Buch, Englisch, 496 Seiten, Format (B × H): 178 mm x 254 mm
Biological and Membrane-Based Technologies
Buch, Englisch, 496 Seiten, Format (B × H): 178 mm x 254 mm
ISBN: 978-1-032-91288-2
Verlag: Taylor & Francis Ltd
This book reviews the principles and challenges of biomining, bioflotation, and membrane separation technologies as applied to the hydrometallurgical field, including recent technological developments. It explores the evolution of biomining and bioflotation within the hydrometallurgical industry over recent years, emphasizing the increasing diversity of bioreagents, their mechanisms of action, and the classification of processes based on their fields of application. The book also discusses the sustainability of mineral processing technologies.
- Provides valuable insights into innovative technologies and methodologies that enhance sustainability in mineral recovery processes
- Brings together biological and membrane-based technologies within a single comprehensive volume
- Discusses the impact of bioengineering on the advancement of biomining and bioflotation
- Explores interactions between microorganisms and minerals
- Reviews the use of biomining for the beneficiation of precious metals from secondary minerals
This book is intended for graduate students, researchers, and professionals in mineral processing, hydrometallurgy, geochemistry, environmental science, and chemical engineering.
Zielgruppe
Academic and Postgraduate
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
SECTION I 1. Biomining-a new approach to recover high-value minerals from low-grade ores 2. Microbial Biocomposites for the Recovery of Valuable Metals from Electronic Scraps 3.The Effect of Temperature on Iron and Sulfur-Oxidizing Acidophile-Based Bioleaching of Metals from Printed Circuit Boards 4. Design and Application of Large-Scale Bioreactors for Bioleaching of Secondary Minerals 5. Application of engineered microorganisms in the bioleaching of secondary minerals 6. Technoeconomic and environmental perspectives of the bioleaching of secondary minerals SECTION II 7. Bioflotation of Platinum Group Metals (PGMs) and Base Metals: A Comparative Review of Principles and Determining Factors 8: Effects of various pre-treatments of microorganisms on their performance during bio-floatation 9. Inorganic Electrolyte Enhanced Coagulation-Flocculation-Sedimentation and Floatability of Talc Particles in the Presence of a Biopolymer: A Perspective on the Depression of Gangue and Dewatering of Tailings 10. Insights into a Biobased Depressant on the Flotation of a Cu-Ni-PGM Platreef Ore in Simple and Complex Process Water 11. The function of heterocoagulation in fluorite flotation from fluorite hematite ore 12. Residual Flotation Reagents in PGM Tailings Post-flotation and their Influence on Tailings Management: A Focus on CMC as a Biodepressant and its Potential as a Bioflocculant SECTION III 13 Development of suitable membrane technology for effective extraction of REEs 14. Polymer-based Membranes for Separation and Recovery of Precious Metals 15. Combination of renewable energy and membrane technology for sustainability of metallurgical processes 16. Solar-Driven Membrane Technology for The Remediation of Metallurgical Water 17. Recovery of High-Value Minerals from Dilute Metallurgical Wastewater by Membrane/Freeze Desalination/ Vacuum Evaporation Hybrid Systems 18. Valorization of waste from mine water using membrane technology 19. Model prediction of the performance of membrane technology for metal recovery 20. Bio-membrane-based technologies for Circularity and Sustainable Metal Recovery 21. Beneficiation and recovery of precious metals from secondary minerals using bio-mining process: advantages, limitations and future perspectives




