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A new fixed-film mobile bed bioreactor for denitrification of wastewaters

机译:一种用于废水脱氮的新型固定膜移动床生物反应器

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An innovative fixed-film mobile bed bioreactor for high-rate denitrification of wastewaters has been developed and tested. This reactor, called the Mixazur(R) enables a high denitrification efficiency due to high kinetics. These properties are combined with a very simple system, particularly due to the choice of a suitable mineral granular support for bacterial growth, enabling a very low filling ratio. This low filling ratio, usually smaller than 5% vol., offers a sufficient surface area for fixed-film development, easily moved by a simple mechanical agitation with low energy consumption (< 30 W/m(3) of reactor). The experimental study showed that this reactor can achieve an eliminated loading rate of 0.6 kg NOx-N/m(3) of reactor per day at a removal efficiency more than 80% and at water temperatures between 13 and 20 degrees C. The separation of a denitrifying biomass in a specific pre-denitrifying bioreactor led to a development of a very active biofilm with denitrification rates as high as 10 mg NOx-N/g MLVSS.h at 18 degrees C. The scale-up of this system does not need any sophisticated wastewater inlet distribution system, any additional material/biomass separation device and any recirculation loop for maintaining a constant fluidization velocity. Moreover, the reactor is characterized by its low-cost equipment, continuous operation and by auto-regulation of both biofilm thickness and activity due to a controlled shear stress and by an overall easy operation. The first full-scale facility, for 1200 p.e., using this system has been operating since 1996. (C) 1998 Published by Elsevier Science Ltd. All rights reserved. [References: 22]
机译:已经开发并测试了用于废水高速率反硝化的创新型固定膜移动床生物反应器。由于高动力学,这种称为Mixazur的反应器能够实现高反硝化效率。这些特性与非常简单的系统相结合,特别是由于选择了适合细菌生长的矿物颗粒载体,从而实现了非常低的填充率。这种低填充率通常小于5%(体积),可为固定膜显影提供足够的表面积,可通过简单的机械搅拌轻松移动,能耗低(<30 W / m(3)反应器)。实验研究表明,该反应器在去除效率超过80%且水温在13到20摄氏度之间时,每天可实现0.6 kg NOx-N / m(3)的消除负荷率。特定的预反硝化生物反应器中的反硝化生物质导致了非常活跃的生物膜的发展,在18摄氏度时反硝化率高达10 mg NOx-N / g MLVSS.h。该系统无需扩大规模任何先进的废水入口分配系统,任何附加的物料/生物质分离装置以及任何用于保持恒定流化速度的再循环回路。而且,该反应器的特征在于其低成本的设备,连续的操作以及由于可控的剪切应力而生物膜厚度和活性的自动调节以及总体上易于操作的特征。自1996年以来,一直在使用该系统的第一个全天候设施1200 p.e投入运营。(C)1998由Elsevier Science Ltd发布。保留所有权利。 [参考:22]

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