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|a Concentrate management in desalination :
|b case studies /
|c edited by Conrad G. Keyes Jr., Michael P. Fahy, Berrin Tansel ; sponsored by Task Committee on Development of Prestandards for Concentrate Management Case Studies, Desalination and Water Reuse Committee, Water, Wastewater & Stormwater Council, Environmental and Water Resources Institute.
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|a Reston, Va. :
|b American Society of Civil Engineers,
|c ©2012.
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|a 1 online resource (iv, 133 pages) :
|b illustrations
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|a text
|b txt
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|a online resource
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|a Includes bibliographical references and index.
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|a Print version record.
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|a Cover; Contents; Chapter 1 Introduction; Background of EWRI Work; Case Study Topical Areas; Scope of the Monograph; Chapter 2 Overview of Desalination Processes and Configurations; Introduction; Membrane Desalination Processes; Characteristics of Concentrate Stream; Types of Concentrate Management Methods; Concentrate Management and Disposal Methods; Pilot Testing of Concentrate Minimization Methods; Chapter 3 Regulation of Concentrate Management; Concentrate Management Regulation Overview; National Pollutant Discharge Elimination System.
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|a Residuals Treatment Guidelines for Discharge to Publicly Owned Treatment Works (POTW)Underground Injection; Solid Wastes; Environmental Impacts of Concentrate Discharge; Chapter 4 Environmental Issues; Introduction; Characteristics of Concentrate; Environmental Concerns; Discharge of Concentrate to Oceans and Bays; Discharge of Concentrate to Surface Waters and Sanitary Sewers; Discharge by Deep Well, Land Application, and Evaporation Ponds; Chapter 5 Economic Evaluation; Introduction; National Research Council Economic Recommendations; Summary of Southern California Technologies.
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|a Typical Economic SummaryChapter 6 Implementation/Case Studies; Introduction; Final Disposal Options Used; Summary of Case Studies in Appendix A; Appendix A-1 Oceans and Bays Discharge Case Studies; Proposed Carlsbad Seawater Desalination Plant, Carlsbad, CA; Marin Municipal Water District (MMWD) Desalination Project, San Rafael, CA; The Charles Meyer Desalination Facility, Santa Barbara, CA; Appendix A-2 Sanitary Sewer and Surface Water Disposal Case Studies; Joe Mullins Reverse Osmosis Water Treatment Facility, Melbourne, FL.
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|a Ormond Beach WTP Low Pressure Reverse Osmosis (LRPO) Expansion, Ormond Beach, FLPilot-Research Membrane Treatment of Non-Irrigation Season Flows in the Rio Grande River, El Paso, TX; Appendix A-3 Deep Well Injection, Land Disposal, and Evaporation Ponds; EPWU Deep Well Injection Plant, El Paso, TX; North Collier County Regional Water Treatment Plant, Naples, FL; Central Plantation Water Treatment Plant, Plantation, FL; Dalby Stage 2 Desalination Plant, Queensland, Australia; Appendix A-4 Zero Liquid Discharge (ZLD) and Near ZLD.
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|a Water Desalination Concentrate Management and Piloting Study, South FloridaClosed-Loop Water Recovery and Recycling for Space Applications, NASA, Kennedy Space Center, FL; Index; A; B; C; D; E; F; H; I; J; K; L; M; N; O; P; R; S; T; U; W; Z.
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|a English.
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|a Access restricted to Ryerson students, faculty and staff.
|5 CaOTR
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|a Prepared by the Task Committee on Development of Prestandards for Concentrate Management Case Studies of the Desalination and Water Reuse Committee of the Water, Wastewater, and Stormwater Council of the Environmental and Water Resources Institute of ASCE. Concentrate Management in Desalination: Case Studies reviews the state-of-the-practice for managing concentrate streams resulting from desalination processes. Concentrate management and disposal in desalination pose environmental and cost concerns--and often determine whether a desalination project is viable, especially for inland communities. This report examines many facets of concentrate management in desalination, including process design and configuration, regulatory setting, environmental issues, and economic evaluation of projects. Twelve case studies are offered to demonstrate different techniques for disposing of concentrates associated with the following types of projects: zero liquid discharge (ZLD) and near-ZLD disposal discharge to oceans and bays deep-well injection, land application, and evaporation ponds and discharge to sanitary sewers or surface waters. Environmental engineers and managers responsible for the design, operation, research, and evaluation of regional desalination and water reuse facilities will find a wealth of practical information in this report.
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|a Knovel
|b ACADEMIC - Mining Engineering & Extractive Metallurgy
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|a Knovel
|b ACADEMIC - Environment & Environmental Engineering
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|a Knovel
|b ACADEMIC - Oil & Gas Engineering
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|a Saline water conversion
|x By-products.
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|a Eau salée
|x Dessalement
|x Sous-produits.
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|a TECHNOLOGY & ENGINEERING
|x Environmental
|x Water Supply.
|2 bisacsh
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|a Saline water conversion
|x By-products
|2 fast
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|a Keyes, Conrad G.
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|a Fahy, Michael P.
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|a Tansel, Berrin.
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|a Environmental and Water Resources Institute (U.S.).
|b Task Committee on Development of Prestandards for Concentrate Management Case Studies.
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|a American Society of Civil Engineers.
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|i Print version:
|t Concentrate management in desalination.
|d Reston, Va. : American Society of Civil Engineers, ©2012
|z 9780784412107
|w (DLC) 2012004006
|w (OCoLC)780415611
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|u https://appknovel.uam.elogim.com/kn/resources/kpCMDCS008/toc
|z Texto completo
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|a American Society of Civil Engineers
|b ASCE
|n 10.1061/9780784412107
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938 |
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