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Microbial response to the chronic toxicity effect of graphene and graphene oxide nanomaterials within aerobic granular sludge systems.

机构信息

College of Environment and Ecology, Chongqing University, Chongqing 400044, China.

UNESCO-IHE, Institute for Water Education, Westvest 7, 2601 DA Delft, the Netherlands.

出版信息

J Hazard Mater. 2024 Sep 15;477:135350. doi: 10.1016/j.jhazmat.2024.135350. Epub 2024 Jul 27.

DOI:10.1016/j.jhazmat.2024.135350
PMID:39079301
Abstract

Nanomaterials present in wastewater can pose a significant threat to aerobic granular sludge (AGS) systems. Herein, we found that compared to graphene nanomaterials (G-NMs), the long-term presence (95 days) of graphene oxide nanomaterials (GO-NMs) resulted in an increased proliferation of filamentous bacteria, poorer sedimentation performance (SVI of 74.1 mL/g) and smaller average particle size (1224.4 µm) of the AGS. In particular, the GO-NMs posed a more significant inhibitory effect to the total nitrogen removal efficiency of AGS (decreased by 14.3 %), especially for the denitrification process. The substantial accumulation of GO-NMs within the sludge matrix resulted in a higher level of reactive oxygen species in AGS compared to G-NMs, thereby inducing lactate dehydrogenase release, and enhancing superoxide oxidase and catalase activities. Such excessive oxidative stress could potentially result in a significant reduction in the activity of nitrogen metabolism enzymes (e.g., nitrate reductase and nitrite reductase) and the expression of key functional genes (e.g., nirS and nirK). Altogether, compared to G-NMs, prolonged exposure to GO-NMs had a more significant chronic toxicity effect on AGS systems. These findings implied that the presence of G-NMs and GO-NMs is a hidden danger to biological nitrogen removal and should receive more attention.

摘要

废水中存在的纳米材料可能对好氧颗粒污泥 (AGS) 系统构成重大威胁。在此,我们发现与石墨烯纳米材料 (G-NMs) 相比,氧化石墨烯纳米材料 (GO-NMs) 的长期存在 (95 天) 导致丝状菌大量增殖,AGS 的沉降性能变差 (SVI 为 74.1 mL/g),平均粒径更小 (1224.4 µm)。特别是 GO-NMs 对 AGS 总氮去除效率的抑制作用更为显著 (降低了 14.3%),特别是对反硝化过程。GO-NMs 在污泥基质内的大量积累导致 AGS 内活性氧水平高于 G-NMs,从而诱导乳酸脱氢酶释放,并增强超氧化物氧化酶和过氧化氢酶的活性。这种过度的氧化应激可能导致氮代谢酶 (如硝酸盐还原酶和亚硝酸盐还原酶) 的活性以及关键功能基因 (如 nirS 和 nirK) 的表达显著降低。总的来说,与 G-NMs 相比,AGS 系统长期暴露于 GO-NMs 具有更显著的慢性毒性效应。这些发现表明,G-NMs 和 GO-NMs 的存在对生物脱氮是一个隐患,应该引起更多关注。

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