首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Nitrogen removal from iron oxide red wastewater via partial nitritation-Anammox based on two-stage zeolite biological aerated filter
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Nitrogen removal from iron oxide red wastewater via partial nitritation-Anammox based on two-stage zeolite biological aerated filter

机译:通过基于两阶段沸石生物曝气过滤器的部分亚硝酸盐厌氧氧化铁从氧化铁红色废水中除去氮气

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摘要

Partial nitritation-anaerobic ammonium oxidation (PN-Anammox) was successfully applied for high-strength ammonium iron oxide red wastewater (IORW) treatment based on stable PN performance of zeolite-biological aerated filter (ZBAF). By separating Na2CO3 dosage avoid the high free ammonia (FA) inhibited nitritation, two-stage ZBAF was applied for achieving efficient PN with Na2CO3 as the alkalinity donor and saving about 40.0% of the alkalinity cost compared to NaHCO3. Moreover, Anammox was used for further nitrogen removal from IORW and stable total nitrogen (TN) removal was obtained at the influent NH4+-N concentration of 567 mg/L and TN removal efficiency kept above 70.0% after 100 days operation. High throughput sequencing-based approaches showed that Nitrosomoadaceae (AOB) and Kuenenia was dominance in two-stage ZBAF and Anammox samples respectively, while Nitrospire and Nitrobacter (NOB) undetected. The combined process should have advantages for similar high-strength ammonium wastewater treatment.
机译:基于沸石 - 生物膨胀过滤器(ZBAF)的稳定PN性能,成功地应用了部分亚硝酸铵氧化(PN-anammox)以进行高强度氧化氧化物红色废水(IORW)处理。通过分离Na 2 CO 3剂量,避免高自由氨(FA)抑制亚硝化,应用两阶段ZBAF以实现与Na 2 CO 3的有效PN,与NaHCO 3相比,节省约40.0%的碱度成本。此外,厌氧可用于进一步从IORW的进一步除去氮,并在100天运行后,在567mg / L的流入的NH 4 + -N浓度下获得稳定的总氮(TN)除去。基于高通量测序的方法显示,亚硝基葡萄糖(AOB)和Kuenenia分别在两阶段ZBAF和厌氧样品中占优势,而Nitrospire和硝基杆菌(NOB)未被发现。组合过程应具有类似的高强度铵废水处理的优点。

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