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Role of air scouring in anaerobic/anoxic tanks providing nitrogen removal by mainstream anammox conversion in a hybrid biofilm/suspended growth full-scale WWTP in China

机译:空气冲洗在厌氧/缺氧罐中的作用,通过主流厌氧氧毒剂转化在中国杂交生物膜/悬浮生长全规模WWTP中的主流厌氧毒剂转化提供氮气去除

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A full-scale wastewater treatment plant in China experienced unintentional anammox bacterial enrichment on biofilm carriers placed in the anaerobic and anoxic zones of an anaerobic/anoxic/oxic process under ambient temperatures and without bioaugmentation. Here, we show that microaerophilic conditions resulting from air scouring needed for biofilm carrier suspension in the anaerobic/anoxic zones can support a robust nitritation/anammox process. Results from an in situ on/off air scouring test showed that air scouring strongly induced both ammonia and total inorganic nitrogen removal in the anaerobic/anoxic zones. Ammonium concentration in the anaerobic and anoxic tanks remained constant or even slightly increased when air scouring was off, indicating that air scouring made a noticeable difference in nitrogen profiles in the anaerobic/anoxic zones. Various batch tests further indicated that partial denitrification is not likely to generate nitrite for anammox bacteria. Robust nitritation, and anammox on the carriers, can occur at low dissolved oxygen conditions, as measured in the full-scale facility. The observations show that mainstream deammonification without sidestream bioaugmentation at moderate temperature is feasible and further optimization by a more dedicated design can result in improved nitrogen removal in cases when chemical oxygen demand is limited in mainstream wastewater treatment.Practitioner pointsMicroaerophilic conditions in a full-scale IFAS reactor caused mainstream anammox in moderate temperate area.Robust nitritation, and anammox on the carriers, can occur at low dissolved oxygen conditions in anaerobic/anoxic tanks with air scouring.Anammox can function well with conventional nitrification and denitrification process at mainstream conditions for stable nitrogen removal.
机译:中国的全级污水处理厂经历了在环境温度下放置在厌氧/缺氧/氧化过程的厌氧和缺氧区域的生物膜载体上的无意厌氧菌细菌富集。在这里,我们表明厌氧/缺氧区中生物膜载体悬浮液所需的空气冲洗产生的微碳酸条件可支持鲁棒亚硝酸盐/厌氧过程。原位开/关空气冲洗试验结果表明,空气冲洗强烈诱导肿瘤和厌氧区中的氨和总无机氮去除。当空气擦除关闭时,厌氧和缺氧罐中的铵浓度保持恒定甚至略微增加,表明空气冲洗使得厌氧/缺氧区中的氮曲线差异显着差异。各种分批测试进一步表明部分脱氮不可能为厌氧细菌产生亚硝酸盐。载体上的鲁棒亚批次和厌氧毒素,可以在满量程设施中测量的低溶解氧条件发生。观察结果表明,在中等温度下没有侧流生物沉积的主流脱阵化是可行的,并且通过更具专用的设计进一步优化可以导致在化学氧需求受到主流废水处理中的情况下的情况下改善的氮去除。在全规模的IFAS中的额定点递质条件下降反应器导致主流厌氧在适度的温度区域中。亚硝化和载体上的厌氧菌,在厌氧/缺氧罐中的低溶解氧条件下,空气冲洗。在稳定氮气的主流条件下,anammox可以很好地起作用。移动。

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