass showed a difference between SUP group versus Pellets and Lab groups, while results expressed by plastic sample surface area distinguished Pellets group compared to other two groups. Therefore, we suggest presenting TM adsorption results in similar studies both by plastic sample mass and by plastic sample surface area. This approach will improve the understanding of TM adsorption on plastics, and enable more effective comparisons among the scientific literature dealing with plastics of different specific surface areas.

在河口环境中长期暴露时不同塑料对痕量金属的吸附:时间、分层水体和比表面积的影响
海洋系统中塑料的普遍增加以及随之而来的痕量金属(TM)吸附是一项严峻的环境挑战。这项长期研究首次调查了暴露时间和分层水体如何影响河口各种塑料对痕量金属的吸附。我们将聚丙烯 (PP)、聚乙烯 (PE)、聚对苯二甲酸乙二醇酯 (PET) 和氟化乙烯丙烯 (FEP) 暴露在河口条件下,并将它们分为三个不同的组别,以捕捉不同的人类活动:生产前颗粒 (Pellets)、一次性塑料 (SUP) 和实验室塑料 (Lab)。在分层的克尔卡河河口(克罗地亚)的三个深度,对塑料和水样进行了部署前和部署后 1、4、7 和 16 个月的分析。我们测量了水体中 TM 的浓度、pH 值和盐度,以及塑料上吸附的 TM 量。此外,我们还利用拉曼光谱和扫描电子显微镜检查了塑料样品表面。根据水体数据建立了 TM 种属模型,以更好地解释吸附过程。统计分析表明,锌、镉、铅、镍和钴的吸附取决于暴露时间和分层水体,而铜仅受暴露于河口环境时间的影响。不同塑料组(颗粒、SUP 和 Lab)吸附的 TM 量差异显著,但不同聚合物类型(PP、PE、PET 和 FEP)之间差异不大。值得注意的是,以塑料样品质量和塑料样品表面积表示的 TM 量的统计分析结果存在差异。以塑料样品质量表示的结果显示 SUP 组与颗粒组和实验室组之间存在差异,而以塑料样品表面积表示的结果显示颗粒组与其他两组之间存在差异。因此,我们建议在类似的研究中,同时以塑料样品质量和塑料样品表面积来表示 TM 吸附结果。这种方法将加深人们对 TM 在塑料上的吸附情况的了解,并能更有效地比较涉及不同比表面积塑料的科学文献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Marine Chemistry
Marine Chemistry 化学-海洋学
CiteScore
6.00
自引率
3.30%
发文量
70
审稿时长
4.5 months
期刊介绍: Marine Chemistry is an international medium for the publication of original studies and occasional reviews in the field of chemistry in the marine environment, with emphasis on the dynamic approach. The journal endeavours to cover all aspects, from chemical processes to theoretical and experimental work, and, by providing a central channel of communication, to speed the flow of information in this relatively new and rapidly expanding discipline.
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