Steiner Michele, Pronk Wouter, Boller Markus A
Swiss Federal Institute of Aquatic Science and Technology (Eawag), Ueberlandstrasse 133, P.O. Box 611, 8600 Duebendorf, Switzerland.
Environ Sci Technol. 2006 Mar 1;40(5):1629-35. doi: 10.1021/es051324w.
During rain events, copper wash-off occurring from copper roofs results in environmental hazards. In this study, columns filled with granulated ferric hydroxide (GFH) were used to treat copper-containing roof runoff. It was shown that copper could be removed to a high extent. A model was developed to describe this removal process. The model was based on the Two Region Model (TRM), extended with an additional diffusion zone. The extended model was able to describe the copper removal in long-term experiments (up to 125 days) with variable flow rates reflecting realistic runoff events. The four parameters of the model were estimated based on data gained with specific column experiments according to maximum sensitivity for each parameter. After model validation, the parameter set was used for the design of full-scale adsorbers. These full-scale adsorbers show high removal rates during extended periods of time.
在降雨事件期间,铜屋顶产生的铜冲刷会造成环境危害环境危害。在本研究中,使用填充有氢氧化铁颗粒(GFH)的柱子来处理含铜屋顶径流。结果表明,铜可以被大量去除。开发了一个模型来描述这种去除过程。该模型基于两区模型(TRM),并扩展了一个额外的扩散区。扩展模型能够描述长期实验(长达125天)中铜的去除情况,实验中流量可变,反映了实际径流事件。根据每个参数的最大灵敏度,基于特定柱实验获得的数据估计了模型的四个参数。经过模型验证后,该参数集被用于全尺寸吸附器的设计。这些全尺寸吸附器在较长时间内显示出高去除率。