首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Phosphorus and nitrogen removal by a novel phosphate-accumulating organism, Arthrobacter sp. HHEP5 capable of heterotrophic nitrification-aerobic denitrification: Safety assessment, removal characterization, mechanism exploration and wastewater treatment
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Phosphorus and nitrogen removal by a novel phosphate-accumulating organism, Arthrobacter sp. HHEP5 capable of heterotrophic nitrification-aerobic denitrification: Safety assessment, removal characterization, mechanism exploration and wastewater treatment

机译:新型磷酸盐积聚生物体的磷和氮去除,Arthrobacter sp。 HHEP5能够异养硝化 - 有氧脱氮:安全评估,去除表征,机制勘探和废水处理

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摘要

A novel phosphate-accumulating organism (PAO), Arthrobacter sp. HHEP5 was isolated from mariculture ef- fluents. It produced no hemolysin and was susceptible to most antibiotics. It had removal efficiencies of above 99% for 1-10 mg/L phosphorus at 18-28 degrees C, pH 5.5-8.5, salinities 0-3%, C/N ratios 5-20, P/N ratios 0.1-0.2 and 20-260 rpm. It exhibited simultaneous aerobic phosphorus removal, nitrification and denitrification with the highest ammonium, nitrite, nitrate removal efficiencies of 99.87%, 100%, 99.37%. Phosphorus removal was accomplished by assimilating phosphate with the existence of polyphosphate kinase completely under aerobic condition. Genes involved in nitrogen removal were amplified . 99% of phosphorus and 95% of nitrogen in both mariculture and domestic wastewater were removed by HHEP5. This study provided sound methods for future screening of PAOs and new perspectives for renewed cognition of phosphorus removal process. Wide adaptation and remarkably aerobic phosphorus, nitrogen removal performances would make HHEP5 a promising candidate in wastewater treatment.
机译:一种新的磷酸盐积累生物(PAO),Arthrobacter sp。 HHEP5从海水养殖中分离出来。它没有产生溶血素,易患大多数抗生素。在1-10mg / l磷中的去除效率为1-10mg / l,在18-28℃,pH 5.5-8.5,盐度0-3%,C / N比例5-20,P / N比率0.1-0.2和20-260 rpm。它表现出同时的有氧磷去除,硝化和反硝化,含量最高,硝酸盐,硝酸盐去除效率为99.87%,100%,99.37%。通过在有氧条件下完全在多磷酸锌激酶的存在中同化磷酸盐来完成磷去除。扩增参与氮去除的基因。 HHEP5将99%的磷和95%的氮含量在水上养殖和国内废水中除去。本研究提供了用于未来筛查PAOS和新的磷去除过程的认知的新观点的声音方法。宽适应和非常有氧磷,氮去除性能将使HHEP5成为废水处理中有希望的候选者。

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