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surface water treatment Applications

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    Customized Solutions for surface water treatment industry

    WesTech offers a holistic approach to surface water treatment for potable use. Depending upon the raw water quality, the flow rate, and operational preferences, WesTech can provide conventional flow, combination treatment units, packaged systems, high-rate processes, or even customized solutions.

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

  • Monitoring surface water for wastewater treatment industry

    Pollution Risk: Surface water encompasses storm water derived from hard standing areas, river water and reservoirs. All types of surface water are at risk from ingress of pollution and therefore need to be monitored. On-line continuous monitoring can identify and alarm pollution so corrective action can be taken

    By Pollution & Process Monitoring Ltd based in Sevenoaks, UNITED KINGDOM.

  • Diverse Surface Treatment Technologies for Military Industry

    We have developed washing techniques and technologies for the military industry in keeping with high military standards of safety and efficiency, using water jets and the sanding power of aluminum oxide. We are currently creating an anchor profile that will allow us to file a plating patent application for an exclusive, entirely automated surface treatment which prolongs engine life in extreme conditions. At IST Pure, we also manufacture washing tunnels for the complete cleaning of military vehicles and ballistic equipment to prepare for and return from missions.

    By International Surface Technologies based in Laval, QUEBEC (CANADA).

  • Evaporation technology for mechanical & surface treatment industry

    Market segments such as automotive, aviation, furniture, appliance involve: mechanical treatments and surface treatments that require large quantity of water and produce highly pollutant wastewater that cannot be discharged directly and contribute to increase company’s running costs.

    By EVALED-Evaporator based in Zoppola (PN), ITALY.

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    Drinking water treatment

    Drinking water can be produced from any natural sources like groundwater, lakes and rivers (surface waters) or seawater. Drinking water standards are set by the World Health organisation or by the European Union. Drinking water must be free of suspended solids, microorganisms and toxic chemicals. Mineral concentration recommendation vary from country to country but most of the minerals have a maximum concentration recommended to ensure safe, equilibrated and pleasant water to drink.

    By Lenntech Water Treatment based in Delfgauw, NETHERLANDS.

  • Lime and Limestone solutions for water treatment industry

    The world’s surface is slightly over 70% water with billions of gallons of surface water and ground water used daily in society. Whether it is for drinking, hygiene, washing, cooking, recreation, agriculture, or power generation and industrial coolants, water is an undeniable source of life.

    By Carmeuse Lime based in Pittsburgh, PENNSYLVANIA (USA).

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    Customized Solutions for groundwater treatment industry

    WesTech offers a wide variety of solutions for groundwater treatment for potable use. Whether your treatment objective is gas removal, iron & manganese removal, color removal, softening or even filtering a source under the direct influence of surface water, WesTech has your solution.

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

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    Wastewater treatment management for storm water treatment industry

    Aging treatment and collection systems in developed countries and the lack of appropriate treatment systems in developing countries along with higher precipitation levels occurring over short periods of time are driving government and industry leaders to expand or upgrade stormwater treatment systems to keep surface water bodies clean, while using this collected water for use in non potable applications.

    By Genesis Water Technologies, Inc. based in Maitland, FLORIDA (USA).

  • Water treatment for landscape

    The sources of water for traditional landscape irrigation are many. They include municipal water, groundwater, and surface water; treated municipal wastewater treatment plant effluent properly treated to the standards of quality required for irrigation; and ever-increasing harvested rain, gray and storm waters. Issues confronting the landscape irrigation market range from treatment of alternate supplies to addressing iron removal in order to provide suitable quality water for any given landscape irrigation application. With our experienced staff of irrigation industry professionals, and in cooperation with landscape architects and consultants, we have the expertise and flexibility to select the best, most cost-effective solution for addressing any landscape market irrigation water treatment application.

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

  • Water treatment for hospitals

    Horticultural and greenhouse operations are facing increasing challenges in dealing with sanitation issues related to water treatment. Over the course of growing a crop, pathogenic microorganisms accumulate and algae flourish on moist surfaces posing a constant threat to plants and produce. The main challenges lie the areas of irrigation water, elimination of biofilm and algae control. Existing biocidal products, while effective in killing algae, are not effective in removing biofilm from the water lines. The ultimate solution would be to employ a biocide that is capable to control algae on greenhouse surfaces and strip the biofilm in irrigation lines. Chlorine dioxide has demonstrated to possess both properties.

    By Applied Oxidation LLC based in Chattanooga, TENNESSEE (USA).

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    ADVANCEES - Advanced water treatment equipments for desalination

    Areas that have no or limited surface water or groundwater may choose to desalinate seawater or brackish water to obtain drinking water. Reverse osmosis is the most common method of desalination, Sea Water Reverse Osmosis (SWRO) is a reverse osmosis desalination membrane process that has been commercially used since the early 1970s. Because no heating or phase changes are needed, energy requirements are low in comparison to other processes of desalination, though still much higher than other forms of water supply (including reverse osmosis treatment of wastewater).

    By Advanced Equipment and Services based in Hollywood, FLORIDA (USA).

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    Industrial wastewater solutions for the used rinse water

    Cleanliness is the most important success factor when cleaning parts and surfaces. As it depends heavily on the quality of the rinse water used, looking after the individual rinses requires particular attention. Leading companies are already using vacuum distillation systems to treat used rinse water. And you too can benefit, because our VACUDEST vacuum distillation systems enables you to achieve top cleaning quality.

