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  • New Frontiers In Desalination
    models Securing Water for Food is not funding traditional development projects Rather we are investing in innovations at the water food nexus that have high potential to be brought to scale whether they are market driven products in the process of business development Stage 1 or established innovations ready for scaling and commercial growth Stage 2 With the announcement of our third call for innovations we re eager to see new groundbreaking technologies and models from around the world How can we bring innovative technologies to market faster Understanding the local enabling environment for technology and business innovations is a crucial part of innovations making it to market in a faster more sustainable way Even from the application phase innovators must be able to demonstrate understanding of local market challenges and conditions They must also either already have a presence or one local partner in the developing country where they propose to work This foundation coupled with the acceleration support provided by Securing Water for Food may greatly assist innovations in making it to market more efficiently and effectively Similarly we encourage applicants to develop market driven partnerships that can help bring their innovation to scale and we also assist in building these relationships What impact do you anticipate the SWFF initiative to have for municipalities and industry which also struggle with scarcity concerns SWFF innovations mostly focus on a targeted set of consumers or end users so it is currently unclear how much impact that will have on municipalities That being said we expect that in some locations municipalities may be interested in adopting these innovations for wider scale use Cost effective desalination seems the panacea for water scarcity What progress are you seeing in that regard Cost effective desalination is actually one of the three focus areas under Securing Water for Food and the reason that we launched the Desal Prize the second call under the Challenge To satisfy future water demand we must augment traditional water supplies with alternate sources such as brackish groundwater While brackish water desalination technologies do exist on the market few if any have proven to be suitable for use and cost competitive in rural or remote settings When looking at the global implications of the water food nexus environmentally sustainable desalination technology could provide smallholder farmers with reliable water sources Through the Desal Prize we received an overwhelming response from teams with a variety of backgrounds who proposed innovative diverse technologies to fill this gap The finalists we selected will actually compete in a demonstration of their technologies at the Bureau of Reclamation s Brackish Groundwater National Desalination Research Facility Both the response to the Prize and the technologies we ve seen indicate a substantial potential for progress in this area SWFF believes that if we can draw people s attention to this problem through the prize others will come up with solutions that can hopefully become more cost competitive over time BGNDRF in Alamogordo NM Credit New Mexico State University How

    Original URL path: http://www.wateronline.com/doc/new-frontiers-in-desalination-0001 (2016-02-14)
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  • Source Water Desalination Documents on Water Online
    Electrodialysis For Desalination 8 11 2015 There is no doubt that reverse osmosis RO currently reigns among desalination techniques if your metric is total number of installations But a new competitor has arisen at least for particular applications If you have brackish water in the 2 000 to 15 000 ppm range of total dissolved solids TDS you may want to consider electrodialysis ED over RO Keeping Innovation Afloat The Desal Prize 5 8 2015 During the week of April 6 th five teams of engineers innovators and water experts convened at the Bureau of Reclamation s Brackish Groundwater National Desalination Research Facility in New Mexico to compete in the Desal Prize Desalination Innovation In The UAE 4 8 2015 A delegation of prominent UAE government and private sector representatives organized by Masdar will be attending the 7 th World Water Forum in Daegu and Gyeongbuk South Korea from April 12 to 17 The delegation will showcase the country s adoption of innovative technologies as a means to ensure a water secure future and address the inter connected challenges of the energy water nexus with the global community New Frontiers In Desalination 4 7 2015 As persistent widespread drought dominates headlines and decimates farmland a competition held this month by the U S Agency for International Development USAID turns to innovative desalination technologies for answers A Roundup Of Energy Water And Climate Bills In The 84th Texas Legislative Session 4 2 2015 We ve almost made it to the midway point of the 84 th Session of the Texas Legislature As many already know the Texas Legislature only meets from January to May every other year so a lot has to get done in these few months 10 Must See Membrane Technologies 3 20 2015 A collection of innovative membrane

    Original URL path: http://www.wateronline.com/hub/bucket/source-water-desalination (2016-02-14)
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  • FEDI Solution for Sohar Refinery Project
    Stormwater Regulations and Legislation Industrial Food Beverage Petroleum Refining All Petroleum Refining Produced Water Power Generation Water Reuse Utility Management AMR AMI and Metering Asset Management Consumer Outreach Funding Labor Resiliency SCADA Automation Source Water All Source Water Contamination Desalination Water Scarcity Water Reuse Regulations and Legislation Providers YSI a Xylem brand Hach Company Schneider Electric Neptune Technology Group Inc Evoqua Water Technologies Veolia Water Solutions Technologies ABB Measurement Products Aclara Jacobi Carbons Endress Hauser Inc KROHNE Inc Kaeser Compressors Inc Emerson Process Management Rosemount Analytical Degremont Technologies Brentwood Industries View All Providers Case Study January 1 2016 FEDI Solution for Sohar Refinery Project Source QUA Group LLC Project Background Orpic Oman Oil Refineries and Petroleum Industries Company required a thermal seawater desalination solution as part of its Sohar refinery improvement project to ensure an uninterrupted supply of fresh feed water to for its boilers Orpic decided that a Multi Effect Distillation with Thermal Vapor Compression MED TVC Seawater Desalination system was suited for its water needs Once desalinated the water is to be demineralized to serve as boiler feed water Newsletter Signup SIGN ME UP YOU MAY ALSO LIKE Contact Details Company Name QUA Group LLC Address One Four

