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聚四氟乙烯纳米塑料对序批式反应器中脱氮及胞外聚合物的长期暴露影响

Long-term exposure of polytetrafluoroethylene-nanoplastics on the nitrogen removal and extracellular polymeric substances in sequencing batch reactor.

作者信息

Yang Huan, Liu Yang, Niu Changwei, Wang Yueyue, Wang Bing, Liu Yaohui, Guo Liming, Wang Zichao

机构信息

College of Environment Science, Liaoning University, Shenyang, China.

College of Environment Science, Liaoning University, Shenyang, China.

出版信息

Enzyme Microb Technol. 2023 May;166:110229. doi: 10.1016/j.enzmictec.2023.110229. Epub 2023 Mar 21.

Abstract

The impact of polytetrafluoroethylene-nanoplastics (PTFE-NPs) on biological sewage disposal was delved, containing nitrogen remotion, microbiological activity and composition of extracellular polymer (EPS). The addition of PTFE-NPs reduced the removal efficiencies of chemical oxygen demand (COD) and ammonia nitrogen (NH-N) by 3.43 % and 2.35 %, respectively. In comparison with no PTFE-NPs, the specific oxygen uptake rate (SOUR), specific ammonia oxidation rate (SAOR), specific nitrite oxidation rate (SNOR) and specific nitrate reduction rate (SNRR) decreased by 65.26 %, 65.24 %, 41.77 % and 54.56 %, respectively. The PTFE-NPs inhibited the activities of nitrobacteria and denitrobacteria. It was worth noting that, nitrite oxidized bacterium was more resistant to adverse environments than ammonia oxidizing bacterium. Compared with no PTFE-NPs, the reactive oxygen species (ROS) content and lactate dehydrogenase (LDH) grew by 130 % and 50 % under PTFE-NPs pressure. The appearance of PTFE-NPs affected the normal function of microorganisms by inducing endocellular oxidative stress and destroying the completeness of the cytomembrane. The protein (PN) and polysaccharide (PS) levels in loosely bound EPS (LB-EPS) and tightly bound EPS (TB -EPS) increased by 4.96, 0.70, 3.07 and 0.71 mg g VSS, under PTFE-NPs. Meanwhile, the PN/PS ratios of LB-EPS and TB -EPS increased from 6.18 and 6.41-11.04 and 9.29, respectively. The LB-EPS might provide sufficient binding sites for PTFE-NPs adsorption due to its loose and porous structure. The defense mechanism of bacteria against PTFE-NPs was mainly the PN in loosely bound EPS. Moreover, the functional groups referred to the complexation of EPS with PTFE-NPs were mainly related to N-H, CO, and C-N in proteins and O-H in polysaccharides.

摘要

研究了聚四氟乙烯纳米塑料(PTFE-NPs)对生物污水处理的影响,包括脱氮、微生物活性和细胞外聚合物(EPS)的组成。添加PTFE-NPs分别使化学需氧量(COD)和氨氮(NH-N)的去除效率降低了3.43%和2.35%。与不添加PTFE-NPs相比,比氧摄取率(SOUR)、比氨氧化率(SAOR)、比亚硝酸盐氧化率(SNOR)和比硝酸盐还原率(SNRR)分别下降了65.26%、65.24%、41.77%和54.56%。PTFE-NPs抑制了硝化细菌和反硝化细菌的活性。值得注意的是,亚硝酸盐氧化菌比氨氧化菌对恶劣环境更具抗性。与不添加PTFE-NPs相比,在PTFE-NPs压力下,活性氧(ROS)含量和乳酸脱氢酶(LDH)分别增长了130%和50%。PTFE-NPs的出现通过诱导细胞内氧化应激和破坏细胞膜的完整性影响微生物的正常功能。在PTFE-NPs作用下,松散结合EPS(LB-EPS)和紧密结合EPS(TB-EPS)中的蛋白质(PN)和多糖(PS)水平分别增加了4.96、0.70、3.07和0.71mg g VSS。同时,LB-EPS和TB-EPS的PN/PS比值分别从6.18和6.41增加到11.04和9.29。由于LB-EPS结构松散且多孔,可能为PTFE-NPs吸附提供足够的结合位点。细菌对PTFE-NPs的防御机制主要是松散结合EPS中的PN。此外,EPS与PTFE-NPs络合的官能团主要与蛋白质中的N-H、CO和C-N以及多糖中的O-H有关。

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