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首页> 外文期刊>Journal of Bioscience and Bioengineering >Denitrification characteristics and pathways of a facultative anaerobic denitrifying strain, Pseudomonas denitrificans G1
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Denitrification characteristics and pathways of a facultative anaerobic denitrifying strain, Pseudomonas denitrificans G1

机译:兼致残性厌氧反硝化菌株的脱氮特性和途径,假单胞菌脱氮菌

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摘要

Excessive nitrate in aquaculture systems has attracted wide attention. To isolate novel aerobic denitrifying strain and characterize its nitrogen removal processes, a facultative anaerobic denitrification bacterium, identified as Pseudomonas denitrificans G1, was isolated from marine sediments. Strain G1 could grow and remove 90-98% of nitrate and 97-99% of nitrite under an aerobic or anaerobic condition in 24 h, with the total nitrogen removal rate of 33-38% (87-100 mg/L). The highest denitrification rate could reach 15.1 mg/(L$h). The suitable condition for the denitrification of G1 is C/N ratio 5-22, dissolved oxygen 0e4.68 mg/L, salinity 0-30 g NaCl/L, pH 7-9.5. Under the aerobic condition, G1 grew fast; however, the mass spectrographic analysis showed that the gas product was N2O. Under the anaerobic conditions, G1 grow relatively slowly, but could also achieve effective denitrification and the final product was N-2. In denitrification of aquaculture wastewater, strain G1 can remove 60.57% of nitrate and 36.36% of total nitrogen; meanwhile, there was a slight accumulation of ammonia nitrogen. P. denitrificans strain G1 has potential in denitrification processes for the treatment of aquaculture wastewater. However, the regulation of reaction conditions and gas products needs to be further studied. (C) 2019, The Society for Biotechnology, Japan. All rights reserved.
机译:水产养殖系统中过量的硝酸盐引起了广泛关注。为了分离新型好氧反硝化菌并对其脱氮过程进行表征,从海洋沉积物中分离到一株兼性厌氧反硝化细菌,命名为脱氮假单胞菌G1。G1菌株在好氧或厌氧条件下生长24h,可去除90-98%的硝酸盐和97-99%的亚硝酸盐,总氮去除率为33-38%(87-100mg/L)。最高脱氮率可达15.1mg/(L$h)。G1反硝化的适宜条件为C/N比5-22,溶解氧为0e4。68毫克/升,盐度0-30克氯化钠/升,pH 7-9.5。在有氧条件下,G1生长迅速;然而,质谱分析表明气体产物是N2O。在厌氧条件下,G1生长相对缓慢,但也能实现有效的反硝化,最终产物为N-2。在水产养殖废水反硝化中,菌株G1对硝酸盐和总氮的去除率分别为60.57%和36.36%;同时,氨氮有轻微的积累。反硝化细菌G1在水产养殖废水的反硝化处理中具有潜在的应用前景。然而,反应条件和气体产物的调节需要进一步研究。(C) 2019年,日本生物技术学会。版权所有。

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