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Removal of Copper from Industrial Effluent Using a Spiral Wound Module — Film Theory and Hydrodynamic Approach by T. Chaabane; S. Taha; M. Taleb Ahmed; R. Maachi; G. Dorange is a Environmental Science article available to read on EtoBox.
What is Removal of Copper from Industrial Effluent Using a Spiral Wound Module — Film Theory and Hydrodynamic Approach about?
The problems involved in the environment for a surface treatment are especially at the level of water and even dangerous often toxic waste for the environment. The purpose of the surface treatments is to make acquire on metal or plastic surfaces new properties by a surface dressing of material. In this search for the respect of the environment, of the standards, and the laws in strengths; the application of the membrane techniques in industry of surface treatment often require less energy and offer low fresh working assets compared to much of conventional systems of treatment. The coupling of the membrane techniques such as the nanofiltration with traditional methods of treatment physicochemical seems the promising solution to reduce volumes of industrial wastes considerably. The inorganic and organic pollutants present in its effluents can be removed simultaneously by using this kind of system of treatment. The removal of copper from effluent by a negatively charged microporous nanofiltration (NF) membrane called Nanomax50 was investigated. The difficulty encountered during the treatment of the synthetic solutions filtration and the effluent, suggested the investigation one of the
Who reads Removal of Copper from Industrial Effluent Using a Spiral Wound Module — Film Theory and Hydrodynamic Approach?
It is typically read by researchers, students, and practitioners in Environmental Science.
- Author
- T. Chaabane; S. Taha; M. Taleb Ahmed; R. Maachi; G. Dorange
- Publisher
- Elsevier Science; Elsevier ; Elsevier BV (ISSN 0011-9164)
- Published
- 2006
- Language
- EN
- Field
- Environmental Science (Physical Sciences)