    By H2O GmbH based in Steinen, GERMANY.

  • Process water treatment for the electroplating and galvanizing industry

    Treatment solutions for water and effluent from electroplating and galvanizing industry. Treatments of rinsing water and effluents obtained from surface treatments of: metals, special alloys, and plastic. SAITA provides plants and solutions such as: Zero discharge plant, recycling of rinsing waters, polluted baths’ filtration, chemical-physical treatment plants, demineralization and reverse osmosis plants and evaporators.

    Treatments

    Chromating // Nickel-plating // Galvanizing // Electroless nickel // Aluminium anodizing // Phosphating // PVD // Wet vibrofinishing // Fashion accessories // Plastic metallization // Printed circuits PCB.

    By SAITA srl based in Limena (PD), ITALY.

  • Water treatment for food processing

    Most food processing facilities currently use a combination of different chemicals for all surface and machine disinfection. They periodically rotate the use of different sanitizers to prevent the harmful microorganisms from building a resistance to their killing properties. Unfortunately facilities are still experiencing pathogen outbreaks. Chlorine dioxide’s unique killing ability does not allow for the build up of resistance or mutation, and therefore eliminates the need for all of the other chemicals. Chlorine dioxide is effective for use in controlling microbiological growth in flume waters and other food processing water systems such as chill water systems and hydrocoolers.

    By Applied Oxidation LLC based in Chattanooga, TENNESSEE (USA).

  • Chlorine Dioxide Water Treatment for Power Plants

    Chlorine dioxide is a significant product in the control of algae, planktonic and sessile bacteria, bio-film and scale in power plants, cooling towers, loops and cooling systems. CleanOxide helps maintain the efficiency of heat exchanger surfaces, reservoir intakes and ancillary equipment. Traditional oxidising agents such as chlorine and bromine, on the other hand, are associated with pH constraints and corrosion problems.

    By NW Solutions based in Perth, AUSTRALIA.

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    Ultraviolet disinfection systems for the de-chlorination industry

    The purpose of de-chlorination is the removal of free chlorine and combined chlorine compounds from potable water, as supplied by municipal water supplies. Chlorine will oxidize the surface of thin film composite polyamide membranes, causing the membrane to lose its ability to repel or reject salts. As a result, the membranes used in Reverse Osmosis (RO) or Electro-deionisation (EDI) systems will exhibit shorter lifetimes when exposed to chlorine in the water they are treating and membrane manufacturers will usually specify an upper limit to ensure a suitable life of the membrane. As a result, it is usual to use a method of dechlorination upstream of the RO or EDI system.

    By atg UV Technology based in Wigan, UNITED KINGDOM.

  • Water Disinfection for Food and Beverage Water Treatment

    MIOX provides advanced chemical solutions to the food, beverage and farming industries for all water treatment applications including source water treatment, surface or groundwater, process water treatment, cooling towers on the facility, bottle and surface disinfection, and clean in place (CIP) for syrups and raw sugars. Our team designs custom solutions to deliver safe, effective, and economically attractive alternatives to minimize or eliminate the use of expensive and hazardous delivered chemicals.

    By MIOX Corporation - Johnson Matthey`s Water Technologies based in Albuquerque, NEW MEXICO (USA).

  • Air control for wastewater treatment aeration

    Aeration Process Introduction: Waste Water Treatment removes impurities and contaminants from a com¬munity`s sewage utilizing a number of different processes and a variety of equipment. One of the processes is the use of surface aerated basins that use aerobic micro-organisms to remove 80 to 90% of organic matter in waste water. Oxygen concentration in the water basins is a critical factor to promote the optimum micro-organism growth rate needed to treat the water in the shortest amount of time. As a result, large compressors are used to force air through hundreds of air diffusion filters at the bottom of the aeration basins, providing a constant 24/7 supply of oxygen to the micro-organisms in the water.

    By Kurz Instruments, Inc. based in Monterey, CALIFORNIA (USA).

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    Industrial wastewater solutions for crack detection wastewater

    Tracking the tiniest cracks – with H2O wastewater treatment. Heavy use, material fatigue and material faults can cause tiny cracks in plastic and metal parts. These are so small that they are invisible to the naked eye. But they can still be relevant to safety, e.g. on the wings of passenger jets. That’s why these parts are regularly checked for micro cracks. One way of doing this is the dye penetration process, where the part to be checked is first thoroughly cleaned. Applying a special dye and using a suitable developer, the tiniest cracks become visible on the surface, enabling defective parts to be easily identified and replaced. If the crack check reveals no problems, the transfer agents are washed and approved for further operations.

    By H2O GmbH based in Steinen, GERMANY.

  • Membrane Filtration for Wastewater Treatment

    The essential challenges of today are to ensure cost effective treatment and recycling processes for water and wastewater. Membrane technology solves this task by being an innovative and trendsetting technology. Today membranes are successfully used for the treatment of municipal and industrial wastewater as well as for the production of drinking and process water from surface water. Membrane technology and membrane bioreactors (MBR) are especially important in arid zones for the recovery of clean water for reuse from wastewater. This enables the sustainable management of water resources ensuring availability and effective utilization.

    By MICRODYN-NADIR based in Wiesbaden, GERMANY.

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