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Upgrading wastewater treatment plants by the use of biofilm carriers, oxygen addition and pre-treatment in the sewer network

机译:通过使用生物膜载体,添加氧气和在下水道网络中进行预处理来升级废水处理厂

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In upgrading of treatment plants for enhanced nitrification there are three strategies (1) the existing process may be optimised with respect to the biological activity, (2) the biological activity may be increased by changing to a process with a higher capacity, and (3) a combination of 1 and 2. The potential of the first strategy in a KMT moving bed biofilm process (the kaldnes process) is presented in this paper. The nitrification capacity was enhanced by using pure oxygen resulting in an increased oxygen concentration, and the specific biomass activity was increased by removing organic matter and sulphide in the sewer network by addition of nitrate to the wastewater. The results show that the nitrification capacity may be increased by 30-40% by pre-treatment of wastewater in the sewer network and increased by 40-50% by using an increased oxygen concentration in the first step of the nitrification reactor. Oxygen concentrations below 12 mg O-2/l and/or the amount of biomass were found to be the limiting factors at ammonium concentrations above 5-7 mg NH4-N/l. (C) 1998 IAWQ. Published by Elsevier Science Ltd [References: 8]
机译:在升级处理厂以增强硝化作用时,有以下三种策略:(1)可以针对生物活性优化现有工艺;(2)通过更改为具有更高产能的工艺可以提高生物活性;以及(3) )结合1和2。本文介绍了KMT移动床生物膜工艺(卡尔登工艺)中第一种策略的潜力。通过使用纯氧提高硝化能力,从而提高了氧气浓度,并通过向废水中添加硝酸盐来去除下水道网络中的有机物和硫化物,从而提高了生物量比活度。结果表明,通过对下水道网络中的废水进行预处理,硝化能力可以提高30-40%,而在硝化反应器的第一步中,通过使用增加的氧气浓度,硝化能力可以提高40-50%。发现低于12 mg O-2 / l的氧气浓度和/或生物量是限制铵浓度高于5-7 mg NH4-N / l的限制因素。 (C)1998 IAWQ。由Elsevier Science Ltd发布[参考:8]

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