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聚苯乙烯纳米塑料对酸性和碱性条件下原生污泥发酵的影响:抗生素抗性基因的意义。

Impact of polystyrene nanoplastics on primary sludge fermentation under acidic and alkaline conditions: Significance of antibiotic resistance genes.

机构信息

Department of Civil and Environmental Engineering, University of Alberta, Edmonton, Canada, T6G 1H9.

Department of Civil and Environmental Engineering, University of Alberta, Edmonton, Canada, T6G 1H9; Biological Systems and Engineering Division, Lawrence Berkeley National Laboratory, Berkeley, CA, USA; Advanced Biofuels and Bioproducts Process Development Unit, Emeryville, CA, USA.

出版信息

Chemosphere. 2024 Sep;364:142777. doi: 10.1016/j.chemosphere.2024.142777. Epub 2024 Jul 4.

Abstract

As a part of industrial or commercial discharge, the influx of nanoplastics (NPs) to the wastewater treatment plants is inevitable. Consequently, it has become a must to understand the effects of these NPs on different unit processes. This study aimed to investigate the impact of three different concentrations of polystyrene nanoplastics (PsNPs) on the fermentation of primary sludge (PrS), implemented in batch anaerobic bioreactors, at pH 5 and 10, considering the pH-dependent nature of the fermentation process. The results showed that PsNPs stimulated hydrogen gas production at a lower dose (50 μg/L), while a significant gas suppression was denoted at higher concentrations (150 μg/L, 250 μg/L). In both acidic and alkaline conditions, propionic and acetic acid predominated, respectively, followed by n-butyric acid. Under both acidic and alkaline conditions, exposure to PsNPs boosted the propagation of various antibiotic resistance genes (ARGs), including tetracycline, macrolide, β-lactam and sulfonamide resistance genes, and integrons. Notably, under alkaline condition, the abundance of sul2 gene in the 250 μg PsNPs/L batch exhibited a 2.4-fold decrease compared to the control batch. The response of the microbial community to PsNPs exposure exhibited variations at different pH values. Bacteroidetes prevailed at both pH conditions, with their relative abundance increasing after PsNPs exposure, indicating a positive impact of PsNPs on PrS solubilization. Adverse impacts, however, were detected in Firmicutes, Chloroflexi and Actinobacteria. The observed variations in the survival rates of various microbes stipulate that they do not have the same tolerance levels under different pH conditions.

摘要

作为工业或商业排放的一部分,纳米塑料(NPs)不可避免地会流入废水处理厂。因此,了解这些 NPs 对不同单元过程的影响变得至关重要。本研究旨在研究三种不同浓度的聚苯乙烯纳米塑料(PsNPs)对 pH 值为 5 和 10 的批式厌氧生物反应器中原始污泥(PrS)发酵的影响,考虑到发酵过程的 pH 依赖性。结果表明,PsNPs 在较低剂量(50μg/L)下刺激氢气产生,而在较高浓度(150μg/L、250μg/L)下显著抑制气体产生。在酸性和碱性条件下,分别以丙酸和乙酸为主,其次是正丁酸。在酸性和碱性条件下,暴露于 PsNPs 均会促进各种抗生素抗性基因(ARGs)的传播,包括四环素、大环内酯、β-内酰胺和磺胺类抗性基因和整合子。值得注意的是,在碱性条件下,与对照批次相比,250μgPsNPs/L 批次中 sul2 基因的丰度下降了 2.4 倍。微生物群落对 PsNPs 暴露的反应在不同 pH 值下表现出差异。Bacteroidetes 在两种 pH 条件下均占优势,暴露于 PsNPs 后其相对丰度增加,表明 PsNPs 对 PrS 溶解有积极影响。然而,在 Firmicutes、Chloroflexi 和 Actinobacteria 中检测到了不良影响。不同微生物存活率的观察变化表明,它们在不同 pH 条件下的耐受水平不同。

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