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Success of mainstream partial nitritation/anammox demands integration of engineering, microbiome and modeling insights

机译:主流偏硝化/ anammox的成功需要整合工程,微生物组和建模见解

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Twenty years ago, mainstream partial nitritation/anammox (PN/A) was conceptually proposed as pivotal for a more sustainable treatment of municipal wastewater. Its economic potential spurred research, yet practice awaits a comprehensive recipe for microbial resource management. Implementing mainstream PN/A requires transferable and operable ways to steer microbial competition as to meet discharge requirements on a year-round basis at satisfactory conversion rates. In essence, the competition for nitrogen, organic carbon and oxygen is grouped into 'ON/OFF' (suppression/promotion) and 'IN/OUT' (wash-out/retention and seeding) strategies, selecting for desirable conversions and microbes. Some insights need mechanistic understanding, while empirical observations suffice elsewhere. The provided methodological R&D framework integrates insights in engineering, microbiome and modeling. Such synergism should catalyze the implementation of energy-positive sewage treatment.
机译:二十年前,主流部分亚硝特特/ anammox(PN / A)在概念上提出了一种衡量市政废水的可持续待遇。 其经济潜力刺激研究,但实践等待着微生物资源管理的综合配方。 实施主流PN / A需要可转移和可操作的方法来引导微生物竞争,以便以满意的转换率全年满足排放要求。 从本质上讲,氮气,有机碳和氧的竞争被分组为“开/关”(抑制/促进)和“进出”(洗涤/保留和播种)策略,选择所需的转化和微生物。 一些见解需要机械理论,而实证观察则足够了。 提供的方法论R& D框架集成了工程,微生物组和建模的见解。 这种协同作用应该催化实施能量阳性污水处理。

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