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富营养化水中微囊藻毒素与微塑料结合:吸附-解吸过程揭示的对浮游动物的潜在威胁。

Microcystin bound on microplastics in eutrophic waters: A potential threat to zooplankton revealed by adsorption-desorption processes.

机构信息

School of Geography, School of Environment, Nanjing Normal University, Nanjing, 210023, China.

State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, 73 East Beijing Road, Nanjing, 210008, China.

出版信息

Environ Pollut. 2023 Mar 15;321:121146. doi: 10.1016/j.envpol.2023.121146. Epub 2023 Jan 24.

Abstract

The presence of microplastics (MPs) in eutrophic waters (both freshwaters and coastal waters) is increasingly reported globally, as has the occurrence of cyanotoxins, including microcystins (MCs). MPs have the potential to act as vectors for MCs in freshwater environments, but the transportation mechanisms and associated risks remain poorly understood. In this study, we investigated how aging process and water conditions influenced the adsorption behavior of the microcystin-leucine-arginine (MC-LR) onto polyethylene (PE) and polypropylene (PP). Adsorption kinetics and isotherms showed that the MC-LR sorption capacity in descending order was aged PP > pristine PP > aged PE > pristine PE. The aging process increased the MC-LR sorption amount by 25.1% and 6.5% for PP and PE, respectively. The increase in sorption affinity of aged MPs may be attributed to the significant surface oxidation and the formation of the hydrogen bonding between MPs and MC-LR. Furthermore, MC-LR sorption can be largely influenced by the aqueous conditions. MC-LR preferred to be much adsorbed onto different MPs in brackish water than in freshwater owing to the cation bridging effect and complexation of high levels of cations. The usual alkalescent pH in eutrophic waters did not favor MC-LR sorption to MPs. Finally, based on the desorption results, assuming a worst-case scenario, MC-LR bound on MPs may have a high risk to daphnids. The findings obtained in this study have improved our knowledge in the interaction of MPs with hydrophilic cyanotoxins in aqueous ecosystems, as well as the risks associated with their coexistence.

摘要

微塑料(MPs)在富营养化水域(包括淡水和沿海水域)中的存在在全球范围内越来越多地被报道,而蓝藻毒素的存在也是如此,其中包括微囊藻毒素(MCs)。MPs 有可能成为淡水环境中 MCs 的载体,但运输机制和相关风险仍知之甚少。在这项研究中,我们研究了老化过程和水条件如何影响微囊藻氨酸-亮氨酸-精氨酸(MC-LR)在聚乙烯(PE)和聚丙烯(PP)上的吸附行为。吸附动力学和等温线表明,MC-LR 的吸附容量顺序为老化 PP>原始 PP>老化 PE>原始 PE。老化过程分别使 PP 和 PE 对 MC-LR 的吸附量增加了 25.1%和 6.5%。老化 MPs 吸附亲和力的增加可能归因于 MPs 表面的显著氧化和 MPs 与 MC-LR 之间氢键的形成。此外,MC-LR 的吸附受水相条件的影响很大。由于阳离子桥接效应和高浓度阳离子的络合作用,MC-LR 更倾向于在咸水中被大量吸附到不同的 MPs 上,而不是在淡水中。富营养化水中通常的碱性 pH 值不利于 MC-LR 与 MPs 结合。最后,根据解吸结果,在最坏的情况下假设,结合在 MPs 上的 MC-LR 可能对水蚤有很高的风险。本研究的结果提高了我们对水生态系统中 MPs 与亲水性蓝藻毒素相互作用以及它们共存相关风险的认识。

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