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Metal Value Recovery from Industrial Waste Using Advanced Physicochemical Treatment Technologies

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Paperback, blz. | Engels
Elsevier Science | e druk, 2024
ISBN13: 9780443218842
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Elsevier Science e druk, 2024 9780443218842
€ 187,00
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Metal Value Recovery from Industrial Waste Using Advanced Physicochemical Treatment Technologies focuses on the fundamental and advanced topics involved with the technologies for the extraction of metal ions from different industrial discarded volumes which may be sludge or wastewater. Uniqueness of the book lies in the fact that it covers each topic related to industrial wastes and elaborates on discussions on metal ion recovery to make the readers confident about the topics and concepts explained in the section.

Moreover, this book examines high potential in different downstream processes like membrane filtration, hybrid techniques, chemical leaching, electrochemical techniques, and a variety of advanced recovery techniques. Emphasis is given to state-of-the-art concept, latest research, practical applications or commercialization through case studies, and comparative evaluation of the processes for metal ion recovery from industrial wastes.

Specificaties

ISBN13:9780443218842
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>Preface<br>Foreword<br>About the Editors<br><br>1. Metal components in industrial wastes and methods for metal ions recovery<br>2. Approach of Microfiltration, Ultrafiltration, and Membrane Reactors in the Recovery of Essential Metals from Industrial Wastewater<br>3. Chemical Leaching Process for Essential Metal Recovery from Industrial Wastes<br>4. Heavy metal harmony: Sustainable solutions for industrial effluent treatment<br>5. Approach of NF, RO and integrated system in recovery of essential metals from industrial effluents<br>6. Application of different techniques for platinum and gold recovery from electronic waste<br>7. Recovery of copper from acid mine drainage using advanced recovery techniques<br>8. Technologies for the recovery of nickel and copper from electroplating industrial effluent<br>9. Removal of heavy metals from wastewater using synthetic chelating agents: A review<br>10. Photocataytic demetallization of industrial sludge<br>11. Recovery of lithium and lead ions from battery industry wastes using advanced separation techniques<br>12. Critical review on various recycling methods of indium from flat panel displays<br>13. Recovery of lanthanum and cerium from rare earth polishing powder wastes<br>14. Recent advances in the recovery of neodymium and dysprosium from industrial waste<br>15. Physicochemical recovery of yttrium and europium from industrial sludge<br>16. Recovery of zinc from a variety of industrial wastes<br>17. Cutting-edge technologies for the recovery of cobalt from different waste discards<br>18. Futuristic augmentation of various industrial wastes for the green recovery of high-valued metal ions<br>19. Regulatory aspects of metal ion recovery and possible policy suggestions<br><br>Acknowledgements<br>Dedications</p>
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        Metal Value Recovery from Industrial Waste Using Advanced Physicochemical Treatment Technologies