Photobacterium sp. NNA4, an efficient hydroxylamine-transforming heterotrophic nitrifier/aerobic denitrifier
-
Add time:08/05/2019 Source:sciencedirect.com
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°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 N2 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).
We also recommend Trading Suppliers and Manufacturers of HYDROXYLAMINE NITRATE (cas 13465-08-2). Pls Click Website Link as below: cas 13465-08-2 suppliers
Prev:Carbonyl scavenger and antiatherogenic effects of hydrazine derivatives
Next:Isothermal decomposition of hydroxylamine and HYDROXYLAMINE NITRATE (cas 13465-08-2) in aqueous solutions in the temperature range 80–160 °C) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Thermal decomposition of hydroxylamine in aqueous solutions in the presence of NaCl, KCl or Na2SO4 in the temperature range 120 °C–140 °C08/12/2019
- Peroxymonosulfate activation by hydroxylamine-drinking water treatment residuals for the degradation of atrazine08/11/2019
- Model for predicting HYDROXYLAMINE NITRATE (cas 13465-08-2) stability in plutonium process solutions08/10/2019
- Application of a HYDROXYLAMINE NITRATE (cas 13465-08-2) stability model to plutonium purification process equipment08/09/2019
- HYDROXYLAMINE NITRATE (cas 13465-08-2) self-catalytic kinetics study with adiabatic calorimetry08/08/2019
- Thermal decomposition hazard evaluation of HYDROXYLAMINE NITRATE (cas 13465-08-2)08/07/2019
- Isothermal decomposition of hydroxylamine and HYDROXYLAMINE NITRATE (cas 13465-08-2) in aqueous solutions in the temperature range 80–160 °C08/06/2019
-
Health and Chemical more >
-
Related Products