Nitrogen Removal of Water and Sediment in Grass Carp Aquaculture Ponds by Mixed Nitrifying and Denitrifying Bacteria and Its Effects on Bacterial Community

IF 3 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Water Pub Date : 2022-06-09 DOI:10.3390/w14121855
D. Han, Zhen-Dong Hu, Dapeng Li, R. Tang
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引用次数: 3

Abstract

Nitrification and denitrification are important for nitrogen (N) cycling in fish ponds culture, but the effects of nitrifying and denitrifying bacteria concentrations on pond water and sediments remain largely unknown. Here, we used 0, 0.15, 0.30, 0.60 mg/L different concentrations of mixed nitrifying and denitrifying bacteria to repair the pond substrate through an enclosure experiment lasting 15 days. The results showed that the purification effect of nitrifying and denitrifying bacteria was most obvious on pond nitrogen from day 4 to day 7. The optimal relative concentration was 0.60 mg/L for nitrifying and denitrifying bacteria; NH4+-N (ammonia nitrogen) decreased by 75.83%, NO2−-N (nitrite) by 93.09%, NO3−-N (nitrate) by 38.02%, and TN (total nitrogen) by 45.16% in this concentration group on pond water. In one cycle, C/N (carbon/nitrogen) ratio of both water body and bottom sediment significantly increased, but C/N ratio of water body increased more significantly than that of sediment. Water C/N ratio increased by 76.00%, and sediment C/N ratio increased by 51.96% in the 0.60 mg/L concentration group. Amplicon sequencing of pond sediment showed that the change in nitrifying and denitrifying bacterium diversity was consistent with that in water quality index. Dominant nitrifying bacteria had a relatively high percentage, with significant differences in dominant bacterium percentage across different bacterial addition groups, while dominant denitrifying bacterium percentage was not high without significant differences among different groups. The dominant species of nitrifying bacteria were, respectively, Nitrosomonas, Nitrosovibrio, Nitrosospira, and Aeromonas, and the dominant species of denitrifying bacteria were Thauera, Azoarcus, Magnetospirillum, Azospira, and Idiomarina. The correlation analyses showed an aerobic nitrification and facultative anaerobic denitrification in pond sediments. Research shows that the addition of exogenous nitrifying and denitrifying bacteria can effectively reduce the nitrogen load of pond water and sediment. At the concentration of 0.6 mg/L, the nitrogen load of pond water and sediment decreased most obviously, which had the best effect on pond purification.
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硝化与反硝化混合菌对草鱼养殖池塘水体和沉积物的脱氮作用及其对细菌群落的影响
在鱼塘养殖中,硝化和反硝化作用对氮(N)循环至关重要,但硝化和反硝化细菌浓度对池塘水和沉积物的影响在很大程度上仍然未知。本实验采用0、0.15、0.30、0.60 mg/L不同浓度的混合硝化和反硝化细菌对池塘基质进行修复,通过15天的封闭实验。结果表明,在第4 ~ 7天,硝化和反硝化细菌对池塘氮的净化效果最为明显。硝化菌和反硝化菌的最佳相对浓度为0.60 mg/L;该浓度组水体NH4+-N(氨氮)下降75.83%,NO2−-N(亚硝酸盐)下降93.09%,NO3−-N(硝酸盐)下降38.02%,TN(总氮)下降45.16%。在一个循环中,水体和底泥的C/N(碳/氮)比均显著增加,但水体的C/N比底泥的C/N增加更为显著。在0.60 mg/L浓度组,水体C/N比提高了76.00%,沉积物C/N比提高了51.96%。池塘沉积物的扩增子测序结果表明,硝化和反硝化细菌多样性的变化与水质指标的变化是一致的。优势硝化菌比例较高,不同细菌添加组间优势菌比例差异显著,而优势反硝化菌比例不高,各组间差异不显著。硝化细菌的优势种分别为亚硝基单胞菌、亚硝基弧菌、亚硝基螺旋体和气单胞菌,反硝化细菌的优势种分别为Thauera、偶氮弧菌、磁螺旋体、偶氮螺旋体和Idiomarina。相关分析表明,池塘沉积物中存在好氧硝化和兼性厌氧反硝化作用。研究表明,添加外源硝化和反硝化细菌可以有效降低池塘水和沉积物的氮负荷。在浓度为0.6 mg/L时,塘水和底泥氮负荷下降最明显,净化效果最好。
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来源期刊
Water
Water WATER RESOURCES-
CiteScore
5.80
自引率
14.70%
发文量
3491
审稿时长
19.85 days
期刊介绍: Water (ISSN 2073-4441) is an international and cross-disciplinary scholarly journal covering all aspects of water including water science and technology, and the hydrology, ecology and management of water resources. It publishes regular research papers, critical reviews and short communications, and there is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles. Computed data or files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.
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