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Photobacterium sp. NNA4, an efficient hydroxylamine-transforming heterotrophic nitrifier/aerobic denitrifier

机译:Photobacterium sp。 NNA4,一种高效的羟胺转化的异养硝化亚硝化亚硝化亚硝化亚硝化器

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摘要

An efficient heterotrophic nitrifying/aerobic denitrifying strain, Photobacterium sp. NNA4 was isolated from a recirculating aquaculture system (RAS). NNA4 was capable of utilizing ammonia, nitrate or nitrite as sole N-source with maximal removal rates of 12.5 mg/L/h for NH4+-N, 16.4 mg/L/h for NO3--N, and 4.5 mg/L/h for NO2--N, respectively. Optimal nitrification conditions were: sodium succinate as C-source, 30-37 degrees C, NaCl 1-4%, pH 7.0-8.0, dissolved oxygen 5.89 mg/L, C/N > 10. Gas chromatography/mass spectrometry and gas chromatography/isotope ratio mass spectrometry analyses showed that N-2 and N2O were aerobic denitrification products of nitrite and nitrate. NNA4 could tolerate high concentration of hydroxylamine and displayed efficient hydroxylamine-transforming capability. Hydroxylamine oxidoreductase activity using potassium ferricyanide as electron acceptor was 0.042 U. Results revealed that strain NNA4 could oxidize NH2OH directly to N2O at aerobic conditions. In view of its high removal ability of inorganic nitrogen pollutants and broad salinity tolerance range, NNA4 has great potential in denitrification treatment of types of wastewater with either low salinity (e.g., municipal facilities) or high salinity (e.g., aquaculture, seafood processing). (C) 2019, The Society for Biotechnology, Japan. All rights reserved.
机译:一种有效的异养硝化/有氧脱氮菌株,光杆菌SP。从再循环水产养殖系统(RAS)中分离NNA4。 NNA4能够利用氨,硝酸盐或亚硝酸盐作为唯一的N-源,最大去除率为NH 4 + -N,16.4mg / L / H的NO 3 -N,4.5mg / L / h对于No2-n。最佳硝化条件是:琥珀酸钠作为C源,30-37℃,NaCl 1-4%,pH 7.0-8.0,溶解氧5.89mg / L,C / N> 10。气相色谱/质谱和气相色谱法/同位素比质谱分析表明,N-2和N2O是亚硝酸盐和硝酸盐的有氧脱氮产物。 NNA4可耐受高浓度的羟胺并显示出高效的羟胺转化能力。使用铁氰化钾作为电子受体的羟胺氧化酶活性为0.042 U.结果显示菌株NNA4可以在有氧条件下直接将NH 2 OH氧化至N2O。鉴于其高氮污染物和宽盐度耐受范围的高去除能力,NNA4具有较大的裂解处理废水类型的潜力,具有低盐度(例如,市政设施)或高盐度(例如,水产养殖,海产加工)。 (c)2019年,日本生物技术协会。版权所有。

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