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Energy Effectiveness of Direct UV and UV/H2O2Treatment of Estrogenic Chemicals in Biologically Treated Sewage

机译:生物处理污水中直接紫外线和紫外线/过氧化氢处理雌激素化学物质的能量效率

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Continuous exposure of aquatic life to estrogenic chemicals via wastewater treatment plant effluents has in recent years received considerable attention due to the high sensitivity of oviparous animals to disturbances of estrogen-controlled physiology. The removal efficiency by direct UV and the UV/H2O2treatment was investigated in biologically treated sewage for most of the estrogenic compounds reported in wastewater. The investigated compounds included parabens, industrial phenols, sunscreen chemicals, and steroid estrogens. Treatment experiments were performed in a flow through setup. The effect of different concentrations of H2O2and different UV doses was investigated for all compounds in an effluent from a biological wastewater treatment plant. Removal effectiveness increased with H2O2concentration until 60 mg/L. The treatment effectiveness was reported as the electrical energy consumed per unit volume of water treated required for 90% removal of the investigated compound. It was found that the removal of all the compounds was dependent on the UV dose for both treatment methods. The required energy for 90% removal of the compounds was between 28 kWh/m3(butylparaben) and 1.2 kWh/m3(estrone) for the UV treatment. In comparison, the UV/H2O2treatment required between 8.7 kWh/m3for bisphenol A and benzophenone-7 and 1.8 kWh/m3for ethinylestradiol.
机译:由于卵生动物对雌激素控制的生理学的高度敏感性,近年来通过废水处理厂的废水使水生生物持续暴露于雌激素化学物质中已引起了广泛的关注。对于废水中报告的大多数雌激素化合物,在生物处理的污水中研究了直接紫外线和紫外线/过氧化氢处理的去除效率。被研究的化合物包括对羟基苯甲酸酯,工业酚,防晒剂和类固醇雌激素。处理实验是通过设置进行的。研究了生物废水处理厂废水中所有化合物的不同浓度的H2O2和不同的紫外线剂量的影响。去除效果随着H2O2浓度的增加而增加,直至60μmg/ L。将治疗效果报告为90%去除所研究化合物所需的单位体积水处理所消耗的电能。已经发现,对于两种处理方法,所有化合物的去除均取决于UV剂量。 90%的化合物去除所需的能量在28 treatmentkWh / m3(对羟基苯甲酸丁酯)和1.2 kWh / m3(雌酮)之间进行紫外线处理。相比之下,UV / H2O2处理对双酚A和二苯甲酮7的要求为8.7 kWh / m3,对于乙炔雌二醇的要求为1.8 kWh / m3。

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