
Advanced Bioseparation of Industrial Wastes
Sustainable Recovery of High-Value Metal Ions
- 420 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Advanced Bioseparation of Industrial Wastes
Sustainable Recovery of High-Value Metal Ions
About this book
Advanced Bioseparation of Industrial Wastes: Sustainable Recovery of High-Value Metal Ions examines resource recovery from a variety of industrial waste streams, including sludge and wastewater, with an emphasis on both the fundamentals and the more advanced concepts involved. Chemical leaching, waste treatment, and other processes for metal extraction are broken down into their component parts in great detail. Several important metals, such as lithium, copper, gold, platinum, nickel, zinc, chromium, uranium, cobalt, rhodium, and indium, could be salvaged from recyclables. The book presents the best practices for dealing with waste from industries such as those involved in the production of electronic goods, automobiles, batteries, as well as mining and electroplating industries. It provides readers with a comprehensive understanding of the many forms of industrial waste, including their composition, recycling processes, and the potential for recovery of essential metals, from the ground up.
- Provides updated occurrence and characteristics of a variety of high-value metal ions that can be recovered from different industrial wastes.
- Presents advanced chemical leaching technologies for those metal ions.
- Describes detailed accounts of physico-chemical-based reuse and recycle methodologies.
- Covers innovative approaches for the reutilization and management of industrial wastes.
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Information
Table of contents
- Cover
- Half Title
- Title Page
- Copyright Page
- Table of Contents
- About the Editors
- List of Contributors
- Preface
- Chapter 1 Introduction: Environmentally Friendly Recovery of High-Value Metal Ions
- Chapter 2 Global Strategies and Statistics of Biological Separation of Metal Ions From Industrial Waste
- Chapter 3 Bioleaching: An Advanced Technique for the Renewal of Essential Metals
- Chapter 4 Bioleaching of Lithium Ions from Li-Ion Battery Waste
- Chapter 5 Biological Recovery of Gold from e-Wastes
- Chapter 6 Bioleaching of e-Wastes: Copper Extraction
- Chapter 7 Bioleaching of Manganese from Industrial Waste Effluents
- Chapter 8 Bio-Recovery of Nickel from Acid Mine Drainage
- Chapter 9 Microorganism-Enhanced Recovery of Zinc from Mining Waste
- Chapter 10 Bioleaching of Municipal Wastes: Recovery of Phosphorus
- Chapter 11 Bioleaching: A Feasible Option for Extraction of Essential Metals from Electroplating Sludge
- Chapter 12 Indium Recovery from Mining Discards Using Bioleaching
- Chapter 13 Chemical and Biological Extraction of Chromium from Industrial Wastes
- Chapter 14 Recovery of Uranium from Mine Discards Through Bioleaching
- Chapter 15 Bioleaching of Spent Automobile Catalyst: Recovery of Palladium
- Chapter 16 Microorganism-Based Leaching of Industrial Waste for the Recovery of Cobalt
- Chapter 17 Bioleaching, an Alternative Tool for Platinum Group Metal Recovery from Industrial Waste: An Overview
- Chapter 18 Bioleaching of Laterites for the Extraction of Valuable Metal Ions: A Microbial Approach for Sustainable Recovery
- Index