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首页> 外文期刊>Biochemical Engineering Journal >Sludge/water partition and biochemical transformation of estrone and 17β-estradiol in a pilot-scale step-feed anoxic/oxic wastewater treatment system
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Sludge/water partition and biochemical transformation of estrone and 17β-estradiol in a pilot-scale step-feed anoxic/oxic wastewater treatment system

机译:中试规模分步进料缺氧/有氧废水处理系统中雌酮和17β-雌二醇的污泥/水分配和生化转化

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This study investigated biodegradation, transformation and sludge/water partition of two natural estrogens - estrone (E1) and 17β-estradiol (E2) - in a pilot-scale step-feed anoxic/oxic (A/O) wastewater treatment system. The results show that the total amounts of E1 and E2 (E1 + E2) in the water phase were approximately 9-23% of those in the sludge phase in the reactor tanks. The estrogens accumulated in the return sludge led to the increase in the estrogen concentration in the first-stage anoxic zone. The biodegradation of E1 and E2 in the first-stage aerobic zone was highly efficient. The sludge/water partition coefficients (LogK_d) of E1 and E2 were gradually increased from 2.3 and 2.6 in the first stage to 3.2 and 3.3 in the third stage, respectively, and Log K_d of E2 was higher than that of E1 in each A/0 stage. In addition, the Log K_d values of E1 and E2 were larger in the aerobic zones than in the anoxic zones. Under six operation conditions tested, there was a linear relationship between the concentrations of E1 and E2 in the water phase, indicating the transformation between E1 and E2. The calculated mutual conversion equilibrium constant (K) for the transformation between E1 and E2 was significantly higher in the anoxic zones (0.38-0.81) than in the aerobic zones (0.08-0.24).
机译:这项研究调查了中试分步进料缺氧/有氧(A / O)废水处理系统中两种天然雌激素-雌酮(E1)和17β-雌二醇(E2)的生物降解,转化和污泥/水分配。结果表明,水相中E1和E2的总量(E1 + E2)约为反应罐中污泥相中E9和E2总量的9-23%。回流污泥中积累的雌激素导致第一阶段缺氧区的雌激素浓度增加。 E1和E2在第一阶段好氧区的生物降解效率很高。 E1和E2的污泥/水分配系数(LogK_d)从第一阶段的2.3和2.6逐渐增加到第三阶段的3.2和3.3,并且每个A /中E2的Log K_d高于E1。 0级。此外,好氧区的E1和E2的Log K_d值大于缺氧区的Log K_d值。在测试的六个操作条件下,水相中E1和E2的浓度之间存在线性关系,表明E1和E2之间的转化。在缺氧区(0.38-0.81)中计算出的E1和E2之间的转化的相互转化平衡常数(K)明显高于有氧区(0.08-0.24)。

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