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Effects of CeO2 nanoparticles on system performance and bacterial community dynamics in a sequencing batch reactor

机译:CeO2纳米颗粒对测序间歇反应器中系统性能和细菌群落动态的影响

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摘要

The effects of CeO2 nanoparticles (NPs) on the system performance and the bacterial community dynamics in a sequencing batch reactor (SBR) were investigated, along with the fate and removal of CeO2 NPs within the SBR. Significant impact was observed on nitrification; NH4+-N removal efficiency decreased from almost 100% to around 70% after 6 days of continuous exposure to 1.0 mg/L of CeO2 NPs, followed by a gradual recovery until a stable value of around 90% after 20 days. Additionally, CeO2 NPs also led to a significant increase in the protein content in the soluble microbial products, showing the disruptive effects of CeO2 NPs on the extracellular polymeric substance matrix and related activated sludge structure. Denaturing gradient gel electrophoresis analysis showed remarkable changes in the bacterial community structure in the activated sludge after exposure to CeO2 NPs. CeO2 NPs were effectively removed in the SBR mainly via sorption onto the sludge. However, the removal efficiency decreased from 95 to 80% over 30 days. Mass balance evaluation showed that up to 50% of the NPs were accumulated within the activated sludge and were removed with the waste sludge.
机译:研究了CeO2纳米颗粒(NPs)对系统性能和测序分批反应器(SBR)中细菌群落动力学的影响,以及SBR中CeO2 NP的去向和清除。观察到对硝化的重大影响;连续暴露于1.0 mg / L的CeO2 NPs 6天后,NH4 + -N的去除效率从几乎100%降低到大约70%,然后逐渐恢复直到20天后稳定在90%左右。另外,CeO2 NPs还导致可溶性微生物产品中蛋白质含量的显着增加,显示了CeO2 NPs对细胞外聚合物质基质和相关活性污泥结构的破坏作用。变性梯度凝胶电泳分析表明,暴露于CeO2 NPs后,活性污泥中细菌群落结构发生了显着变化。 CeO2 NPs在SBR中的去除主要是通过吸附到污泥上。但是,去除效率在30天内从95%降至80%。质量平衡评估表明,多达50%的NP积聚在活性污泥中,并与废物污泥一起去除。

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