KWR Watercycle Research Institute, P.O. Box 1072, 3430 BB Nieuwegein, The Netherlands.
KWR Watercycle Research Institute, P.O. Box 1072, 3430 BB Nieuwegein, The Netherlands.
Water Res. 2017 Feb 1;109:35-45. doi: 10.1016/j.watres.2016.11.032. Epub 2016 Nov 9.
A model has been developed that takes into account the main characteristics of (submerged) rapid filtration: the water quality parameters of the influent water, notably pH, iron(II) and manganese(II) concentrations, homogeneous oxidation in the supernatant layer, surface sorption and heterogeneous oxidation kinetics in the filter, and filter media adsorption characteristics. Simplifying assumptions are made to enable validation in practice, while maintaining the main mechanisms involved in iron(II) and manganese(II) removal. Adsorption isotherm data collected from different Dutch treatment sites show that Fe(II)/Mn(II) adsorption may vary substantially between them, but generally increases with higher pH. The model is sensitive to (experimentally) determined adsorption parameters and the heterogeneous oxidation rate. Model results coincide with experimental values when the heterogeneous rate constants are calibrated.
现已开发出一种模型,该模型考虑了(淹没)快速过滤的主要特征:进水的水质参数,尤其是 pH 值、铁(II)和锰(II)浓度、在上清液层中的均相氧化、在过滤器中的表面吸附和多相氧化动力学,以及过滤介质的吸附特性。简化假设可用于实际验证,同时保持铁(II)和锰(II)去除中涉及的主要机制。从不同的荷兰处理站点收集的吸附等温线数据表明,Fe(II)/Mn(II)吸附可能在它们之间有很大差异,但通常随 pH 值升高而增加。当异质速率常数得到校准时,模型结果与实验值吻合。