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风化多壁碳纳米管在水-沉积物系统中的归宿。

Fate of weathered multi-walled carbon nanotubes in an aquatic sediment system.

机构信息

Institute for Environmental Research, RWTH Aachen University, Worringerweg 1, 52074 Aachen, Germany.

Institute for Environmental Research, RWTH Aachen University, Worringerweg 1, 52074 Aachen, Germany.

出版信息

Chemosphere. 2021 Aug;277:130319. doi: 10.1016/j.chemosphere.2021.130319. Epub 2021 Mar 16.

Abstract

The widespread application of carbon nanotubes (CNT) in various consumer products leads to their inevitable release into aquatic systems. But only little is known about their distribution among aquatic compartments. In this study, we investigated the partitioning of radiolabeled, weathered multi-walled CNT (C-wMWCNT) in an aquatic sediment system over a period of 180 days (d). The applied nanomaterial concentration in water phase was 100 μg L. Over time, the wMWCNT disappeared exponentially from the water phase and simultaneously accumulated in the sediment phase. After 2 h incubation just 77%, after seven days 30% and after 180 d only 0.03% of applied radioactivity (AR) remained in the water phase. The respective values for the disappearance times DT and DT were 3.2 d and 10.7 d. Further, minor mineralization of C-wMWCNT to CO was observed with values below 0.06% of AR. In addition, a study was carried out to estimate the deposition of wMWCNT in the water phase with and without sediment in the test system for 28 d. We found no influence of a sediment phase on the sedimentation behavior of wMWCNT in the water phase: After 6.5 d and 7.3 d 50% of the applied wMWCNT subsided in the presence and absence of sediment, respectively. The slow removal of wMWCNT from the water body by deposition into sediment implies that in addition to sediment-dwelling organisms, pelagic organisms are also at risk of exposure to nanomaterials and prone for their take-up.

摘要

碳纳米管(CNT)在各种消费品中的广泛应用导致其不可避免地释放到水生系统中。但是,人们对它们在水生环境中的分布知之甚少。在这项研究中,我们研究了标记的、风化的多壁 CNT(C-wMWCNT)在水生沉积物系统中的分配,时间跨度为 180 天(d)。水相中应用的纳米材料浓度为 100μg L。随着时间的推移,wMWCNT 从水相呈指数衰减并同时在沉积物相中积累。2 小时孵育后,仅有 77%的放射性(AR),7 天后为 30%,180 天后仅为 0.03%留在水相中。相应的消失时间 DT 和 DT 分别为 3.2d 和 10.7d。此外,观察到 C-wMWCNT 向 CO 的轻微矿化,其值低于 AR 的 0.06%。此外,还进行了一项研究,以估计在测试系统中存在和不存在沉积物的情况下,wMWCNT 在水相中的沉积情况,时间为 28 天。我们发现沉积物相对 wMWCNT 在水相中的沉降行为没有影响:6.5d 和 7.3d 后,分别有 50%的应用 wMWCNT 在存在和不存在沉积物的情况下沉降。wMWCNT 通过沉积到沉积物中从水体中缓慢去除,这意味着除了生活在沉积物中的生物外,浮游生物也有暴露于纳米材料的风险,并容易被吸收。

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