    Original URL path: http://www.wateronline.com/doc/sohar-refinery-project-profile-0001 (2016-02-14)
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  • QUA UF Membranes Provide Pretreatment for Seawater Reverse Osmosis (SWRO) System
    Flushables Pump Station Control Pumps and Valves Sewers and Sewer Line Maintenance Stormwater Regulations and Legislation Industrial Food Beverage Petroleum Refining All Petroleum Refining Produced Water Power Generation Water Reuse Utility Management AMR AMI and Metering Asset Management Consumer Outreach Funding Labor Resiliency SCADA Automation Source Water All Source Water Contamination Desalination Water Scarcity Water Reuse Regulations and Legislation Providers YSI a Xylem brand Hach Company Schneider Electric Neptune Technology Group Inc Evoqua Water Technologies Veolia Water Solutions Technologies ABB Measurement Products Aclara Jacobi Carbons Endress Hauser Inc KROHNE Inc Kaeser Compressors Inc Emerson Process Management Rosemount Analytical Degremont Technologies Brentwood Industries View All Providers Case Study December 1 2015 QUA UF Membranes Provide Pretreatment for Seawater Reverse Osmosis SWRO System Source QUA Group LLC The Facility Hinduja National Power Corporation Ltd HNPCL constructed a 1040 MW coal fired power plant at Vishakhapatnam Andhra Pradesh India The power generated from the plant is intended to supply to Andhra Pradesh as well as to other states through interstate transmission system Newsletter Signup SIGN ME UP YOU MAY ALSO LIKE Contact Details Company Name QUA Group LLC Address One Four Coins Drive Canonsburg PA 15317 US Phone 877 782 7558 Contact Fred

    Original URL path: http://www.wateronline.com/doc/hinduja-power-project-profile-0001 (2016-02-14)
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  • What Is Containerized Water Treatment
    Water Contamination Desalination Water Scarcity Water Reuse Regulations and Legislation Providers YSI a Xylem brand Hach Company Schneider Electric Neptune Technology Group Inc Evoqua Water Technologies Veolia Water Solutions Technologies ABB Measurement Products Aclara Jacobi Carbons Endress Hauser Inc KROHNE Inc Kaeser Compressors Inc Emerson Process Management Rosemount Analytical Degremont Technologies Brentwood Industries View All Providers Case Study November 12 2015 What Is Containerized Water Treatment Source RWL Water By Linda Dailey Paulson Containerized water treatment solutions eliminate many challenges associated with developing a large scale wastewater or desalination facility These systems which are equipped with proven technologies offer users a lower cost option in a small footprint that can be working within weeks rather than years This lets a wide range of organizations more readily meet their sanitation and drinking water needs As the name implies these modular water treatment plants are housed in shipping containers Because they re preassembled and skid mounted containerized systems can be quickly and easily installed and commissioned In addition to being easily set up containerized plants can be moved by an owner When a community grows to the point that it needs and can afford a permanent facility the container can be simply

    Original URL path: http://www.wateronline.com/doc/what-is-containerized-water-treatment-0001 (2016-02-14)
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  • Baja California Mexico Addresses Water Scarcity Partnering With RWL Water
    Outreach Funding Labor Resiliency SCADA Automation Source Water All Source Water Contamination Desalination Water Scarcity Water Reuse Regulations and Legislation Providers YSI a Xylem brand Hach Company Schneider Electric Neptune Technology Group Inc Evoqua Water Technologies Veolia Water Solutions Technologies ABB Measurement Products Aclara Jacobi Carbons Endress Hauser Inc KROHNE Inc Kaeser Compressors Inc Emerson Process Management Rosemount Analytical Degremont Technologies Brentwood Industries View All Providers Case Study November 12 2015 Baja California Mexico Addresses Water Scarcity Partnering With RWL Water Source RWL Water By Linda Dailey Paulson When the government of Baja California Mexico declared a water emergency for the region of San Quintín in 2014 leaders knew they needed to find a solution to ensure residents a reliable safe water source Water is a constitutional right in Mexico and it is the government s duty to provide potable water to all the nation s residents To solve the problems of a lack of water and water infrastructure and the high price of tanked in water the State Water Commission of Baja California decided to build a desalination plant in San Quintín The region is 160 miles south of the United States Mexico border and about 100 miles south

