首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Ammonium transformed into nitrous oxide via nitric oxide by Pseudomonas putida Y-9 under aerobic conditions without hydroxylamine as intermediate
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Ammonium transformed into nitrous oxide via nitric oxide by Pseudomonas putida Y-9 under aerobic conditions without hydroxylamine as intermediate

机译:在无氧条件下,通过羟胺在无氧条件下通过一氧化氮转化成氧化氮中的一氧化氮。没有羟胺作为中间体

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摘要

Previous studies have reported that hydroxylamine (NH2OH) is an inevitable intermediate of the ammonium (NH4+) oxidation pathway under aerobic conditions. In this study, Pseudomonas putida Y-9 was found to oxidize ammonium into N2O via NO without the accumulation of NH2OH and NO2- under aerobic conditions. NH2OH was nearly completely transformed into NO2- whether NH4+ was present in the medium, and NH4+ could accelerate the transformation of NH2OH to NO2- by promoting Y-9 growth. NH4+ was oxidized rapidly by Y-9 with or without the presence of NH2OH in the medium, and the decrease of total nitrogen reached 30.65 mg/L and 39.38 mg/L, respectively, which indicates that NH2OH inhibits the transformation efficiency of NH4+ to N2O. Gene amplification and enzyme assays demonstrated that ammonia monooxygenase doesn't exist in Y-9. All results show that NH4+ can be transformed into N2O via NO by Y-9 under aerobic conditions without NH2OH as intermediate.
机译:以前的研究报道,羟胺(NH 2 OH)是在有氧条件下铵(NH 4 +)氧化途径的不可避免的中间体。 在这项研究中,发现假单胞菌普赖达Y-9通过不存在NH 2 OH和NO2-在有氧条件下氧化成N 2 O中的铵。 NH 2OH几乎完全转化为NO 2-是否存在NH 4 +在培养基中存在,NH 4 +可以通过促进Y-9生长加速NH 2 OH的转化为NO 2。 NH 4 +通过Y-9快速氧化,在培养基中,没有NH 2 OH的存在,总氮的降低分别达到30.65mg / L和39.38mg / L,表明NH 2 OH抑制NH4 +至N2O的转化效率 。 基因扩增和酶测定表明,氨单氧结酶在Y-9中不存在。 所有结果表明,NH 4 +可通过Y-9在不良条件下通过Y-9转化为N2O,而没有NH 2 OH作为中间体。

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