首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Comparison and distribution of copper oxide nanoparticles and copper ions in activated sludge reactors
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Comparison and distribution of copper oxide nanoparticles and copper ions in activated sludge reactors

机译:活性污泥反应器中氧化铜纳米粒子和铜离子的比较和分布

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Copper oxide nanoparticles (CuO NPs) are being increasingly applied in the industry which results inevitably in the release of these materials into the hydrosphere. In this study, simulated waste-activated sludge experiments were conducted to investigate the effects of Copper Oxide NPs at concentrations of 0.1, 1, 10 and 50 mg/L and to compare it with its ionic counterpart (CuSO4). It was found that 0.1 mg/L of CuO NPs had negligible effects on Chemical Oxygen Demand (COD) and ammonia removal. However, the presence of 1, 10 and 50 mg/L of CuO NPs decreased COD removal from 78.7% to 77%, 52.1% and 39.2%, respectively (P < 0.05). The corresponding effluent ammonium (NH4-N) concentration increased from 14.9 mg/L to 18, 25.1 and 30.8 mg/L, respectively. Under equal Cu concentration, copper ions were more toxic towards microorganisms compared to CuO NPs. CuO NPs were removed effectively (72-93.2%) from wastewater due to a greater biosorption capacity of CuO NPs onto activated sludge, compared to the copper ions (55.1-83.4%). The SEM images clearly showed the accumulation and adsorption of CuO NPs onto activated sludge. The decrease in Live/dead ratio after 5 h of exposure of CuO NPs and Cu2+ indicated the loss of cell viability in sludge flocs.
机译:氧化铜纳米颗粒(CuO NPs)越来越多地应用于工业中,不可避免地导致这些材料释放到水圈中。在这项研究中,进行了模拟废物活化污泥实验,以研究浓度为0.1、1、10和50 mg / L的氧化铜NPs的影响,并将其与离子对应物(CuSO4)进行比较。发现0.1 mg / L的CuO NPs对化学需氧量(COD)和氨去除的影响可忽略不计。但是,CuO NPs分别为1、10和50 mg / L时,COD去除率分别从78.7%降低到77%,52.1%和39.2%(P <0.05)。相应的氨氮浓度从14.9 mg / L分别增加到18、25.1和30.8 mg / L。与CuO NPs相比,在相同的Cu浓度下,铜离子对微生物的毒性更大。与铜离子(55.1-83.4%)相比,由于CuO NPs在活性污泥上的更大的生物吸附能力,可从废水中有效去除(72-93.2%)CuO NPs。 SEM图像清楚地表明了CuO NPs在活性污泥上的积累和吸附。 CuO NPs和Cu2 +暴露5 h后生/死比的降低表明污泥絮凝物中细胞活力的丧失。

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