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A comparison of biodegradation kinetic models applied to estrogen removal with nitrifying activated sludge

机译:硝化活性污泥去除雌激素的生物降解动力学模型的比较

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The biological degradation of estrone (E1), estradiol (E2) and ethinylestradiol (EE2) was studied in batch experiments at typical concentration levels using nitrifying activated sludge from a membrane bioreactor (MBR). Since first-order, pseudo first-order and Monod-type kinetics were observed. Pseudo first order kinetic was reformulated using only the soluble concentrations S and assuming adsorption coefficient K_D of the estrogens. For the adsorption coefficients K_D determination, activated sludge from MBR was spiked with the respective target compounds and stirred. Finally, the water was analyzed. The K_D values of estrogens ranged from 0.323 to 0.474 L/g. Greater than 98% of E1, E2 and EE2 were found to be removed in batch reactors. The measured data were linearly regressed giving R ~2 values ranging from 0.748 to 0.990. According to these results, the biodegradation kinetics were adjusted to pseudo first-order assuming adsorption coefficient K_D and Monod-type kinetic. The biodegradation rate constant k of the estrogens were: E1 and E2 > 78.52 L/g_(VSS) d and 12.41 L/g_(VSS) d for EE2. Monod-type kinetic indicates that these compounds are biodegradated by co-metabolism. E2 was oxidized into E1.
机译:使用来自膜生物反应器(MBR)的硝化活性污泥,在典型浓度水平下,通过分批实验研究了雌酮(E1),雌二醇(E2)和炔雌醇(EE2)的生物降解。由于一级,观察到伪一级和Monod型动力学。仅使用可溶性浓度S并假设雌激素的吸附系数K_D来重新构造伪一级动力学。为了确定吸附系数K_D,将来自MBR的活性污泥与相应的目标化合物掺混并搅拌。最后,对水进行了分析。雌激素的K_D值在0.323至0.474L / g的范围内。发现在分批反应器中去除了超过98%的E1,E2和EE2。对测量数据进行线性回归,得出R〜2值介于0.748至0.990之间。根据这些结果,假定吸附系数K_D和Monod型动力学,将生物降解动力学调整为伪一级。雌激素的生物降解速率常数k为:E1和E2> 78.52 L / g_(VSS)d和EE2为12.41 L / g_(VSS)d。 Monod型动力学表明这些化合物通过共代谢生物降解。 E2被氧化成E1。

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