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on-site water treatment Applications

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    Filtration solutions for on-site treatment industry

    Filter beds with pre-filter are simple, efficient and environmentally friendly ways of treating domestic wastewater from detached houses and holiday homes. The requirements related to operation and maintenance are few in relation to traditional compact plants. These systems can also be adapted to suit clusters of houses, schools, kindergartens, small companies etc.

    By Filtralite Saint-Gobain Byggevarer As based in Alnabru, NORWAY.

  • Mobile Sewage Treatment for Fishing Sites

    Remote fly-in recreational fishing lodges often require effluent to be discharged directly into surface water. NOMADIC™’s membrane technology produces the highest quality effluent of any sewage treatment technology available today.

    By Nomadic Systems based in Langley, BRITISH COLUMBIA (CANADA).

  • On-site refinery water treatment for oil and gas industry

    MIOX offers a variety of on-site refinery water treatment solutions for cooling loops, UF & RO membranes and wastewater.

    By MIOX Corporation based in Albuquerque, NEW MEXICO (USA).

  • Water treatment systems for agriculture

    The water treatment issues confronting the Agriculture market today include an ever-increasing demand for irrigation water, compromised water quality, declining availability, and expanded goverment regulations. Water sources traditionally used for agricultural applications include groundwater, surface water, properly treated municipal and industrial wastewaters, as well as liquid manures stored in lagoons onsite at large dairy and swine operations. Dairy and CAFO manure storage, treatment, and handling regulation compliance are major issues confronting these segments of the agricultural producer market.

    By Lindsay Corporation based in Omaha, NEBRASKA (USA).

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    Water Treatment Solutions for Uranium Removal

    AdEdge provides treatment systems for for Uranium removal using AD92 an anion exchange media that is ideal for use in potable water as well as non-potable and environmental remediation applications for removal of naturally occurring uranium. The high efficiency AD92 can selectively remove the negatively charged uranium anion (most often in the form of uranyl carbonate) to below the existing EPA MCL of 30 ug/L. The AdEdge AD92 systems can deliver the needed performance in two ways: (1) via regeneration type systems which use the media to remove the uranium with periodic regeneration using NaCl brine; or (2) as a “throw away” discardable media, which can be discarded when spent. This option maximizes the very high capacity of the AD92. Where on-site regeneration is not available, this disposal option is the preferred option. Disposal options will vary based on federal, state, and local regulations.

    By Adedge Water Technologies, LLC based in Buford, GEORGIA (US) (USA).

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    Measuring Fats, Oil and Grease (FOG) in Wastewater

    It is estimated that 23-28% of Sanitary Sewer Overflows (SSOs) are due to Fats, Oil and Grease (FOG). With significant growth in the commercial food sector on top of other high FOG producing industries such as metal processors, meat packers, cosmetic manufacturers and industrial laundry establishments, the need for publicly owned treatment plants (POTWs) and industries to regulate and monitor FOG is crucial to public health. Besides clogged sewer lines, high FOG levels also disrupt the effective operation of a wastewater treatment plant. An important feature of any FOG program is locating and monitoring high oil and grease producing industries and food service establishments. InfraCal TOG/TPH Analyzers provide a simplified procedure for FOG analysis based on solvent extraction and infrared absorption which can give the regulator or operator an on-site result in less than 10 minutes.

    By Spectro Scientific based in Chelmsford, MASSACHUSETTS (USA).

  • Desalination Thermal Multiple Effect Distillation (MED)

    Aquatech’s Multiple Effect Distillation (MED) Desalination technology, using a spray film™ design, has been developed and improved over decades of in- house research and onsite experience of such systems worldwide to provide an environmentally friendly system to meet the global challenges of a reduced carbon footprint. Production capacity up to 10 MIGD (45,500 m3/day) in a single unit: Significantly lowers electrical consumption Design flexibility to use low to medium pressure supply steam Minimum down time and therefore a higher plant availability factor High purity product water Operates at a low top brine temperature (<70 °C) to minimize scaling and to prevent corrosion Allows use of lower cost but reliable and proven metallurgy Use of Thermo Vapor Compressor to increase efficiency

    By Aquatech International Corporation based in Canonsburg, PENNSYLVANIA (USA).

  • In-Situ Soil & Groundwater Remediation

    The use of H2O2 to chemically oxidize the contaminants into mineralized products (CO2 , salts, and readily biodegradable organic fragments) offers a number of advantages over these current treatment methods. Benefits of Soil Decontamination by Chemical Oxidation: The reagent used (H2O2) is inexpensive, readily available, and has as its reaction products water and oxygen; The chemistry of the process (Fenton's Reagent) has been known for over 50 years and its applicability to a wide variety of contaminants is well documented; The process is easily applied and controlled; The treatment occurs rapidly, lasting from a few hours to a few weeks; The process produces no by-product wastestreams, and can be tuned for the degree of contaminant removal desired. This allows it to be used synergistically with other technologies such as biotreatment or soil washing.

    By USP Technologies based in Atlanta, GEORGIA (US) (USA).

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    Industrial solutions for ultrapure water monitoring

    Problem: Trace contamination in ultrapure water (UPW) can have detrimental effects on a manufacturing process in Semiconductor, Power Generation and Pharmaceutical industries. Onsite treatment is conducted to further remove trace impurities from source water.

    By Real Tech Inc. based in Whitby, ONTARIO (CANADA).

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    Hazardous waste treatment solutions for chlorine industry

    The mercury cell process is a formerly widely-used production technique for the production of chlorine and caustic soda. The liquid metal, mercury, acts as cathode (negative pole) in this process. In the past, the loss of mercury during the process (to air, soil and water) led to serious health and environmental problems. Therefore, most European chlorine producers have decided to phase out the mercury cell process by 2020. Nevertheless, even today, almost 6000 tons of mercury is used per year for chlorine production in Europe alone. As a result of this, yearly waste outputs contain around 1200 tons of mercury, which are stored on-site or sent off for disposal.

    By econ industries GmbH based in Starnberg, GERMANY.

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    Mining & minerals solutions for man camps industry

    In remote locations and mine sites distant from the nearest outpost, WesTech provides package plants for water treatment and for wastewater process that allow for drinking water to be made onsite and basic levels of sanitary safety to be met, allowing for continued production and a healthier site and workforce.

    By WesTech Engineering, Inc. based in Salt Lake City, UTAH (USA).

  • Aircraft De-icing Fluids in Wastewater

    Spent aircraft de-icing fluid is a major pollution con­cern at airports especially in areas with severe winter climates. AnoxKaldnes and Veolia Water Solutions & Technologies can combine our experience in both past and present projects to develop a solution to minimize these concerns, whether it is at a local on-site treatment facility or in conjunction with a local municipal WWTP.

    By AnoxKaldnes AB - a Veolia Water Company based in Lund, SWEDEN.

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