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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Simultaneous removal of nitrogen and phosphorous by heterotrophic nitrification-aerobic denitrification of a metal resistant bacterium Pseudomonas putida strain NP5
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Simultaneous removal of nitrogen and phosphorous by heterotrophic nitrification-aerobic denitrification of a metal resistant bacterium Pseudomonas putida strain NP5

机译:通过抗性硝化碳含量的异养硝化硝化菌普赖达菌株NP5同时去除氮气氮化氮和磷

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摘要

A novel strain NP5 with efficient heterotrophic nitrification, aerobic denitrification and phosphorus accumulation ability was isolated and identified as Pseudomonas putida strain NP5. The removed ammonium and phosphate were mainly converted into intracellular components by assimilation, and negligible nitrification intermediates and N2O were accumulated during heterotrophic nitrification. In addition, the optimal conditions for nutrient removal were: succinate as carbon source, C/N 10, P/N 0.2, temperature 30 degrees C, salinity 0% and shaking speed 160 rpm. Besides, strain NP5 possessed an exceptional heavy metal and nanoparticles resistance. Cr6+ was found to be the most toxic among the tested metals, and it could be removed simultaneously. Moreover, an obvious phosphorus release was observed under anaerobic condition, and repeated exposure to the anaerobic/aerobic conditions could significantly improve the nutrient removal. Furthermore, the successful expression of key enzymes for nitrogen and phosphorous removal provided additional evidence for possibility of simultaneous nitrification, denitrification and phosphorus removal.
机译:分离出具有有效异养硝化,有氧脱氮和磷积累能力的新型菌株NP5,并鉴定为普赖达菌株NP5。除去除去的铵和磷酸盐主要通过同化转化为细胞内组分,并且在异养硝化过程中累积可忽略的硝化中间体和N2O。此外,营养去除的最佳条件为:琥珀酸盐作为碳源,C / N 10,P / N 0.2,温度30℃,盐度0%和摇动速度160rpm。此外,菌株NP5具有出色的重金属和纳米颗粒耐药性。发现Cr6 +是测试金属中最有毒的,可以同时除去。此外,在厌氧条件下观察到明显的磷释放,重复暴露于厌氧/有氧条件下可以显着提高营养物去除。此外,用于氮和磷去除的关键酶的成功表达为同时硝化,脱氮和去除的可能性提供了额外的证据。

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