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Kinetics of Biological Removal of the Selected Micropollutants and Their Effect on Activated Sludge Biomass

机译:精选微污染物的生物去除动力学及其对活性污泥生物量的影响

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摘要

17-Ethinylestradiol (EE2), diclofenac (DCF), and 4-nonylphenol (4NP) belong to the most common micropollutants (MPs) occurring in municipal wastewater treatment plants (WWTPs). The WWTPs are the primary barrier against the spread of micropollutants in the environment. The aim of this work was to study the kinetics of biological removal of the three aforementioned micropollutants from wastewater and to check whether the acclimation of biomass influenced on the kinetic parameters. In addition, the effect of MPs on the biochemical activity of microorganisms was tested. DCF inhibited the respiration activity of biomass to the highest extent, followed by 4NP and EE2, respectively. DCF occurred to be less susceptible to microbial decomposition than the other two MPs and was removed from wastewater at the lowest degree of 58%. The degrees of removal of EE2 and 4NP were higher than that of DCF and equal to 93 and 71%, respectively. The kinetic parameters determined in this work can be used in modelling and simulation of the removal of micropollutants from wastewater. They improve the predictive ability of the biokinetic models. The acclimation of the biomass to the relevant micropollutant does not influence on the kinetic parameters of biomass growth; however, it causes the increase of the yield coefficient for heterotrophic biomass.
机译:17-乙炔雌二醇(EE2),双氯芬酸(DCF)和4-壬基苯酚(4NP)属于市政废水处理厂(WWTP)中最常见的微污染物(MPs)。污水处理厂是防止微污染物在环境中扩散的主要障碍。这项工作的目的是研究从废水中生物去除上述三种微量污染物的动力学,并检查生物量的驯化是否对动力学参数产生影响。另外,测试了MP对微生物生化活性的影响。 DCF最大程度地抑制了生物质的呼吸活性,其次是4NP和EE2。 DCF与其他两个MP相比,对微生物的分解更不敏感,并以58%的最低水平从废水中去除。 EE2和4NP的去除率高于DCF,分别为93%和71%。在这项工作中确定的动力学参数可以用于建模和模拟废水中微量污染物的去除。它们提高了生物动力学模型的预测能力。使生物质适应相关的微污染物不会影响生物质生长的动力学参数。然而,这导致异养生物质的产量系数增加。

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