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固定化混合好氧反硝化菌的高效硝酸盐去除及对温度和低碳氮污染水的群落动力学响应。

Efficient nitrate removal of immobilized mixed aerobic denitrifying bacteria and community dynamics response to temperature and low carbon/nitrogen polluted water.

机构信息

Pollution Prevention Biotechnology Laboratory of Hebei Province, School of Environmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang 050018, PR China.

Pollution Prevention Biotechnology Laboratory of Hebei Province, School of Environmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang 050018, PR China.

出版信息

Bioresour Technol. 2022 Oct;362:127873. doi: 10.1016/j.biortech.2022.127873. Epub 2022 Aug 30.

Abstract

The denitrification performance of immobilized mixed aerobic denitrifying bacteria (IMADB) was investigated. IMADB displayed strong temperature adaptability under low Carbon/Nitrogen conditions. At 5, 15, and 25 °C, the nitrate removal efficiencies of volcanic rock and polyester fiber sponge immobilized system reached 83.95%-98.25% and 89.71%-98.14%, respectively. The nitrate content removed by the carrier accounted for 41.18%-82.47% of the nitrate content removed by the immobilized system at different temperature, and played a major role in nitrate removal. The lower the temperature, the greater the role of the carrier. At the same temperature, carrier had a relatively higher richness, diversity, and evenness. Network analysis revealed that carrier species, which were positively correlated with nitrate removal efficiency, had the largest OTUs and abundance. Meanwhile, carrier had the widest niche. The total nitrogen removal efficiency of IMADB reached 56.10%-62.31% in the natural water system, highlighting a promising application prospect.

摘要

研究了固定化混合好氧反硝化菌(IMADB)的反硝化性能。在低碳氮比条件下,IMADB 表现出很强的温度适应性。在 5、15 和 25°C 下,火山岩和聚酯纤维海绵固定化系统的硝酸盐去除率分别达到 83.95%-98.25%和 89.71%-98.14%。载体去除的硝酸盐含量占固定化系统去除的硝酸盐含量的 41.18%-82.47%,在不同温度下对硝酸盐去除起主要作用。温度越低,载体的作用越大。在相同温度下,载体具有相对较高的丰富度、多样性和均匀度。网络分析表明,与硝酸盐去除效率呈正相关的载体物种具有最大的 OTUs 和丰度。同时,载体具有最宽的生态位。IMADB 在自然水系中的总氮去除效率达到 56.10%-62.31%,具有广阔的应用前景。

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