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应对二氧化钛纳米颗粒对好氧颗粒污泥和藻菌颗粒污泥工艺的冲击负荷。

Response to shock load of titanium dioxide nanoparticles on aerobic granular sludge and algal-bacterial granular sludge processes.

机构信息

Department of Applied and Environmental Chemistry, University of Szeged, Szeged, Hungary.

Department of Applied and Environmental Chemistry, University of Szeged, Szeged, Hungary.

出版信息

NanoImpact. 2024 Oct;36:100532. doi: 10.1016/j.impact.2024.100532. Epub 2024 Oct 23.

Abstract

Titanium dioxide nanoparticles (TiO NPs) are extensively used in various fields and can consequently be detected in wastewater, making it necessary to study their potential impacts on biological wastewater treatment processes. In this study, the shock-load impacts of TiO NPs were investigated at concentrations ranging between 1 and 200 mg L on nutrient removal, extracellular polymeric substances (EPSs), microbial activity in aerobic granular sludge (AGS), and algal-bacterial granular sludge (AB-AGS) bioreactors. The results indicated that low concentration (≤10 mg L) TiO NPs had no effect on microbial activity or the removal of chemical oxygen demand (COD), nitrogen, and phosphorus, due to the increased production of extracellular polymeric substances (EPSs) in the sludge. In contrast, the performance of both AGS and AB-AGS bioreactors gradually deteriorated as the concentration of TiO NPs in the influent increased to 50, 100, and 200 mg L. Specifically, the ammonia‑nitrogen removal rate in AGS decreased from 99.9 % to 88.6 %, while in AB-AGS it dropped to 91.3 % at 200 mg L TiO NPs. Furthermore, the nitrate‑nitrogen levels remained stable in AB-AGS, while NO-N was detected in the effluent of AGS at 100 and 200 mg L. Microbial activities change similarly as smaller decrease in the specific ammonia uptake rate (SAUR) and specific nitrate uptake rate (SNUR) was found in AB-AGS compared to those in AGS. Overall, the algal-bacterial sludge exhibited higher resilience against TiO NPs, which was attributed to a) higher EPS volume, b) smaller decrease in LB-EPS, and c) the favorable protein to polysaccharide (PN/PS) ratio. This in turn, along with the symbiotic relationship between the algae and bacteria, mitigates the toxic effects of nanoparticles.

摘要

二氧化钛纳米粒子(TiO NPs)广泛应用于各个领域,因此可以在废水中检测到,这就需要研究它们对生物废水处理过程的潜在影响。在这项研究中,研究了浓度在 1 至 200 mg/L 之间的 TiO NPs 对营养物质去除、胞外聚合物(EPS)、好氧颗粒污泥(AGS)和藻菌颗粒污泥(AB-AGS)生物反应器中微生物活性的冲击负荷影响。结果表明,由于污泥中胞外聚合物(EPS)的产量增加,低浓度(≤10 mg/L)的 TiO NPs 对微生物活性或化学需氧量(COD)、氮和磷的去除没有影响。相比之下,当进水 TiO NPs 浓度增加到 50、100 和 200 mg/L 时,AGS 和 AB-AGS 生物反应器的性能逐渐恶化。具体来说,AGS 的氨氮去除率从 99.9%降至 88.6%,而 AB-AGS 则降至 200 mg/L TiO NPs 时的 91.3%。此外,AB-AGS 中的硝酸盐氮水平保持稳定,而在 100 和 200 mg/L TiO NPs 时,AGS 出水中检测到 NO-N。微生物活性的变化也类似,与 AGS 相比,AB-AGS 中的比氨摄取率(SAUR)和比硝酸盐摄取率(SNUR)略有下降。总的来说,藻菌污泥对 TiO NPs 的抵抗力更高,这归因于 a)更高的 EPS 体积,b)LB-EPS 减少较小,和 c)有利的蛋白质与多糖(PN/PS)比值。这反过来又与藻类和细菌之间的共生关系一起,减轻了纳米颗粒的毒性影响。

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