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Evaluation of nitrate removal by continuous culturing of an aerobic denitrifying bacterium, Paracoccus pantotrophus

机译:通过持续培养好氧反硝化细菌泛副球菌来评估硝酸盐的去除

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Nitrate removal under aerobic conditions was investigated using pure cultures of Paracoccus pantotrophus, which is a well-known aerobic-denitrifying (AD) bacterium. When a high concentration of cultures with a high carbonitrogen (C/N) ratio was preserved at the beginning of batch experiments, subsequently added nitrate was completely removed. When continuous culturing was perpetuated, a high nitrate removal rate (66.5%) was observed on day 4 post-culture, although gradual decreases in AD ability with time were observed. The attenuation in AD ability was probably caused by carbon limitation, because when carbon concentration of inflow water was doubled, nitrate removal efficiency improved from 18.1% to 59.6%. Bacterial community analysis using the polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) method showed that P. pantotrophus disappeared in the suspended medium on day 8 post-culture, whereas other bacterial communities dominated by Acidovorax sp. appeared. Interestingly, this replaced bacterial community also showed AD ability. As P. pantotrophus was detected as attached colonies around the membrane and bottom of the reactor, this bacterium can therefore be introduced in a fixed form for treatment of wastewater containing nitrate with a high C/N ratio.
机译:使用好氧副球菌的纯培养物研究了好氧条件下的硝酸盐去除。当在分批实验开始时保留了具有高碳/氮(C / N)比的高浓度培养物时,随后添加的硝酸盐将被完全去除。当持续培养时,尽管观察到AD能力随时间逐渐降低,但在培养后第4天观察到较高的硝酸盐去除率(66.5%)。 AD能力的下降可能是由于碳限制所致,因为当流入水中的碳浓度增加一倍时,硝酸盐去除效率从18.1%提高到59.6%。使用聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)方法进行的细菌群落分析表明,在培养后第8天,悬浮培养基中的泛营养假单胞菌消失了,而其他细菌群落以Acidovorax sp占优势。出现了。有趣的是,这种被替换的细菌群落也显示出AD能力。由于检出了P. pantotrophus作为反应器膜和底部周围的附着菌落,因此可以固定形式引入该细菌,以处理含有高C / N比硝酸盐的废水。

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