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Achieving biological nitrogen removal via nitrite by salt inhibition

机译:通过盐抑制实现亚硝酸盐的生物脱氮

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The principal aim of this paper is to develop and evaluate an approach to obtain nitrogen removal bypassing nitrate. The method is based on the addition of sodium chloride (NaCl), selective inhibitor of nitrite oxidizers, to influent. Validation of the new method was conducted on laboratory-scale experiments applying the SBR activated sludge process to domestic wastewater with low C/N ratio. With the aerobic anoxic sequence, three parallel SBRs achieving complete nitrification -denitrification are dosed by a certain concentration of NaCl to influent. The high nitrite accumulation, depending on the salinity in the influent and the application duration of salt, was obtained in SBRs treating saline wastewater. Optimum dosage and application duration of salt, which interact to determine the performance and stabilization of nitrite accumulation, were determined by experiment. In order to evaluate the method, the response of the biological treatment system to salt concentration was also explored. The repeatability of the method was further verified under various operational conditions. Microbial population tests supported the presumption that nitrite oxidizers are inhibited by salt addition and washed out of the system. The presented method is valuable to offer a solution to realize nitrogen removal via nitrite under normal conditions.
机译:本文的主要目的是开发和评估一种绕过硝酸盐去除氮的方法。该方法基于向进水中添加亚硝酸盐氧化剂的选择性抑制剂氯化钠(NaCl)。新方法的验证是在将SBR活性污泥工艺应用于低C / N比的生活污水的实验室规模实验中进行的。通过好氧缺氧顺序,将达到完全硝化-反硝化作用的三个平行SBR通过一定浓度的NaCl注入进水。在处理盐废水的SBR中,取决于进水的盐度和盐的施用时间,可以获得高的亚硝酸盐积累。通过实验确定相互作用确定亚硝酸盐积累的性能和稳定性的盐的最佳剂量和施用时间。为了评估该方法,还探讨了生物处理系统对盐浓度的响应。该方法的重复性在各种操作条件下得到了进一步验证。微生物种群测试支持以下假设:亚硝酸盐氧化剂被添加盐抑制并从系统中冲出。所提出的方法对于提供一种在正常条件下通过亚硝酸盐去除氮的解决方案非常有价值。

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