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新型海洋需氧反硝化菌 Vibrio spp. AD2 的特性研究,其具有高效的硝酸盐还原能力且无亚硝酸盐积累。

Characterization of a novel marine aerobic denitrifier Vibrio spp. AD2 for efficient nitrate reduction without nitrite accumulation.

机构信息

School of Marine Technology and Environment, Dalian Ocean University, No. 52, Heishijiao Road, Dalian, 116023, China.

Key Laboratory of Environment Controlled Aquaculture, Ministry of Education, Dalian, 116023, China.

出版信息

Environ Sci Pollut Res Int. 2021 Jun;28(24):30807-30820. doi: 10.1007/s11356-021-12673-8. Epub 2021 Feb 16.

DOI:10.1007/s11356-021-12673-8
PMID:33594566
Abstract

Aerobic denitrifiers have the potential to reduce nitrate in polluted water under aerobic conditions. A salt-tolerant aerobic denitrifier was newly isolated and identified as Vibrio spp. AD2 from a marine recirculating aquaculture system, in which denitrification performance was investigated via single-factor experiment, Box-Behnken experiment, and nitrogen balance analysis. Nitrate reductase genes were identified by polymerase chain reaction. Results showed that strain AD2 removed 98.9% of nitrate-nitrogen (NO-N) with an initial concentration about 100 mg·L in 48 h without nitrite-nitrogen (NO-N) accumulation. Nitrogen balance indicated that approximately 17.5% of the initial NO-N was utilized for bacteria synthesis themselves, 4.02% was converted to organic nitrogen, 39.8% was converted to nitrous oxide (NO), and 31.1% was converted to nitrogen (N). Response surface methodology experiment showed that the maximum removal of total nitrogen (TN) occurred under the condition of C/N ratio 11.5, shaking speed 127.9 rpm, and temperature 30.8 °C. Sequence amplification indicated that the denitrification genes, napA and nirS, were present in strain AD2. These results indicated that the strain AD2 has potential applications for removing NO-N from high-salinity (3%) wastewater.

摘要

好氧反硝化菌在好氧条件下具有将硝酸盐还原为氮气的潜力,从而减少受污染水中的硝酸盐。本研究从循环海水养殖系统中分离得到一株耐盐好氧反硝化菌 AD2,并鉴定为 Vibrio spp.。通过单因素实验、Box-Behnken 实验和氮平衡分析,研究了该菌的反硝化性能。通过聚合酶链式反应鉴定了硝酸盐还原酶基因。结果表明,在初始浓度约为 100mg·L 的硝酸盐氮(NO-N)条件下,AD2 菌株在 48h 内去除了 98.9%的硝酸盐氮,且没有亚硝酸盐氮(NO-N)积累。氮平衡表明,初始 NO-N 的 17.5%左右用于细菌自身合成,4.02%转化为有机氮,39.8%转化为氧化亚氮(NO),31.1%转化为氮气(N)。响应面法实验表明,在 C/N 比为 11.5、摇床转速为 127.9rpm、温度为 30.8°C 的条件下,TN 的去除率最高。序列扩增表明,AD2 菌株存在 napA 和 nirS 两种反硝化基因。这些结果表明,AD2 菌株有望用于去除高盐(3%)废水中的 NO-N。

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