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Biological Treatment of Cu(ll) Containing Synthetic Wastewater in an Activated Sludge Unit: Copper(ll) Ion Toxicity

机译:活性污泥中含Cu(II)合成废水的生物处理:铜(II)离子毒性

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Synthetic wastewater containing Cu(II) in concentrations between 0 and 22 mg L~(-1) was treated in an activated sludge unit, and chemical oxygen demand (COD), Cu(II), and toxicity removals were investigated. The feed Cu(II)_o concentrations were varied between 0 and 22 mg L~(-1) while the feed COD_o, hydraulic residence time (HRT) and solids retention time (SRT) were kept constant at 2,000 ± 100 mg L~(-1), 10 h and 10 days, respectively. The effluent COD_e and Cu(II)_e concentrations, toxicity, and the sludge volume index (SVI) increased, but the biomass concentration in the aeration tank decreased with the feed Cu(II)_o content due to Cu(II) toxicity on the organisms. The feed and the effluent toxicities were determined by using the resazurin assay based on dehydrogenase activity. Cu(II) toxicity in the feed and the effluent wastewater increased linearly with the Cu(II) concentrations. Adverse effects of Cu(II) were more pronounced for the feed Cu(II)_o above 10 mg L~(-1), resulting in sharp decreases in biomass concentration and percent COD removal. A kinetic model describing the Cu(II) inhibition on COD removal rate was developed and the Cu(II) inhibition constant was found to be 2.85 mg L~(-1).
机译:在活性污泥装置中处理浓度为0至22 mg L〜(-1)的含Cu(II)合成废水,并研究了化学需氧量(COD),Cu(II)和毒性去除。进料Cu(II)_o的浓度在0至22 mg L〜(-1)之间变化,而进料COD_o,水力停留时间(HRT)和固体保留时间(SRT)保持恒定在2,000±100 mg L〜( -1),10小时和10天。废水中COD_e和Cu(II)_e的浓度,毒性以及污泥体积指数(SVI)有所增加,但是曝气池中的生物量浓度随着进料中Cu(II)_o含量的降低而降低,这是由于Cu(II)对铜的毒性所致。生物。通过基于脱氢酶活性的刃天青测定法测定饲料和废水的毒性。饲料和废水中的Cu(II)毒性随Cu(II)浓度线性增加。 Cu(II)_o高于10 mg L〜(-1)时,Cu(II)的不良反应更为明显,导致生物量浓度和COD去除百分率急剧下降。建立了描述Cu(II)对COD去除率抑制作用的动力学模型,发现Cu(II)的抑制常数为2.85 mg L〜(-1)。

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