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Effect of zero-valent iron on biological denitrification in the autotrophic denitrification system

机译:零价铁对自养反硝化系统生物反硝化的影响

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This study investigated nitrate removal using biological denitrification by the iron-reducing bacteria strain CC76 combined with zero-valent iron (ZVI) in simulated groundwater under anaerobic conditions. The mechanism of nitrate reduction as well as the process of iron cycling by strain CC76 and ZVI were studied. During growth experiments, the strain CC76 showed the ability to utilize Fe2+ (electron donor) produced from the stimulated corrosion of ZVI for the nitrate removal. ZVI exerted inhibitive effects on the growth of strain CC76 in the early stage. However, the strain CC76 was able to tolerate the presence of ZVI in the long term. Moreover, three factors (temperature, initial pH, and ZVI concentration) were selected as effective factors and were optimized using a central composite design of response surface methodology. Based on the statistical analysis, a temperature of 30.44 degrees C, initial pH of 6.11, and ZVI concentration of 5.89g/L were determined to be the optimum values. The effect of Fe2+/ZVI ratio was also explored and compared with ZVI alone, a certain amount of a mixture of Fe2+ and ZVI showed a higher nitrate removal ability. Moreover, scanning electron microscopy and X-ray diffraction analyses showed the corrosion of ZVI occurred after reaction in the autotrophic denitrification system.
机译:该研究研究了在厌氧条件下使用氧化氢细菌菌株CC76与零价铁(ZVI)结合氧化菌菌株CC76使用生物脱氮的硝酸盐去除。研究了硝酸盐还原的机制以及菌株CC76和ZVI的铁循环过程。在生长实验期间,菌株CC76显示使用由ZVI刺激的腐蚀产生的Fe2 +(电子供体)进行硝酸盐去除。 ZVI施加对早期菌株CC76生长的抑制作用。然而,菌株CC76能够长期耐受ZVI的存在。此外,选择了三种因子(温度,初始pH和ZVI浓度)作为有效因素,并使用响应面方法的中央复合设计进行了优化。基于统计分析,测定温度为30.44摄氏度,初始pH和5.89g / L的ZVI浓度为最佳值。还探讨了Fe2 + / ZVI比的影响,并与单独的ZVI相比,Fe2 +和ZVI的一定量的混合物显示出更高的硝酸盐去除能力。此外,扫描电子显微镜和X射线衍射分析显示在自养反硝化系统中反应后ZVI的腐蚀。

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