Copper and zinc removal from roof runoff: from research to full-scale adsorber systems

Author:

Steiner M.1,Boller M.1

Affiliation:

1. Swiss Federal Institute for Environmental Science and Technology (EAWAG), Ueberlandstrasse 133, CH-8600 Duebendorf, Switzerland

Abstract

Large, uncoated copper and zinc roofs cause environmental problems if their runoff is infiltrated into the underground or discharged into receiving waters. Since source control is not always feasible, barrier systems for efficient copper and zinc removal are recommended in Switzerland. During the last few years, research carried out in order to test the performance of GIH-calcite adsorber filters as a barrier system. Adsorption and mass transport processes were assessed and described in a mathematical model. However, this model is not suitable for practical design, because it does not give explicit access to design parameters such as adsorber diameter and adsorber bed depth. Therefore, for e.g. engineers, an easy to use design guideline for GIH-calcite adsorber systems was developed, mainly based on the mathematical model. The core of this guideline is the design of the depth of the GIH-calcite adsorber layer. The depth is calculated by adding up the GIH depth for sorption equilibrium and the depth for the mass transfer zone (MTZ). Additionally, the arrangement of other adsorber system components such as particle separation and retention volume was considered in the guideline. Investigations of a full-scale adsorber confirm the successful application of this newly developed design guideline for the application of GIH-calcite adsorber systems in practice.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Misapplication of generic hazard-classification schemes for versatile, sustainable building materials: Copper as an example;Human and Ecological Risk Assessment: An International Journal;2017-06-22

2. Removal of Dissolved Copper and Zinc from Highway Runoff via Adsorption;Journal of Sustainable Water in the Built Environment;2016-02

3. Abstraction of Atmospheric Humidity;Treatise on Water Science;2011

4. Zinc precipitation runoff from galvanised steel in humid tropical climate;Corrosion Engineering, Science and Technology;2010-02

5. The interaction between concrete pavement and corrosion-induced copper runoff from buildings;Environmental Monitoring and Assessment;2007-07-17

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