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Pollution control and resource reuse...
~
Chenglong, Zhang.
Pollution control and resource reuse for alkaline hydrometallurgy of amphoteric metal hazardous wastes
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Pollution control and resource reuse for alkaline hydrometallurgy of amphoteric metal hazardous wastesby Zhao Youcai, Zhang Chenglong.
作者:
Youcai, Zhao.
其他作者:
Chenglong, Zhang.
出版者:
Cham :Springer International Publishing :2017.
面頁冊數:
li, 405 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
標題:
Hazardous waste site remediation.
電子資源:
http://dx.doi.org/10.1007/978-3-319-55158-6
ISBN:
9783319551586$q(electronic bk.)
Pollution control and resource reuse for alkaline hydrometallurgy of amphoteric metal hazardous wastes
Youcai, Zhao.
Pollution control and resource reuse for alkaline hydrometallurgy of amphoteric metal hazardous wastes
[electronic resource] /by Zhao Youcai, Zhang Chenglong. - Cham :Springer International Publishing :2017. - li, 405 p. :ill. (some col.), digital ;24 cm. - Handbook of environmental engineering ;v.18. - Handbook of environmental engineering ;v.13..
Chapter 1. Amphoteric metal hazardous wastes and hydrometallurgical processes of zinc and lead -- Chapter 2. Thermodynamic of alkaline leaching of zinc and lead hazardous wastes -- Chapter 3. Kinetic of alkaline leaching of solid wastes bearing zinc and lead -- Chapter 4. Leaching of zinc and lead hazardous wastes in alkaline solutions -- Chapter 5. Purification of leach solution of zinc and lead in alkaline solutions -- Chapter 6. Electrowinning of zinc and lead from alkaline solutions -- Chapter 7. Alkaline hydrometallurgy of low-grade smithsonite ores -- Chapter 8. Spent electrolyte regeneration and recovery of associated valuable metals from lean leach solution -- Chapter 9. Industrial scale production of zinc powder using alkaline leaching-electrowinning processes.
This book provides a comprehensive description of alkaline hydrometallurgy of amphoteric metal hazardous wastes. Topics focus on leaching of zinc and lead hazardous wastes, purification of leach solution of zinc and lead, electrowinning of zinc and lead from purified alkaline solutions, chemical reactions taking place in the production flowsheets, thermodynamic and spent electrolyte regeneration, alkaline hydrometallurgy of low-grade smithsonite ores, recovery of molybdenum and tungsten using ion flotation and solvent extraction processes and their application in chemical synthesis of Nb and Ta inorganic compounds, and industrial scale production of 1500-2000 t/a zinc powder using alkaline leaching-electrowinning processes. Processes described are cost-effective, generate lesser secondary pollutants, and have been applied widely in China. Readers that will find the book appealing include solid waste engineers, environmental managers, technicians, recycling coordinators, government officials, undergraduates and graduate students, and researchers.
ISBN: 9783319551586$q(electronic bk.)
Standard No.: 10.1007/978-3-319-55158-6doiSubjects--Topical Terms:
197247
Hazardous waste site remediation.
LC Class. No.: TD1052
Dewey Class. No.: 628.52
Pollution control and resource reuse for alkaline hydrometallurgy of amphoteric metal hazardous wastes
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Chapter 1. Amphoteric metal hazardous wastes and hydrometallurgical processes of zinc and lead -- Chapter 2. Thermodynamic of alkaline leaching of zinc and lead hazardous wastes -- Chapter 3. Kinetic of alkaline leaching of solid wastes bearing zinc and lead -- Chapter 4. Leaching of zinc and lead hazardous wastes in alkaline solutions -- Chapter 5. Purification of leach solution of zinc and lead in alkaline solutions -- Chapter 6. Electrowinning of zinc and lead from alkaline solutions -- Chapter 7. Alkaline hydrometallurgy of low-grade smithsonite ores -- Chapter 8. Spent electrolyte regeneration and recovery of associated valuable metals from lean leach solution -- Chapter 9. Industrial scale production of zinc powder using alkaline leaching-electrowinning processes.
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This book provides a comprehensive description of alkaline hydrometallurgy of amphoteric metal hazardous wastes. Topics focus on leaching of zinc and lead hazardous wastes, purification of leach solution of zinc and lead, electrowinning of zinc and lead from purified alkaline solutions, chemical reactions taking place in the production flowsheets, thermodynamic and spent electrolyte regeneration, alkaline hydrometallurgy of low-grade smithsonite ores, recovery of molybdenum and tungsten using ion flotation and solvent extraction processes and their application in chemical synthesis of Nb and Ta inorganic compounds, and industrial scale production of 1500-2000 t/a zinc powder using alkaline leaching-electrowinning processes. Processes described are cost-effective, generate lesser secondary pollutants, and have been applied widely in China. Readers that will find the book appealing include solid waste engineers, environmental managers, technicians, recycling coordinators, government officials, undergraduates and graduate students, and researchers.
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