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The application of moving bed biofilm reactor to denitrification process after trickling filters

机译:移动床生物膜反应器在滴滤池反硝化过程中的应用

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The paper presents research of a prototype moving bed biofilm reactor (MBBR). The device was used for the post-denitrification process and was installed at the end of a technological system consisting of a septic tank and two trickling filters. The concentrations of suspended biomass and biomass attached on the EvU Perl moving bed surface were determined. The impact of the external organic carbon concentration on the denitrification rate and efficiency of total nitrogen removal was also examined. The study showed that the greater part of the biomass was in the suspended form and only 6% of the total biomass was attached to the surface of the moving bed. Abrasion forces between carriers of the moving bed caused the fast stripping of attached microorganisms and formation of flocs. Thanks to immobilization of a small amount of biomass, the MBBR was less prone to leaching of the biomass and the occurrence of scum and swelling sludge. It was revealed that the maximum rate of denitrification was an average of 0.73 gN-NO3/gDM center dot d (DM: dry matter), and was achieved when the reactor was maintained in external organic carbon concentration exceeding 300 mgO(2)/dm(3) chemical oxygen demand. The reactor proved to be an effective device enabling the increase of total nitrogen removal from 53.5% to 86.0%.
机译:本文介绍了原型移动床生物膜反应器(MBBR)的研究。该设备用于反硝化后的过程,并安装在由化粪池和两个滴滤池组成的技术系统的末端。确定悬浮生物质和附着在EvU Perl移动床表面的生物质的浓度。还检查了外部有机碳浓度对反硝化速率和总氮去除效率的影响。研究表明,大部分生物质为悬浮形式,只有总生物质的6%附着在移动床的表面。移动床载体之间的磨擦力导致附着微生物的快速剥离和絮凝物的形成。由于固定了少量的生物质,MBBR较不易于生物质的浸出以及浮渣和膨胀污泥的发生。结果表明,最大反硝化速率为平均0.73 gN-NO3 / gDM中心点d(DM:干物质),并且是通过将反应器保持在外部有机碳浓度超过300 mgO(2)/ dm的条件下实现的(3)化学需氧量。该反应器被证明是一种有效的装置,能够将总氮去除率从53.5%提高到86.0%。

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