Innovative materials and methods for water treatment : solutions for arsenic and chromium removal / editors, Marek Bryjak Wroclaw University of Technology, Wroclaw, Poland, Nalan Kabay Ege University, Izmir, Turkey, Bernabé L. Rivas University of Concepción, Concepción, Chile, Jochen Bundschuh University of Southern Queensland, Faculty of Health, Engineering and Sciences & National Centre for Engineering in Agriculture, Toowoomba, Queensland, Australia Royal Institute of Technology (KTH), Stockholm, Sweden.

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Bibliographic Details
Online Access: Full Text (via Taylor & Francis)
Other Authors: Bryjak, Marek
Format: eBook
Language:English
Published: Boca Raton : CRC Press/Balkema is an imprint of the Taylor & Francis Group, an Informa business, [2015]
Series:Sustainable Water Developments - Resources, Management, Treatment, Efficiency and Reuse.
Subjects:

MARC

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245 0 0 |a Innovative materials and methods for water treatment :  |b solutions for arsenic and chromium removal /  |c editors, Marek Bryjak Wroclaw University of Technology, Wroclaw, Poland, Nalan Kabay Ege University, Izmir, Turkey, Bernabé L. Rivas University of Concepción, Concepción, Chile, Jochen Bundschuh University of Southern Queensland, Faculty of Health, Engineering and Sciences & National Centre for Engineering in Agriculture, Toowoomba, Queensland, Australia Royal Institute of Technology (KTH), Stockholm, Sweden. 
264 1 |a Boca Raton :  |b CRC Press/Balkema is an imprint of the Taylor & Francis Group, an Informa business,  |c [2015] 
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490 1 |a Sustainable Water Developments - Resources, Management, Treatment, Efficiency and Reuse ;  |v v. 2. 
504 |a Includes bibliographical references and index. 
505 0 |a Front Cover; Table of contents; About the book series; Editorial board; List of contributors; Editors' foreword; About the editors; Acknowledgements; Part I: Introduction to the problem of arsenic and chromium contaminations; 1. Occurrence and toxicity of arsenic and chromium; 2. The clean water problem -- example of arsenic contamination in the Gangetic Plain of India; 3. Human health through traces of contaminants in water: structural effects induced by Cr(III) and Cr(VI) on red cells; 4. Implementation of innovations as challenges for water treatment. 
505 8 |a Part II: Innovative materials for removal of arsenic and chromium5. Separation of arsenic from waters using inorganic adsorbents; 6. Arsenic sorption on mono and binary metal oxide doped natural solids; 7. Low-cost adsorbents for arsenic separation from wastewaters; 8. Polymeric sorbents for selective chromium removal; 9. Solvent-impregnated resins (SIRs) for Cr(VI) removal; 10. Arsenic and chromium removal using ion-exchange processes; 11. Water-soluble polymers in conjunction with membranes to remove arsenic and chromium; 12. Solid waste materials for arsenic and chromium removal. 
505 8 |a Part III: Innovative methods for removal of arsenic and chromium13. Emerging technologies in the removal of arsenic from polluted waters; 14. Arsenic removal from geothermal water with inorganic adsorbents; 15. Arsenic removal by advanced oxidation assisted by solar energy; 16. Arsenic removal by means of membrane techniques; 17. Innovative membrane applications for arsenic removal; 18. Removal of trace chromate from contaminated water: ion-exchange and redox-active sorption processes; 19. Application of membrane technology to chromium elimination from aquatic environments. 
505 8 |a 20. Hybrid systems for removal of trace amounts of Cr(VI) and As(V) ions from water21. Removal of arsenic and chromium ions by dialysis and electrodialysis; Part IV: Case studies: Latin America and the United States of America examples; 22. Latin American experiences in arsenic removal from drinking water and mining effluents; 23. The removal of arsenic and chromate (Cr(VI)) from drinking water in the United States of America; Book series page; Back Cover. 
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