首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Nitrogen Removal Characteristics of a Newly Isolated Indigenous Aerobic Denitrifier from Oligotrophic Drinking Water Reservoir Zoogloea sp. N299
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Nitrogen Removal Characteristics of a Newly Isolated Indigenous Aerobic Denitrifier from Oligotrophic Drinking Water Reservoir Zoogloea sp. N299

机译:少营养饮用水水库Zoogloea sp。的一种新分离的土著好氧反硝化器的脱氮特性。 N299

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摘要

Nitrogen is considered to be one of the most widespread pollutants leading to eutrophication of freshwater ecosystems, especially in drinking water reservoirs. In this study, an oligotrophic aerobic denitrifier was isolated from drinking water reservoir sediment. Nitrogen removal performance was explored. The strain was identified by 16S rRNA gene sequence analysis as Zoogloea sp. N299. This species exhibits a periplasmic nitrate reductase gene (napA). Its specific growth rate was 0.22 h−1. Obvious denitrification and perfect nitrogen removal performances occurred when cultured in nitrate and nitrite mediums, at rates of 75.53% ± 1.69% and 58.65% ± 0.61%, respectively. The ammonia removal rate reached 44.12% ± 1.61% in ammonia medium. Zoogloea sp. N299 was inoculated into sterilized and unsterilized reservoir source waters with a dissolved oxygen level of 5–9 mg/L, pH 8–9, and C/N 1.14:1. The total nitrogen removal rate reached 46.41% ± 3.17% (sterilized) and 44.88% ± 4.31% (unsterilized). The cell optical density suggested the strain could survive in oligotrophic drinking water reservoir water conditions and perform nitrogen removal. Sodium acetate was the most favorable carbon source for nitrogen removal by strain N299 (p < 0.05). High C/N was beneficial for nitrate reduction (p < 0.05). The nitrate removal efficiencies showed no significant differences among the tested inoculums dosage (p > 0.05). Furthermore, strain N299 could efficiently remove nitrate at neutral and slightly alkaline and low temperature conditions. These results, therefore, demonstrate that Zoogloea sp. N299 has high removal characteristics, and can be used as a nitrogen removal microbial inoculum with simultaneous aerobic nitrification and denitrification in a micro-polluted reservoir water ecosystem.
机译:氮被认为是导致淡水生态系统富营养化的最广泛的污染物之一,特别是在饮用水水库中。在这项研究中,从饮用水水库沉积物中分离出了贫营养的好氧反硝化器。探索了脱氮性能。通过16S rRNA基因序列分析将该菌株鉴定为Zoogloea sp。 N299。该种表现出周质硝酸还原酶基因(napA)。其比生长速率为0.22 h -1 。当在硝酸盐和亚硝酸盐培养基中培养时,明显的反硝化作用和完美的脱氮性能分别达到75.53%±1.69%和58.65%±0.61%。在氨介质中,氨去除率达到44.12%±1.61%。 Zoogloea sp。 N299已接种到灭菌和未灭菌的水库水源水中,溶解氧水平为5–9 mg / L,pH为8–9,C / N为1.14:1。总氮去除率分别达到46.41%±3.17%(灭菌)和44.88%±4.31%(未灭菌)。细胞的光密度表明该菌株可以在贫营养饮用水水质条件下存活并进行脱氮。乙酸钠是用于菌株N299脱氮的最有利碳源(p <0.05)。高C / N有助于减少硝酸盐含量(p <0.05)。硝酸盐去除效率在测试接种量之间无显着差异(p> 0.05)。此外,菌株N299可以在中性,弱碱性和低温条件下有效去除硝酸盐。因此,这些结果证明了Zoogloea sp.。 N299具有较高的去除特性,可在微污染的水库水生态系统中用作同时进行好氧硝化和反硝化的脱氮微生物接种物。

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