Effect Of Graphene Oxide Nanoparticles on the Performance of Aerobic Granular Sludge Treatment System

A. Kedves, Andrea Rónavári, Z. Kónya
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Abstract

contrast, at 25 mg/L GO NPs, NH 4 -N concentration in the effluent increased marginally after 5.5 day and was 2.39 mg/L after 7 days. In the case of 75 and 95 mg/L GO NPs, the effluent ammonia concentration continuously increased to 13.41 and 21.75 mg/L. The addition of GO NPs showed similar effects on COD removal efficiency than in case of NH 4 -N removal. In contrast, GO NPs influenced negatively the phosphorus removal, even at low concentration. When the SWW contained 15 and 95 mg/L GO NPs, the PO 4 - P concentration was 3.42 and 6.38 mg/L. Similar observations were also reported, wherein ZnO and CuO NPs negatively influenced the phosphorus removal in case of AGS [6,7]. At 15, 25, and 35 mg/L GO NPs, the secretion of polysaccharide (PS) slightly decreased, whereas the concentration of protein (PN) increased considerably ( Figure 1 )
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氧化石墨烯纳米颗粒对好氧颗粒污泥处理系统性能的影响
相比之下,在25 mg/L GO NPs下,出水nh4 -N浓度在5.5 d后略有增加,7 d后为2.39 mg/L。当GO NPs为75和95 mg/L时,出水氨浓度持续升高,分别达到13.41和21.75 mg/L。添加氧化石墨烯NPs对COD去除率的影响与添加nh4 -N的效果相似。相比之下,即使在低浓度下,氧化石墨烯NPs也会对除磷产生负面影响。当SWW中GO NPs含量为15和95 mg/L时,po4 - P浓度分别为3.42和6.38 mg/L。类似的观察结果也有报道,其中ZnO和CuO NPs对AGS情况下的除磷产生负面影响[6,7]。在15、25和35 mg/L GO NPs下,多糖(PS)的分泌略有下降,而蛋白质(PN)的浓度显著增加(图1)。
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