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Nitrification and low temperature in a raw water reservoir and rapid sand filters

机译:原水库和快速滤砂器中的硝化和低温

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Ammonium removal occurs in both the surface water reservoir and rapid sand filters of Amsterdam Water Supply. Nitrification in the reservoir is best modelled as a first order reaction with a temperature dependent breakdown coefficient. In moderate winters, the increase of ammonium concentration in the filter influent is compensated bur stagnation of nitrification in the Winter of '95-'96 led to a two and half month excess of the ammonium maximum admissible concentration. Only after the start of phosphate dosing, full restoration of nitrification was achieved. A model to alert for ammonium breakthrough was developed based on growth characteristics of Nitrosomonas. (C) 1998 IAWQ. Published by Elsevier Science Ltd. [References: 12]
机译:阿姆斯特丹水务公司的地表水库和快速除砂器中都发生了除氨作用。储层中的硝化作用最好模拟为一阶反应,其分解系数与温度有关。在适中的冬季,过滤器进水中铵盐浓度的增加被补偿了'95 -'96冬季中硝化的突然停滞,导致铵盐最大允许浓度超出两个半月。仅在开始添加磷酸盐后,才能完全恢复硝化作用。根据亚硝化单胞菌的生长特征,开发了一种警告铵离子突破的模型。 (C)1998 IAWQ。由Elsevier Science Ltd.发布[参考:12]

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