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Comprehensive analysis of step-feeding strategy to enhance biological nitrogen removal in alum sludge-based tidal flow constructed wetlands

机译:综合分析分步进料策略以提高基于矾土污泥的潮汐人工湿地中生物脱氮的能力

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摘要

Step-feeding strategies have been extensively studied and comprehensively analyzed in this study for a four-stage alum sludge-based tidal flow constructed wetlands (AlS-TFCWs) system. Enhanced total nitrogen removal of 83% is achieved under high nitrogen loading rate of 19.1 g N/m2 d. The key issues towards the success of a significant nitrogen removal in step-feeding TFCWs are the bed resting time (which provides better aeration for nitrification) and up flow stage/delayed input of side stream(s) (which ensure favorable environment for better denitrification). Simultaneous nitrification and denitrification (SND) was found effective in the 1st stage of the system and SND via nitrite is the main nitrogen conversion mechanism. The optimal influent distribution fraction for step-feeding purpose can be estimated from a theoretical basis, which is a function of the influent BCOD/TKN ratio. Therefore the influent distribution fraction should be adjusted according to the variety of influent characteristics, rather than a fixed value.
机译:在这项研究中,对基于四阶段明矾污泥的潮汐人工湿地(AlS-TFCWs)系统的分阶段饲喂策略进行了广泛研究和全面分析。在19.1 g N / m2 d的高氮负载率下,总氮去除率提高了83%。在分步进料的TFCW中成功去除大量氮的关键问题是床的静置时间(为硝化提供更好的通气)和上流阶段/侧流的延迟输入(确保更好的反硝化的有利环境) )。同时硝化和反硝化(SND)在系统的第一阶段被发现是有效的,通过亚硝酸盐的SND是主要的氮转化机理。可以从理论基础上估算出用于分步进料的最佳进水分配比例,这是进水BCOD / TKN比的函数。因此,应根据进水特性的变化而不是固定值来调整进水比例。

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