000733820 000__ 06642cam\a2200481Ii\4500 000733820 001__ 733820 000733820 005__ 20230306141106.0 000733820 006__ m\\\\\o\\d\\\\\\\\ 000733820 007__ cr\cn\nnnunnun 000733820 008__ 150902s2015\\\\sz\a\\\\ob\\\\100\0\eng\d 000733820 020__ $$a9783319191232$$qelectronic book 000733820 020__ $$a3319191233$$qelectronic book 000733820 020__ $$z9783319191225 000733820 0247_ $$a10.1007/978-3-319-19123-2$$2doi 000733820 035__ $$aSP(OCoLC)ocn919611848 000733820 035__ $$aSP(OCoLC)919611848 000733820 040__ $$aN$T$$beng$$erda$$epn$$cN$T$$dYDXCP$$dGW5XE$$dN$T$$dOCLCO$$dIDEBK$$dSNK$$dCDX$$dCOO$$dOCLCF$$dOCLCO 000733820 049__ $$aISEA 000733820 050_4 $$aTD478 000733820 08204 $$a628.1/67$$223 000733820 24500 $$aRecent progress in desalination, environmental and marine outfall systems$$h[electronic resource] /$$cMahad Baawain, B.S. Choudri, Mushtaque Ahmed, Anton Purnama, editors. 000733820 264_1 $$aCham :$$bSpringer,$$c2015. 000733820 300__ $$a1 online resource (xviii, 347 pages) :$$billustrations. 000733820 336__ $$atext$$btxt$$2rdacontent 000733820 337__ $$acomputer$$bc$$2rdamedia 000733820 338__ $$aonline resource$$bcr$$2rdacarrier 000733820 504__ $$aIncludes bibliographical references. 000733820 5050_ $$aPart 1 Desalination Systems -- Chapter 1 An Overview: Desalination, Environmental and Marine Outfall Systems -- Chapter 2 Use of Ceramic Membrane Technology for Sustainable Management of Oil Production Water: A Review -- Chapter 3 Thermal Performance of a Single Slope Solar Water Still with Enhanced Solar Heating System -- Chapter 4 The Effect of Fouling on Performance and Design Aspects of Multiple-Effect Desalination Systems -- Chapter 5 Achieving the Zero-Liquid-Discharge Target Using the Integrated Membrane System for Seawater Desalination -- Chapter 6 Installation of Shore Approaches and Sea-lines Using Trenchless Methods: Technologies and Case Studies -- Chapter 7 Photocatalytic Degradation of Divalent Metals under Sunlight Irradiation using Nanoparticle TiO2 Modified Concrete Materials (Recycled Glass Cullet) -- Chapter 8 Cost Effective Fouling Control in Cooling Water Intake Systems with Environmental and Operational Benefits -- Chapter 9 Chlorination By-Products and Other Quality Parameters in Desalinated Drinking Water System in Muscat -- Chapter 10 The Viability of Renewable Energy and Energy Storage as the Power Source for Municipal Scale Reverse Osmosis Desalination -- Part 2 Environmental Systems -- Chapter 11 Desalination Integration with Renewable Energy for Climate Change Abatement in the MENA Region -- Chapter 12 Reducing Carbon Footprint of Desalination: The Australian Experience -- Chapter 13 Feasibility of Using Desalination for Irrigation in the Souss Massa Region in the South of Morocco -- Chapter 14 Desalination from an Integrated Water Resources Management Perspective -- Chapter 15 Strategies for Addressing Sustainability Risks of Seawater Desalination Plants in the Arabian Gulf -- Chapter 16 Impact of the Coastal Intake Environment on the Operating Conditions of Thermal Desalination Plants: A Case Study in the United Arab Emirates -- Chapter 17 Phytoplankton Species and Associated Bacterial Populations in the Coastal Water of the United Arab Emirates -- Chapter 18 Environmental Quality Standards for Brine Discharge from Desalination Plants -- Chapter 19 Hydrodynamic and Thermal Dispersion Modelling of the Effluent in a Coastal Channel -- Chapter 20 Formation of Emerging Disinfection By-products by Chlorination/Chloramination of Seawater Impacted by Algal Organic Matter -- Chapter 21 Evaluation of Marine Outfall at Mumbai for Domestic Waste Discharges through Tracer Technique -- Chapter 22 Hydrodynamic Modeling: Application of Delft3D-FLOW in Santos Bay, São Paulo State, Brazil -- Chapter 23 Mathematical Model Study of the Effluent Disposal from a Desalination Plant in the Marine Environment at Tuticorin, India. 000733820 506__ $$aAccess limited to authorized users. 000733820 520__ $$aThis book collects current scientific information on advanced technologies and management practices associated with the desalination industry in the Middle East and elsewhere around the world. The book opens with introductory chapter which briefly recounts the history of desalination, and describes the current state of development in the field. Part℗ℓI: Desalination Systems includes ten chapters which describe a variety of techniques and designs intended not only to minimize the impact of desalination, but also to save energy and use natural resources to maximize the output of integrated desalination systems. Among the highlights are a℗ℓ chapter on the use of ceramic membrane technology for sustainable oil water production; a case study on the use of solar heating systems in desalination technology in Oman; discussion of fouling and its effect on design and performance of desalination systems; a review of shore approaches and sea-lines with case studies from Australia and Germany; and a discussion of the integration of desalination technology with renewable energy for climate change abatement in the Middle East and North Africa region. Part℗ℓII: Environmental Systems includes among others a chapter on regulating the use of water resources and desalination technology on a regional scale reducing the carbon footprint of desalination, with examples from Australia; a description of desalination for irrigation in the Souss Massa region in the south of Morocco; a study of the impact of the coastal intake environment on operating conditions of thermal desalination plants in the United Arab Emirates; a discussion of hydrodynamic and thermal dispersion modeling of the effluent in a coastal channel, with a case study from Oman; and a mathematical model study of effluent disposal from a desalination plant in the marine environment at Tuticorin in India. The book aims to inspire developments in desalination technologies which are specifically aimed at reducing energy consumption and cost, and minimizing environmental impact. 000733820 588__ $$aOnline resource; title from PDF title page (SpringerLink, viewed September 9, 2015). 000733820 650_0 $$aSaline water conversion$$vCongresses. 000733820 650_0 $$aOcean outfalls$$vCongresses. 000733820 7001_ $$aBaawain, Mahad,$$eeditor. 000733820 7001_ $$aChou, B. S.,$$eeditor. 000733820 7001_ $$aAhmed, M.$$q(Mushtaque),$$eeditor. 000733820 7001_ $$aPurnama, Anton,$$eeditor. 000733820 7112_ $$aInternational Conference "Desalination, Environment and Marine Outfall Systems"$$d(2014 :$$cMuscat, Oman) 000733820 77608 $$iPrint version:$$z9783319191225 000733820 852__ $$bebk 000733820 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-3-319-19123-2$$zOnline Access$$91397441.1 000733820 909CO $$ooai:library.usi.edu:733820$$pGLOBAL_SET 000733820 980__ $$aEBOOK 000733820 980__ $$aBIB 000733820 982__ $$aEbook 000733820 983__ $$aOnline 000733820 994__ $$a92$$bISE