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生物陶粒反应器中以氢气为供体的自养反硝化作用去除地下水中硝酸盐的研究

Nitrate removal from groundwater by hydrogen-fed autotrophic denitrification in a bio-ceramsite reactor.

作者信息

Chen Dan, Yang Kai, Wang Hongyu, Lv Bin

机构信息

School of Civil Engineering, Wuhan University, Wuhan 430072, China E-mail:

School of Environmental Engineering, Wuhan Textile University, Wuhan 430073, China.

出版信息

Water Sci Technol. 2014;69(12):2417-22. doi: 10.2166/wst.2014.167.

Abstract

In this work, the denitrification performance of a bio-ceramsite reactor based on autohydrogenotrophic denitrification was investigated. The effects of various experimental parameters such as nitrate loading, carbon to nitrogen ratio (C/N), water temperature and pH were evaluated during the operation. The unique aspect of this research is that the bio-reactor uses ceramsite as a carrier, which can provide a habitat for autohydrogenotrophic biocoenoses to accrete and grow. The results indicated that the denitrification rate increased as nitrate loading (below 130 mg NO3(-)-N/L) increased. However, the activity of autohydrogenotrophic denitrifying bacteria was inhibited when nitrate loading was further increased to higher than 130 mg NO3(-)-N/L. Denitrification efficiency changed slightly with C/N, this system performed well if C/N was more than 0.9. The optimum temperature for the reactor was 25-35 °C. This denitrification system was positively related to pH, as a neutral or alkaline environment was more preferable for the reactor. During the operation, effluent nitrite levels were always maintained below 1.75 mg NO2(-)-N/L.

摘要

在本研究中,对基于自养反硝化的生物陶粒反应器的反硝化性能进行了研究。在运行过程中评估了各种实验参数的影响,如硝酸盐负荷、碳氮比(C/N)、水温及pH值。本研究的独特之处在于该生物反应器使用陶粒作为载体,可为自养生物群落的附着和生长提供栖息地。结果表明,随着硝酸盐负荷(低于130 mg NO3(-)-N/L)的增加,反硝化速率提高。然而,当硝酸盐负荷进一步增加至高于130 mg NO3(-)-N/L时,自养反硝化细菌的活性受到抑制。反硝化效率随C/N变化不大,若C/N大于0.9,该系统运行良好。反应器的最佳温度为25-35°C。该反硝化系统与pH呈正相关,因为中性或碱性环境更有利于反应器运行。在运行过程中,出水亚硝酸盐水平始终保持在1.75 mg NO2(-)-N/L以下。

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