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Research on 170-estradiol Degradation Bacteria Isolated from Activated Sludge and its Degrade Characteristics

机译:从活性污泥中分离的170-雌二醇降解细菌及其降解特性研究

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17?-estradiol(E2) has estrogenic activity at very low concentrations and are emerging as a major concern for water quality. Great endeavors have been done on the removal of E2 in wastewater. This article was mainly researched the isolated of E2 degradation bacteria from activated sludge and its degradation characteristics of the bacteria were also researched. According to its physiological biochemical results analysis, this strain was identified as K.pnem. pneumoniae .This strain can use E2 as sole carbon and energy source for growth. The optimal temperature, pH for the bacterial growth and degradation of E2 was 30°C,7.0, respectively, meanwhile degradation rate reached to 86% and 87%;;degradation rate and bacterial growth increased along with E2 concentration increasing, 81% E2 was degraded when E2 concentration is 30mg/L, degradation rate decreased when E2>50mg/L;;metal ions such as Fe~(2+) and Zn~(2+) almost have no effect on E2 degradation and bacterial growth;;Mn2+ can promote growth of strain and degradation, while, metal ions such as Hg~(2+), Ag~+,Cu~(2+) have negative effect on bacterial growth and degradation. The degradation process for E2 with initial concentration of lmg/L indicated that the degradation rate of E2 by strain within 7days was 98%.
机译:17-雌二醇(E2)在非常低的浓度下具有雌激素活性,并且是作为水质的主要问题。在废水中取出E2,已经完成了很大的努力。本文主要研究了来自活性污泥的e2降解细菌的分离,还研究了细菌的降解特征。根据其生理生化结果分析,该菌株被鉴定为K.PNEM。肺炎。菌株可以使用E2作为唯一的碳和能量来源的生长。 e2的细菌生长和降解的最佳温度分别为30℃,7.0,同时达到86%和87%;;降解速率和细菌生长随着E2浓度的增加而增加,81%E2是当E2浓度为30mg / L时,降解,当E2> 50mg / L时降解率降低;金属离子如Fe〜(2+)和Zn〜(2+)几乎对E2降解和细菌生长没有影响; Mn2 +可以促进应变和降解的生长,而金属离子如Hg〜(2+),Ag〜+,Cu〜+,Cu〜(2+)对细菌生长和降解具有负面影响。具有初始浓度Lmg / L的E2的降解方法表明,7日内,E2的降解速率为98%。

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