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|a Evaluating water quality to prevent future disasters /
|c edited by Satinder Ahuja.
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|a Cambridge, MA :
|b Academic Press,
|c 2019.
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|a 1 online resource
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|a text
|b txt
|2 rdacontent
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|a computer
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|2 rdamedia
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|a online resource
|b cr
|2 rdacarrier
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|a Separation science and technology ;
|v volume 11
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|a Includes index.
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|a Online resource; title from PDF title page (EBSCO, viewed June 4, 2019)
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|a Front Cover; Evaluating Water Quality to Prevent Future Disasters; Copyright; Dedication; Contents; Contributors; Preface; Chapter 1: Overview: Evaluating Water Quality to Prevent Future Disasters; 1. Introduction; 1.1. Water Pollution Regulations; 1.2. The Role of Separation Science and Technology in Handling Water Disasters; 1.3. Evaluating Water Quality for Ultratrace Contaminants; 2. Complexities of Aquatic Endocrine Disruption in a Changing Global Climate; 3. Impact of Persistent Droughts on the Quality of Middle East Water Resources
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|a 4. Present and Potential Water-Quality Challenges in India5. Arsenic Contamination in South Asian Regions-The Difficulties and Challenges; 6. Cyanobacteria and Their Toxins; 7. Educational Partnerships Combined With Research on Emerging Pollutants for Long-Term Water-Quality Monitoring; 8. Impacts of Deepwater Horizon Oil and Dispersants on Various Life Stages of Oysters; 9. Analytical Methods for the Comprehensive Characterization of Produced Water; 10. Innovations in Monitoring With Water-Quality Sensors: Applications for Floods, Hurricanes, and Harmful Algal Blooms
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|a 11. Developing a Sensitive Biosensor for Monitoring Arsenic in Drinking Water Supplies12. Investigating the Missing-Link Effects of Noncompliance and Aging Private Infrastructure on Water-Quality Monitoring; 13. GenX Contamination of the Cape Fear River, North Carolina: Analytical Environmental Chemistry Uncovers Multiple Syste ... ; 14. Analysis of GenX and Other Per- and Polyfluoroalkyl Substances in Environmental Water Samples; 15. Sustainable Magnetically Retrievable Nanoadsorbents for Selective Removal of Heavy Metal Ions From Different Charged ...
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|a 16. Lessons Learned From Water Disasters17. Conclusions; References; Chapter 2: The Heat Is On: Complexities of Aquatic Endocrine Disruption in a Changing Global Climate; 1. Introduction; 2. Hypoxia; 2.1. Early Life Stages Effects; 2.2. Adult Effects; 2.3. Conclusions; 3. Salinity; 3.1. Early Life Stages Effects; 3.2. Adult Effects; 3.3. Conclusions; 4. Acidification; 4.1. Early Life Stages Effects; 4.2. Adult Effects; 4.3. Conclusions; 5. Temperature; 5.1. Early Life Stage Effects; 5.2. Adult Effects; 5.3. Conclusions; 6. Multiple Stressors; 7. Transgenerational and Epigenetic Effects
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|a 8. Population Level Effects9. Community Level Effects; 10. Conclusions and Future Research Directions; Acknowledgments; Author Contributions; References; Further Reading; Chapter 3: Impact of Persistent Droughts on the Quality of the Middle East Water Resources; 1. Introduction; 1.1. The Middle East and the Regional Climate; 1.2. Global Warming and Drought Impact; 1.3. The Drought in the Middle East; 2. Drought Impact on Aquatic Ecosystems; 2.1. Surface Water and Aquatic Ecosystems; 2.2. Groundwater Resources; 3. Impact on Water Resources Availability and Quality
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|a Water quality
|x Measurement.
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|a Eau
|x Qualit�e
|x Mesure.
|0 (CaQQLa)201-0097610
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|a TECHNOLOGY & ENGINEERING
|x Environmental
|x General.
|2 bisacsh
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|a Water quality
|x Measurement
|2 fast
|0 (OCoLC)fst01171854
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|a Ahuja, Satinder,
|d 1933-
|e editor.
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830 |
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|a Separation science and technology (San Diego, Calif.) ;
|v v. 11.
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|u https://sciencedirect.uam.elogim.com/science/bookseries/18771718/11
|z Texto completo
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