Sustainable Heavy Metal Remediation
Autor: | Eldon R. Rene, Erkan Sahinkaya, Alison Lewis, Piet N.L. Lens |
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EAN: | 9783319586229 |
eBook Format: | |
Sprache: | Englisch |
Produktart: | eBook |
Veröffentlichungsdatum: | 24.07.2017 |
Untertitel: | Volume 1: Principles and Processes |
Kategorie: | |
Schlagworte: | Bioleaching Biological sulfate reduction Bioprecipitation Biosolubilization Biosorption Electronic waste Environmental sustainability Industrial and mining wastewaters Metallurgical slags mineralogy Metal removal Phytoremediation Wastewate |
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This book covers the principles, underlying mechanisms, thermodynamic functions, kinetics and modeling aspects of sustainable technologies, particularly from the standpoint of applying physical, chemical and biological processes for the treatment of wastewater polluted with heavy metals. Particular emphasis has been given to technologies that are based on adsorption, electro-coagulation, bio-precipitation, bio-solubilization, phytoremediation and microbial electrolysis.
Metal contamination in the environment is one of the persisting global issues. The adverse health effects of heavy metals on human beings and its impact on the environment has been well-documented. Several physico-chemical and biological technologies have been successfully implemented to prevent and control the discharge of industrial heavy metal emissions. On the contrary, metal resource depletion has also accelerated dramatically during the 20th century due to rapid advances in industrial engineering and medical sciences, which requires large amount of raw materials.
To meet the global metal demand, in recent years, novel research lines have started to focus on the recovery of metals from metal contaminated waste streams. In order to conflate both metal removal and recovery, new technologies have been successfully tested, both at the lab and pilot-scale. The target audience of this book primarily comprises of research experts, practicing engineers in the field of environmental/chemical technology and graduate students.
Eldon Raj Rene, Senior Lecturer in Resource Recovery Technology, Department of Environmental Engineering and Water Technology, UNESCO-IHE.