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Fate of phthalate esters in municipal wastewater treatment plant and their environmental impact

机译:邻苯二甲酸酯在市政污水处理厂中的去向及其对环境的影响

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The fate and distribution of six phthalate esters (PAEs) in a municipal wastewater treatment plant (WWTP) employing an anaerobic/anoxic/oxic (A(2)/O) process were investigated. The process achieved relatively high removal efficiencies of PAEs in the range 55-97. It illustrated that biotransformation and sludge-adsorption were major elimination pathways by analyzing the mass balance and flux of PAEs. About 83 of Sigma PAEs was entirely removed by A(2)/O bioreactors indicating biotransformation is the dominant removal mechanism PAEs with shorter alkyl chain length and higher water solubility were more biodegradable. Less than 6 of Sigma PAEs were removed by excess sludge adsorption. The sludge-adsorption capacity of PAE depends on its hydrophobicity. The levels and fluxes of PAEs were analyzed by monitoring different sites of the receiving river of the WWTP effluent to clarify the potential impact of discharge. Daily flux of PAEs upstream and downstream of the discharging point were 113 kg.d(-1) and 205 kg.d(-1), respectively, which were higher than the effluent devotion value of 6.67 kg.d(-1). It suggested that the emissions from the WWTP appeared to be less than those from the other possible sources, such as potential untreated discharge and surface runoff. Improvement of wastewater collection efficiencies is necessary to eliminate the PAE load in the urban river.
机译:研究了采用厌氧/缺氧/含氧(A(2)/O)工艺的城市污水处理厂(WWTP)中六种邻苯二甲酸酯(PAEs)的归宿和分布。该工艺实现了相对较高的PAEs去除效率,在55-97%的范围内。通过分析PAEs的质量平衡和通量,说明生物转化和污泥吸附是主要的消除途径。约83%的Sigma PAEs被A(2)/O生物反应器完全去除,表明生物转化是主要的去除机制,烷基链长度较短、水溶性较高的PAEs更易生物降解。通过过量的污泥吸附去除了不到 6% 的 Sigma PAE。PAE的污泥吸附能力取决于其疏水性。通过监测污水处理厂污水接收河的不同地点,分析了PAEs的水平和通量,以明确排放的潜在影响。排放点上下游PAEs日通量分别为113 kg.d(-1)和205 kg.d(-1),高于6.67 kg.d(-1)的出水量值。它表明,污水处理厂的排放量似乎少于其他可能来源的排放量,例如潜在的未经处理的排放物和地表径流。提高废水收集效率对于消除城市河流中的PAE负荷是必要的。

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