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drinking water Applications

  • Drinking water testing

    Water is essential for life. It is part of the environment, being used in industrial processes and available as tap water. To secure the safety of water that is daily available, the amount of necessary microbiology tests to comply with regulatory requirements are increasing and are heavily relying on quick and accurate answers to confirm the identities of a broad selection of important micro-organisms.

    By Bruker Corporation based in Billerica, MASSACHUSETTS (USA).

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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 Delft, NETHERLANDS.

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    Chemical Water Treatment for drinking water

    Kurita specifically developed product ranges for drinking water treatment, in order to avoid any kind of problem that might occur with the preparation, transport or use of drinking water. Our technologies can be used for all kinds of conditions, from municipal water suppliers to private buildings (e.g. hotels, universities, hospitals and private homes).

    By Kurita based in Ludwigshafen, GERMANY.

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    Water oxidation for private an public drinking water

    Carus permanganates have been used in private and public drinking water applications for more than 40 years. Municipal drinking water plants use CAIROX® and AQUOX® potassium permanganates, and CARUSOL® liquid permanganate in both ground water (well) and surface water for Pretreatment, Pre-oxidation and Organics Removal. Today, municipal water providers face increased challenges as more stringent regulations are enacted and public awareness regarding water quality becomes heightened.

    By Carus Corporation based in Peru, ILLINOIS (USA).

  • Water Treatment for Municipal Drinking Water

    Municipalities use TIGG’s water treatment equipment all across the United States. Our experts work with consulting firms, engineers and local water authorities to design and manufacture integrated adsorption systems for the removal of drinking water contaminates such as metals, organics and solids through the use of granular activated carbon, sand, multi-media, and resins.

    By TIGG, LLC based in Oakdale, PENNSYLVANIA (USA).

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    Drinking water solutions for the Smart water networks

    Problem: Accidental or intentional contamination of a distribution system can occur without warning, compromising the quality of drinking water.

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

  • Water storage for drinking water plants


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    Water Storage for Drinking Water Plants

    Superior Tank Co., Inc. manufacturers bolted and welded steel storage tanks for potable water applications. Superior Tank Co., Inc. builds water storage tanks to meet AWWA and NSF 61 Standards. Our bolted steel water storage tanks are manufactured to be installed in 1/3 the time as other storage tanks, are easy to maintain, service and repair.

    By Superior Tank Co., Inc. based in Rancho Cucamonga, CALIFORNIA (USA).

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    Water Treatment for Drinking Water

    There are many different drinking water applications that are appropriate for AdEdge Technologies’ solutions. Small community water providers, both private and public, have found the AdEdge modular or packaged units to be the correct answer to a variety of contaminant issues. Our systems also provide safe drinking water for dairy farms and other agricultural applications.  Individual residences use POU (point-of-use) and POE (point-of-entry) systems to ensure the quality of their water.

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

  • Water Treatment for Drinking Water

    By Canamidex International Corp. based in Richmond Hill, ONTARIO (CANADA).

  • Water Disinfection for Drinking Water

    Superior Water Quality. Minimal Operating Costs. No Chemical Additives. The water treatment and water distribution up to the delivery point in the house is the responsibility of the water supplier. The owner of the real estate is responsible for sustaining the drinking water quality within the premise. REDO offers in the areas of drinking water supply solutions for the water supplier and solutions for the operators of commercial real estate. The main advantage of water disinfection from REDO: The REDO disinfectant solution in the drinking water is absolutely odourless and tasteless.

    By REDO Water Systems GmbH based in Groß-Zimmern, GERMANY.

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    Filtration solutions for drinking water treatment industry

    Filtralite is suitable for use in a lot of different potable water treatment processes, such as: Biological treatment, Physical filtration, Pre-treatment for desalination.

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

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    algae control in drinking water plants

    By controlling algae, cyanobacteria and fouling LG Sonic can efficiently reduce taste and odor problems in a treatment plant. The performance of a drinking water treatment plant is consistent with the amount ol contamination in the water. Growth of algae and other fouling in and before a treatment plant can cause various problems within the process. In general, these issues are related with taste or odor of the water. Growth of algae, cyanobacteria and bacteria within the basins of the plant itself, increase the demand of chemicals or filtration and in turn creating problems with THM (trihalomethane) formation. Other common issues are growth of toxin and geosmin producing cyanobacteria (blue-green algae) within the intake reservoir or dam. These molecules give the water an unpleasant `earthy ` taste.

    By LG Sonic based in Zoetermeer, NETHERLANDS.

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    Analysis of Herbicides in Drinking Water

    Herbicides are used throughout the world to combat the growth of unwanted plant life. These polar compounds are hydrophilic, so they may find their way into drinking water sources. While gas chromatography has historically been the preferred technique for analysis of herbicides in water samples, the use of LC-MS/MS for this application is gaining acceptance. This is due to the power of MS/MS to provide detailed identification of multiple analytes, but also in part due to the variety of HPLC stationary phases that are available. In particular, several HPLC phases are available that provide great retention and peak shapes for polar analytes, such as herbicides, even under mostly aqueous mobile phase conditions. The combination of these factors may possibly eliminate need for time-consuming sample preparation.

    By Sigma-Aldrich Co., LLC based in Bellefonte, PENNSYLVANIA (USA).

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    Bromate analysis for the drinking water industry

    Bromate forms during the ozonization of drinking water. Several international standards stipulate detection limits and test methods. Conductivity detection with chemical suppression allows the determination of bromate in the lower μg/L range. In the ng/L range, bromate can be detected by IC/MS coupling or post-column derivatization with potassium iodide and subsequent UV detection.

    By Metrohm AG based in Herisau, SWITZERLAND.

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    Virgin Polypropylene Housings for the Drinking Water Industry

    By Shelco Filters based in Middletown, CONNECTICUT (USA).

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    Drinking water solutions for the coagulation optimization

    Problem: Drinking water plants that use surface water or ground water under the influence of surface water are susceptible to high levels of organic matter in the raw water. Reduction of organic matter through coagulation/sedimentation and filtration is important to lower the potential for disinfection by-product formation (DBP) and limit operational problems. In addition, organics in water consume the polymers used for the coagulation process, which reduces the efficiency of the treatment. Therefore, optimization of the polymer dosing heavily depends on the concentration of organics.

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

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