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Autotrophic nitrogen removal from sludge digester liquids in upflow sludge bed reactor with external aeration

机译:带有外部曝气的上流污泥床反应器中污泥消化液中的自养氮去除

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The novel microbial process such as anaerobic ammonium oxidation (Anammox) and completely autotrophic nitrogen removal over nitrite (Canon) processes is promising biotechnology to remove nitrogen from ammonium-rich wastewater like anaerobic sludge liquid. In this research, a new Canon-type nitrogen removal process adopting upflow granular sludge bed configuration was investigated on its feasibility and process performance, using synthetic wastewater and sludge digester liquids. Air as an oxygen source was provided in an external aeration chamber with flow recirculation. In the first experiment using the synthetic wastewater (up to 110 mg NH_4-N L~(-1)), the ammonium removal was about 95% (92% for T-N) at HRT for 5 days. In the second experiment using the sludge digester liquids (438 ± 26 mg NH4-N L~(-1)), the total nitrogen removal was 94 ± 1.7% at HRT for 7 days and 76 ± 1.5% at HRT for 5 days, respectively. Little nitrite and nitrate were observed in the effluent of both experiments. The process revealed quite lower oxygen (0.29-0.59 g O_2 g~(-1) N) and less alkalinity (3.1-3.4 g CaCO_3 g~(-1) N) consumption as compared to other new technology in microbial nitrogen removal. The process also offers the economical compact reactor configuration with excellent biomass retention, resulting in lower cost for investment and maintenance.
机译:诸如厌氧铵氧化(Anammox)和亚硝酸盐(Canon)工艺上的完全自养脱氮等新型微生物工艺,有望从诸如厌氧污泥液体等富铵废水中脱氮。在这项研究中,采用合成废水和污泥消化液,研究了一种采用上游颗粒污泥床配置的新型佳能型脱氮工艺的可行性和工艺性能。空气作为氧气源以循环流动的方式提供在外部曝气室内。在使用合成废水(高达110 mg NH_4-N L〜(-1))的第一个实验中,HRT处理5天的铵去除率为约95%(T-N为92%)。在使用污泥消化液(438±26 mg NH4-N L〜(-1))的第二个实验中,在HRT处理7天的总氮去除率为94±1.7%,在HRT处理5天的总氮去除率为76±1.5%,分别。在两个实验的流出物中均观察到很少的亚硝酸盐和硝酸盐。与其他微生物脱氮新技术相比,该工艺显示出较低的氧气消耗(0.29-0.59 g O_2 g〜(-1)N)和更少的碱度(3.1-3.4 g CaCO_3 g〜(-1)N)消耗。该方法还提供了经济的紧凑型反应器配置,具有出色的生物质保留能力,从而降低了投资和维护成本。

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