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Water reclamation and sustainability /

Many hydrological, geochemical, and biological processes associated with water reclamation and reuse are poorly understood. In particular, the occurrence and effects of trace organic and inorganic contaminants commonly found in reclaimed water necessitates careful analysis and treatment prior to saf...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Ahuja, Satinder, 1933- (Editor )
Formato: Electrónico eBook
Idioma:Inglés
Publicado: San Diego, CA : Elsevier, 2014.
Edición:First edition.
Temas:
Acceso en línea:Texto completo

MARC

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245 0 0 |a Water reclamation and sustainability /  |c edited by Satinder Ahuja. 
250 |a First edition. 
264 1 |a San Diego, CA :  |b Elsevier,  |c 2014. 
264 4 |c ©2014 
300 |a 1 online resource (xx, 473 pages) 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
338 |a online resource  |b cr  |2 rdacarrier 
504 |a Includes bibliographical references. 
588 0 |a Print version record. 
520 |a Many hydrological, geochemical, and biological processes associated with water reclamation and reuse are poorly understood. In particular, the occurrence and effects of trace organic and inorganic contaminants commonly found in reclaimed water necessitates careful analysis and treatment prior to safe reuse. Water Reclamation and Sustainability is a practical guide to the latest water reclamation, recycling, and reuse theory and practice. From water quality criteria and regulations to advanced techniques and implementation issues, this book offers scientists a toolkit for developing safe and successful reuse strategies. With a focus on specific contaminant removal techniques, this book comprehensively covers the full range of potential inorganic/organic contaminating compounds and highlights proven remediation methods. Socioeconomic implications related to current and future water shortages are also addressed, underscoring the many positive benefits of sustainable water resource management. 
506 |a Access restricted to Ryerson students, faculty and staff.  |5 CaOTR 
505 0 |a Front Cover; Water Reclamation and Sustainability; Copyright; Dedication; Contents; List of Contributors; Preface; 1 -- Overview: Water Reclamation and Sustainability; 1 Introduction; 2 Adaptation to Climate Change; 3 Green Chemistry Solutions to Water Pollution; 4 Uranium Contamination of Water: Characterization of 234U/238U Activity in Navajo Reservation; 5 Metallurgical Slag as an Efficient and Economical Adsorbent of Arsenic; 6 Addressing Arsenic Mass Poisoning in South Asia with Electrochemical Arsenic Remediation. 
505 8 |a 7 Domestic- and Community-scale Arsenic Removal Technologies Suitable for Developing Countries8 Advances Made in Understanding the Interaction of Ferrate(VI) with Natural Organic Matter in Water; 9 Assessment of Copper Slag as a Sustainable Fenton-type Photocatalyst for Water Disinfection; 10 Nitrate as a Photocatalyst in the Context of Water Reclamation; 11 Water-Quality Assessments Using Hydroxyl Radical Probes in Gamma Irradiations; 12 Ozone Treatment of Antibiotics in Water; 13 Noble Metal Nanosystems for Removal of Contaminants from Drinking Water. 
505 8 |a 14 Estimating Water, Energy, and Carbon Footprints of Residential Swimming Pools15 Biowaste Management: Sludge Drying Through Hydrophobic Membranes; 16 Sustainability of Activated Sludge Processes; 17 Technologies and Framework for Resource Recovery from Human Waste; 18 Water Recycling and Reuse; 19 Conclusions; References; 2 -- Adaptation to Climate Change for Water Utilities; 1 Drivers for Change in Urban Water Management Systems; 2 Climate Change Impacts on Water Utilities; 3 Response Strategies by Water Utilities; 4 Integrated Urban Water Management: The Key to the Fifth Paradigm. 
505 8 |a 5 Resources for Water Utilities6 Conclusions; Acknowledgments; References; 3 -- Green Chemistry Solutions to Water Pollution; 1 Introduction; 2 Water Treatment Challenges: Organic and Inorganic Pollutants; 3 Traditional Technologies for Water Treatment; 4 The Need to Be Green; 5 Green Chemistry Solutions to Water Pollution; 6 Green Chemistry Principles for Solving Water Pollution Problems; 7 Conclusions; References; List of Relevant Websites; 4 -- Characterization of 234U/238U Activity Ratios and Potential Inorganic Uranium Complexation Species in Unregulated Water ... ; 1 Introduction. 
505 8 |a 2 Sampling and Methods3 Results and Discussion; 4 Conclusions; Acknowledgments; References; 5 -- Metallurgical Slag as an Efficient and Economical Adsorbent of Arsenic; 1 Introduction; 2 Experimental Procedure; 3 Results; 4 Conclusions; References; 6 -- Addressing Arsenic Mass Poisoning in South Asia with Electrochemical Arsenic Remediation; 1 Introduction; 2 ECAR Process; 3 Arsenic Removal in Synthetic Groundwater; 4 Hydrous Ferric Oxide Structure, Reactivity, and Colloidal Stability; 5 Sludge Stabilization; 6 ECAR Performance Model and Validation; 7 Validation with Real Groundwater. 
546 |a English. 
590 |a Knovel  |b ACADEMIC - Environment & Environmental Engineering 
590 |a Knovel  |b ACADEMIC - Sustainable Energy & Development 
650 0 |a Water reuse. 
650 0 |a Water  |x Purification. 
650 0 |a Water quality management. 
650 0 |a Green chemistry. 
650 2 |a Water Purification 
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650 7 |a Green chemistry  |2 fast 
650 7 |a Water  |x Purification  |2 fast 
650 7 |a Water quality management  |2 fast 
650 7 |a Water reuse  |2 fast 
700 1 |a Ahuja, Satinder,  |d 1933-  |e editor. 
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