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Combined nitrification/denitrification in a membrane reactor

机译:膜反应器中的联合硝化/反硝化

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An ever stricter legislation regulating wastewater leads to an increasing demand for biological treatment plants which are able to selectively eliminate nitrogen from wastewaters with a high influent concentration, even when operating in partial influent mode. A membrane-tube-module (MSM) reactor (Membran-Schlauch-Modul-Reaktor) was constructed and realized in the IUV at the University of Bremen. The present approach makes use of all the various layers of the whole biofilm, enabling nitrification and denitrification processes to run simultaneously in one and the same biofilm under optimized conditions. The biological degradation capacity of the system was first successfully tested with synthetic wastewater, and subsequently in a real application with effluents from a recycling of animal carcasses plant and from a coke-oven plant. A mathematical model was devised which describes this biofilm system. The resulting equations were solved by means of the simulation software AQUASIM.
机译:越来越严格的法规对废水进行管理,导致对生物处理厂的需求不断增加,即使在部分进水模式下运行,生物处理厂也可以从高进水浓度的废水中选择性去除氮。在不来梅大学的IUV中建造并实现了膜管模块(MSM)反应器(Membran-Schlauch-Modul-Reaktor)。本方法利用了整个生物膜的所有各个层,从而使硝化和反硝化过程可以在优化条件下在同一生物膜中同时进行。该系统的生物降解能力首先通过合成废水进行了成功测试,随后在实际应用中使用了动物尸体回收工厂和焦炉工厂的废水。设计了描述该生物膜系统的数学模型。通过仿真软件AQUASIM对所得方程进行求解。

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