Iron-based autotrophic denitrification driven by sponge iron for nitrite removal in an anaerobic bioreactor: effect of iron and carbon source

Shuang Ren, Peng Wang, Wenxuan Li, Hongjuan Zhu, Kaiyao Hu, Hao Mu, Xiaoyi Gao
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Abstract

The study investigated the denitrification effect of the iron autotrophic denitrification process for removing nitrite under anaerobic conditions, utilizing sponge iron as the electron donor. When the C/N ratio equaled 1, defined as the ratio of chemical oxygen demand to total nitrogen (TN), and the influent nitrite nitrogen (NO2−-N) was at 80 mg/L, the average steady-state TN effluent concentration of this system was 41.94 mg/L during the 79-day experiment. The TN value exhibited a significant decrease compared to both the sponge iron system (68.69 mg/L) and the carbon source system (56.50 mg/L). Sponge iron is beneficial for providing an electron donor and ensuring an anaerobic system, fostering an environment that promotes microorganism growth while effectively inhibiting the conversion of nitrite to nitrate. In addition, carbon sources play a vital role in ensuring microorganism growth and reproduction, thereby aiding in TN removal. The optimal parameters based on the effectiveness of TN removal in the iron autotrophic denitrification system were determined to be s-Fe0 dosage of 30 g/L and C/N = 1.5. These results suggest that the iron autotrophic denitrification process, driven by sponge iron, can effectively remove nitrite under anaerobic conditions.
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厌氧生物反应器中由海绵铁驱动的铁基自养反硝化作用去除亚硝酸盐:铁和碳源的影响
该研究探讨了在厌氧条件下,利用海绵铁作为电子供体,铁自养反硝化工艺去除亚硝酸盐的反硝化效果。当 C/N 比等于 1(即化学需氧量与总氮(TN)之比)、进水亚硝酸盐氮(NO2--N)为 80 mg/L 时,在 79 天的实验中,该系统的平均稳态 TN 出水浓度为 41.94 mg/L。与海绵铁系统(68.69 毫克/升)和碳源系统(56.50 毫克/升)相比,TN 值明显下降。海绵铁有利于提供电子供体,确保厌氧系统,营造促进微生物生长的环境,同时有效抑制亚硝酸盐向硝酸盐的转化。此外,碳源在确保微生物生长和繁殖方面起着至关重要的作用,从而有助于 TN 的去除。根据铁自养反硝化系统去除 TN 的效果,确定最佳参数为 s-Fe0 用量为 30 克/升,C/N = 1.5。这些结果表明,在海绵铁的驱动下,铁自养反硝化过程可以在厌氧条件下有效去除亚硝酸盐。
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