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异养硝化细菌YH的脱氮性能及其动力学特性

[Nitrogen Removal by Heterotrophic Nitrifying Bacterium YH and Its Kinetic Characteristics].

作者信息

Wang Xu-Hui, Yang Lei, Ren Yong-Xiang, Chen Ning, Xiao Qian, Cui Shen, Li Dan

机构信息

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

China United Engineering Corporation Limited, Hangzhou 310052, China.

出版信息

Huan Jing Ke Xue. 2019 Apr 8;40(4):1892-1899. doi: 10.13227/j.hjkx.201809044.

Abstract

Due to the low nitrogen removal efficiency, lengthy procedure, and vulnerability to high loads of ammonium of the traditional sewage treatment process, the physiological characteristics, nitrogen removal characteristics, influencing factors, and kinetic analysis were systematically studied for the heterotrophic nitrifier YH, which has efficient nitrogen removal ability. The results showed that strain YH exhibited efficient heterotrophic nitrification ability with a low accumulation of nitrification products. The maximum ammonium removal rate was 99.1%, and nearly 53% of the removed TN was converted to intracellular nitrogen. In addition, nitrite and nitrate could also be metabolized by strain YH under aerobic conditions, with a maximum removal rate of 99.8% and 99.5%, respectively. Additionally, the successful PCR amplification of the and genes further improved the aerobic denitrification characteristics of strain YH. The bacterial growth process of strain YH matched the Logistic model (>0.99), and the nitrogen degradation conformed to the Compertz model (>0.99). The order of the maximum conversion rates of nitrogen () was ammonia > nitrate > nitrite, and that of the lag time () was nitrate > nitrite > ammonia. The optimal conditions for heterotrophic ammonium oxidation with strain YH were succinate as the carbon source, C/N=10, =30℃, =160-200 r·min, and pH=7.0. Under the optimal conditions, the average ammonia oxidation rate and were 8.35 and 16.71 mg·(L·h), respectively. Strain YH could adapt to a broad range of ammonium loads. A high ammonium removal rate was observed under high ammonium concentrations (1000 mg·L), indicating the high potential of strain YH for application in high-strength ammonium wastewater treatment.

摘要

由于传统污水处理工艺脱氮效率低、流程冗长且易受高负荷铵的影响,对具有高效脱氮能力的异养硝化菌YH的生理特性、脱氮特性、影响因素及动力学分析进行了系统研究。结果表明,菌株YH表现出高效的异养硝化能力,硝化产物积累量低。最大铵去除率为99.1%,近53%的去除总氮转化为细胞内氮。此外,在好氧条件下,菌株YH也能代谢亚硝酸盐和硝酸盐,最大去除率分别为99.8%和99.5%。此外,成功扩增 和 基因进一步改善了菌株YH的好氧反硝化特性。菌株YH的细菌生长过程符合Logistic模型(>0.99),氮降解符合Compertz模型(>0.99)。氮()的最大转化率顺序为氨>硝酸盐>亚硝酸盐,滞后时间()顺序为硝酸盐>亚硝酸盐>氨。菌株YH异养铵氧化的最佳条件是以琥珀酸为碳源,C/N = 10, = 30℃, = 160 - 200 r·min,pH = 7.0。在最佳条件下,平均氨氧化速率和 分别为8.35和16.71 mg·(L·h)。菌株YH能适应较宽的铵负荷范围。在高铵浓度(1000 mg·L)下观察到高铵去除率,表明菌株YH在处理高浓度铵废水方面具有很高的应用潜力。

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