    Original URL path: http://www.wateronline.com/doc/baja-california-mexico-addresses-water-scarcity-partnering-with-rwl-water-0001 (2016-02-14)
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  • Changxing Power Plant Debuts The World’s First Forward Osmosis-Based Zero Liquid Discharge Application
    and its Chinese partner Beijing Woteer todeliver the world s first commercial application of Forward Osmosis based ZLD an innovative desalination method that Oasys Water has pioneered Oasys Water has provided its Membrane Brine Concentrator MBC system and pre concentrating reverse osmosis RO while Beijing Woteer supplied physic chemical filtration and ion exchange pretreatment The guiding philosophy in designing the ZLD process flow for Changxing was for the pretreatment and MBC sections of the system to be able to absorb the wide swings in wastewater flow and water quality arising from variations in the FGD scrubber process Because the wastewater treatment plant was built with the new facility and not a retrofit the ZLD process flow was designed based on projected water quality data Ability to treat a variety of waters across a wide range of hardness alkalinity and total dissolved solids TDS was therefore planned for in the design of the system Several important design decisions were made to optimize the system for stable performance over the expected wide range of water quality and flow conditions including Complete softening of the FGD wastewater was required due to the high concentration factor required for ZLD in order to minimize opportunities for scaling in pre concentrating RO system and for premature saturation of minerals in the crystallizer Stoichiometric softening in a contact clarifier was combined with weak acid cation WAC ion exchange polishing MBC process flexibility was maximized so that the wide range of feed flow and water quality could be managed To accomplish this the team defined four design cases for flow and incoming TDS The RO and FO components of the MBC were then design to produce stable brine TDS allowing flow and overall recovery to float as necessary To maximize turndown ratio the FO component of the MBC was split into three trains This configuration allows operation of the MBC at flows from 60 to 110 of design maximum Operating with a shared draw solution recovery system the FO section of the MBC is laid out as three parallel trains where any configuration of the trains may be in service at one time The FO MBC concentrates wastewater dissolved solids from approximately 60 000 mg L in the RO concentrate to 220 000 mg L or higher The MBC does the brine concentration work of a thermal or mechanical evaporator with the simplicity and modularity of a membrane system The FO trains are driven by an osmotic pressure gradient created across a semi permeable membrane to achieve spontaneous and preferential diffusion of water molecules from a saline feed into a proprietary draw solution As water crosses the FO membrane it dilutes the draw solution At the draw solution exit of the FO array it has extracted the prescribed amount of clean water from the wastewater stream and a separation process must be performed to reconcentrate the draw solution and to separate the clean water stream for reuse To reconcentrate the draw solution it must be heated to between

    Original URL path: http://www.wateronline.com/doc/changxing-power-plant-debuts-the-world-s-first-forward-osmosis-based-zero-liquid-discharge-application-0001 (2016-02-14)
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  • Brewed To Perfection Fifth Largest Brewery Installs RO Units
    Utility Management AMR AMI and Metering Asset Management Consumer Outreach Funding Labor Resiliency SCADA Automation Source Water All Source Water Contamination Desalination Water Scarcity Water Reuse Regulations and Legislation Providers YSI a Xylem brand Hach Company Schneider Electric Neptune Technology Group Inc Evoqua Water Technologies Veolia Water Solutions Technologies ABB Measurement Products Aclara Jacobi Carbons Endress Hauser Inc KROHNE Inc Kaeser Compressors Inc Emerson Process Management Rosemount Analytical Degremont Technologies Brentwood Industries View All Providers Case Study April 9 2015 Brewed To Perfection Fifth Largest Brewery Installs RO Units Source RWL Water With water shortages and energy costs increasing worldwide brewers are turning to state of the art technologies to access water and use it more conservatively Breweries have been at the forefront of innovation in water consumption for good reason people love to drink beer And water is an essential part of the entire brewing process RWL Water provides water treatment waste to energy and wastewater reuse solutions to help breweries worldwide reduce their environmental footprint cut energy costs and conserve valuable resources Carlsberg the fifth largest brewery group in the world selected RWL Water to install Brackish Water Reverse Osmosis units Read about it here RWL Water Contact

    Original URL path: http://www.wateronline.com/doc/brewed-to-perfection-fifth-largest-brewery-installs-ro-units-0001 (2016-02-14)
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