UV-weathering affects heteroaggregation and subsequent sedimentation of polystyrene microplastic particles with ferrihydrite†

IF 3.9 3区 环境科学与生态学 Q1 CHEMISTRY, ANALYTICAL Environmental Science: Processes & Impacts Pub Date : 2025-03-07 DOI:10.1039/D4EM00666F
Johanna Schmidtmann, Hannah-Kristin Weishäupl, Luisa Hopp, Nora Meides and Stefan Peiffer
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Abstract

Microplastic (MP) particles are ubiquitous in aquatic environments where they become exposed to UV-irradiation with subsequent alteration of surface properties. Such particles will interact with naturally occurring colloids being subject to processes like heteroaggregation that affect both MP surface properties and their removal rates from the water column. In this study, we investigated heteroaggregation and subsequent sedimentation of 1 μm polystyrene (PS, pristine and UV-weathered) with ferrihydrite (Fh), an iron (oxy)hydroxide commonly found in nature. Heteroaggregation of pristine PS with Fh was controlled by electrostatic attraction. At neutral pH values, strong heteroaggregation was observed which led to the sedimentation of almost all PS particles. UV-weathering of PS led to lower negative surface charge, decrease of particle size, and formation of degradation products. Changes in surface properties of PS resulted in a different aggregation behavior with Fh. With increasing weathering time, the isoelectric point (pHIEP) of suspensions with PS and Fh shifted to lower pH values. Furthermore, we observed aggregation and subsequent sedimentation of weathered PS and Fh for a wider pH range (pH 3–7) compared to pristine PS (pH 6.5–7.5). We attribute this observation to increased surface reactivity of PS due to the formation of functional groups on the surface through UV-weathering. In addition, degradation products (e.g. oligomers) formed during weathering might have also interacted with PS and Fh and therefore further affected the surface properties of the particles. Overall, UV-weathering but also interactions of MP particles with environmental particles cause changes of MP surface properties, which influence its environmental behavior in water and might lead to a removal from the water column and accumulation in sediments.

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紫外线风化作用影响聚苯乙烯微塑料颗粒与水合铁的异质聚集和随后的沉降。
微塑料(MP)颗粒在水生环境中普遍存在,它们暴露在紫外线照射下,随后表面性质发生变化。这些颗粒将与自然发生的胶体相互作用,受到异聚集等过程的影响,从而影响MP的表面性质及其从水柱中的去除率。在这项研究中,我们研究了1 μm聚苯乙烯(PS,原始和紫外线风化)与铁水合物(Fh)的异质聚集和随后的沉积,铁(氧)氢氧化铁在自然界中常见。原始PS与Fh的异聚集受静电吸引控制。在中性pH值下,观察到强异聚集,导致几乎所有PS颗粒沉降。PS的紫外风化作用降低了表面负电荷,减小了粒径,形成了降解产物。PS表面性质的改变导致其与Fh的聚集行为不同。随着风化时间的延长,含PS和含Fh悬浮液的等电点(pHIEP)向较低的pH值偏移。此外,与原始PS (pH 6.5-7.5)相比,我们观察到风化PS和Fh在更宽的pH范围(pH 3-7)下的聚集和随后的沉积。我们将这一观察结果归因于PS通过紫外线风化在表面形成官能团而增加的表面反应性。此外,风化过程中形成的降解产物(如低聚物)也可能与PS和Fh相互作用,从而进一步影响颗粒的表面性能。总的来说,紫外线风化以及MP颗粒与环境颗粒的相互作用会导致MP表面性质的变化,从而影响其在水中的环境行为,并可能导致MP从水柱中移除并在沉积物中积累。
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来源期刊
Environmental Science: Processes & Impacts
Environmental Science: Processes & Impacts CHEMISTRY, ANALYTICAL-ENVIRONMENTAL SCIENCES
CiteScore
9.50
自引率
3.60%
发文量
202
审稿时长
1 months
期刊介绍: Environmental Science: Processes & Impacts publishes high quality papers in all areas of the environmental chemical sciences, including chemistry of the air, water, soil and sediment. We welcome studies on the environmental fate and effects of anthropogenic and naturally occurring contaminants, both chemical and microbiological, as well as related natural element cycling processes.
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