Water quality management : select proceedings of ICWEES-2016 /

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Bibliographic Details
Meeting name:International Conference on Water, Environment, Energy and Society (5th : 2016 : Bhopal, India)
Imprint:Singapore : Springer, 2018.
Description:1 online resource
Language:English
Series:Water science and technology library, 0921-092X ; volume 79
Water science and technology library ; v. 79.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11543128
Hidden Bibliographic Details
Other authors / contributors:Singh, V. P. (Vijay P.), editor.
Yadav, Shalini, editor.
Yadava, Ram Narayan, editor.
ISBN:9789811057953
9811057958
9789811057946
981105794X
Digital file characteristics:PDF
text file
Notes:Includes bibliographical references.
Online resource; title from PDF title page (SpringerLink, viewed January 18, 2018).
Summary:This book comprises two parts. The first part deals with some aspects of wastewater treatment, encompassing various types of technologies for treating wastewater and evaluation. The technologies, biochemical as well as chemical, including evaluation of technologies are also discussed. Part 2 is on solid waste management. It includes both municipal and industrial waste management. The book is of interest to researchers and practitioners in the field of water resources, hydrology, environmental resources, agricultural engineering, watershed management, earth sciences, as well as those engaged in natural resources planning and management. Graduate students and those wishing to conduct further research in water and environment and their development and management find the book to be of value.
Other form:Printed edition: 9789811057946
Standard no.:10.1007/978-981-10-5795-3
Table of Contents:
  • Intro; Preface; Sponsors and Co-Sponsors; Acknowledgements; Contents; About the Editors; Wastewater Treatment; 1 Investigation on the Treatment of Combined Effluent Treatment Plant Wastewater and Its Safe Use in Agricultureâ#x80;#x94;A Green Technology Concept; Abstract; Introduction; Materials and Methods; Preparation of Biocarbon; Collection and Analysis Grey Water; Treatment of Grey Water: Biosorption Process; Evaluation of Capacity of Biocarbon; Data Analysis; Results and Discussion; Characteristics of Biocarbon (BC); Surface Analysis; Characteristics of Grey Water and Treated Water.
  • Effect of Biocarbon Dose on Heavy Metals RemovalRemoval of Colour from a Grey Water; Water Reuse in Agriculture Practice; Conclusion; References; 2 Evaluation of Treatment Technologies for Arsenic-Free Drinking Water Supply, Disposal of Backwash Water and Exhausted Media in Bihar, India; Abstract; Introduction; Arsenic Pollution in Bihar; Mitigation Techniques Adopted; Probable Waste Disposal Strategies; Status of Waste Disposal in Bihar; Conclusions; Acknowledgements; References; 3 Simultaneous Removal of Arsenic and Nitrate in Anaerobic Batch Reactors; Abstract; Introduction.
  • Materials and MethodsExperimental Setup; Inoculum and Starting up; Analytical Methods; Results; Nitrate and Arsenic Removal; Characterization of Precipitates; Discussion; Conclusion; Acknowledgements; References; 4 Oxyanions Removal by Biological Processes: A Review; Abstract; Introduction; Occurrence and Sources of Oxyanions; Sulfate; Nitrate; Perchlorate; Arsenate; Conventional Treatment Strategies for Oxyanions; Overview of Biological Oxyanion Removal; Sulfate; Nitrate; Perchlorate; Arsenate; Factors Affecting Oxyanion Removal; Temperature; PH; Hydraulic Retention Time (HRT).
  • COD/Oxyanion RatioCOD/Sulfate; COD/Nitrate; COD/Perchlorate; Simultaneous Removal of Multiple Oxyanion; Conclusion; References; 5 Factors Influencing Electrocoagulation Treatment of UASB Reactor Effluent; Abstract; Introduction; Materials and Methods; Experimental; Experimental Design and Data Analysis; Results and Discussion; Model Development and Validation; Conclusion; References; 6 Performance Evaluation of Filters for Sedimentation Particle Filtration; Abstract; Introduction; Materials and Methods; Particle Size Distribution; Particles Filtration Efficiency; Results.
  • Particle Size DistributionDifferent Particle Sizes; Particle Volume Distribution; Conclusions; References; 7 Magnetic Extracellular Polymer Composite for the Effective Removal of Microcystin; Abstract; Introduction; Methodology; Chemical and Reagent; Screening and Culturing of Polymer-Producing Microorganisms; Preparation of Magnetic-Induced ECP; Removal of Microcystin-LR; Results and Discussion; Characterization of Matrices; Separation of Microcystin-LR by ECPâ#x80;#x93;Fe2O3; Characterization of MC-LR; Conclusion; Acknowledgements; References.