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A new device to select carriers for biomass immobilization and application in an aerobic/anaerobic fixed-bed sequencing batch biofilm reactor for nitrogen removal

机译:一种选择载体进行生物量固定化的新装置,并在需氧/厌氧固定床测序批量生物膜反应器中用于脱氮

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This study proposes a new approach to selecting a biofilm carrier for immobilization using dissolved oxygen (DO) microsensors to measure the thickness of aerobic and anaerobic layers in biofilm. The biofilm carriers tested were polyurethane foam, mineral coal (MC), basaltic gravel, and low-density polyethylene. Development of layers in the biofilm carrier surface was evaluated using a flow cell device, and DO profiles were conducted to determine the size of the layers (aerobic and anaerobic). MC was the biofilm carrier selected due to allowing the development of larger aerobic and anaerobic layers in the biofilm (896 and 1,058 mu m, respectively). This ability is supposed to improve simultaneous nitrogen removal by nitrification and denitrification biological processes. Thus, as a biofilm carrier, MC was used in a fixed-bed sequencing batch biofilm reactor (FB-SBBR) for treatment of wastewater with a high ammonia concentration (100-400 mgNH(4)(+)-NL-1). The FB-SBBR (15.0 L) was filled with matrices of the carrier and operated under alternating aeration and non-aeration periods of 6 h each. At a mean nitrogen loading rate of 0.55 +/- 0.10 kgNH(4)(+)-N m(-3) d(-1), the reactor attained a mean nitrification efficiency of 95 +/- 9% with nitrite as the main product (aerobic period). Mean denitrification efficiency during the anoxic period was 72 +/- 13%.
机译:这项研究提出了一种新的方法,用于选择使用溶解氧(DO)微传感器固定化的生物膜载体,以测量生物膜中需氧层和厌氧层的厚度。测试的生物膜载体是聚氨酯泡沫,矿物煤(MC),玄武砾石和低密度聚乙烯。使用流通池设备评估生物膜载体表面中层的形成,并进行DO分布图以确定层的大小(好氧和厌氧)。 MC是选择的生物膜载体,因为可以在生物膜中形成较大的好氧层和厌氧层(分别为896和1,058μm)。该能力被认为可以通过硝化和反硝化生物过程改善同时去除氮的能力。因此,作为生物膜载体,MC被用于固定床测序间歇式生物膜反应器(FB-SBBR)中,用于处理氨浓度高(100-400 mgNH(4)(+)-NL-1)的废水。 FB-SBBR(15.0 L)充满了载体基质,并在交替的充气和非充气时间各6h下运行。在0.55 +/- 0.10 kg NH(4)(+)-N m(-3)d(-1)的平均氮负载率下,反应器以亚硝酸盐为氮源时平均硝化效率为95 +/- 9%。主要产品(有氧期)。缺氧期间的平均反硝化效率为72 +/- 13%。

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