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Electrochemical Water Treatment Applications

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    Electrochemical solutions and water technologies for chlorine & caustic industry

    Our commitment is the development of innovative solutions to ensure greater competitiveness to our customers, through better performances in term of energy savings, investment costs, product quality and environmental impact.

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    Electrochemical solutions and water technologies for electronics

    We are committed to providing mixed metal oxide (MMO)-coated anodes and electrochemical technologies for the electronics industry. Listening to the industrial needs and main drivers, we have developed a high quality and reliable MMO-coated titanium anode for the electrodeposition of copper, gold and other metals on printed circuit boards (PCB) in replacement of soluble anodes.

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    Laboratory instruments solutions for chemical industry

    Converting raw materials into more than 70 000 different products that are used in almost all industries, the chemical industry lies at the core of the global economy and, perhaps, modern civilization. There is hardly any industrially produced good that would exist without the chemical industry, all the more considering that it was not until the 19th century that chemistry, particularly organic chemistry, exploded with Wöhler’s urea synthesis. Within just a few decades, numerous important industrial processes were developed that still shape today’s chemical processes – from the chlor-alkali to the Solvay process, to name just a few. The production of high-tech, high-purity chemicals requires safe and reliable analytical solutions. Find out what we have to offer in this area.

    By Metrohm AG based in Herisau, SWITZERLAND.

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    Electrochemical solutions and water technologies for surface finishing

    The surface finishing industry is driven to provide superior plated components, in turn requiring high quality anodes. De Nora DSA® anodes, with their tailored precious metal coating applied on Grade 1 titanium substrates,  ensure durable, reliable and high performance operation.

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    Electrochemical solutions and water technologies for municipal water & wastewater

    With more than 50 years’ experience across a range of applications and technologies, De Nora Water Technologies delivers reliable, effective and easy to maintain disinfection and filtration solutions. Our renowned brands, such as TETRA, Capital Controls, ADVANCE, ClorTec, UAT, EST and UltraDynamics, combined with our comprehensive aftersales offering, ensure that our customers are set to meet their legal treatment requirements, all while minimising their operating costs. Our solutions for municipal water and wastewater treatment are broadly grouped in to three areas: Disinfection, Filtration and Aftersales

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    Electrochemical solutions and water technologies for corrosion prevention

    Today, many man-made structures using steel face harsh futures from the ravages of their natural enemy-corrosion. The cost of corrosion has proven to be almost incalculable as it shortens the life of almost any structure using steel. De Nora’s cathodic protection anodes, marketed under the trade names of LIDA® and ELGARD®, provide customers with a solution to this problem.

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    Electrochemical solutions and water technologies for bleaching chemicals

    Our commitment is the development of modern solutions to ensure competitiveness to our customers, through better performances in terms of energy savings (low oxygen, low cell voltage), product quality and environmental impact of their productions.

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    Electrochemical solutions and water technologies for marine industry

    In the marine market, ocean-going vessels and fresh water or inner coastal boats require water treatment technologies to meet drinking water, process water and wastewater requirements. Offshore oil and gas operations and ocean-going vessels generate sewage that can contain contaminants which have a detrimental effect on water quality and the overall marine environment. As a result, marine sewage treatment systems are required to lessen the environmental impact. The MEPC.227(64) effluent standards, adopted by the International Maritime Organization’s Marine Environment Protection Committee, apply to all sewage treatment systems installed on board on or after January 1, 2016.

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    Electrochemical solutions and water technologies for professional cleaning

    Reducing the risk of infection transmission. In a world where high-density living in urban areas is increasing, and healthcare and the spreading of pandemics are among top concerns, the role of the cleaning industry is of great importance, though often underestimated.

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    Electrochemical solutions and water technologies for veterinary & animal care

    Ozonated water is increasingly employed in the treatment of several skin diseases and pathologies such as: Pyoderma, Seborrhea, Otobiosis, Fistulas, Pressure ulcers, Wounds.

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    Electrochemical solutions and water technologies for mining

    Winning with electrode design to reduce energy costs in traditional processes and UAT Reverse Osmosis (RO) Membrane Filtration Systems to meet any tap or brackish application need. Nickel and cobalt production,  precious  metal refining (gold, silver), recovery of copper from bleed streams or valuable metals from industrial wastewater, are some of the applications of our titanium DSA® anodes.

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    Ultraviolet disinfection systems for the de-ozonation industry

    Ozone is an allotropic form of oxygen; each molecule contains three atoms of oxygen instead of the usual two.  Ozone is a powerful disinfectant and has been used commercially for the treatment of potable water since 1904.  It is produced on site in the same way that ozone is formed naturally, by the discharge of electricity during a thunderstorm.  A high voltage is passed across a gas stream containing oxygen.  This method of ozone generation is called corona discharge.  The energy of the high voltage splits an oxygen molecule (02) into two oxygen atoms (0) - which recombine with ordinary molecules of oxygen (02) to form ozone (03).

    By atg UV Technology based in Wigan, UNITED KINGDOM.

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    Water treatment solutions for the food, beverage & tobacco industry

    Food and beverage producers are constantly looking for production optimization while achieving the highest levels of quality and compliance. Lenntech provides sustainable complete solutions for ingredient, water and waste water treatment in food and beverage industry considering a wide range of technologies and strategies.

    By Lenntech Water Treatment based in Delft, NETHERLANDS.

  • 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).

  • Electrodeionization

    The Fractional Electrodeionization (FEDI) process is an advancement of conventional EDI. The patented dual voltage process allows for a higher flexibility and tolerance to inlet water conditions, thus lowering the risk of scaling, and improving the plant& design economics and reliability. By incorporating a two-stage separation process with different voltages the FEDI process is able to: Achieve a higher hardness tolerance by having distinctly different concentrate chambers with separate reject streams and thus reducing the potential of hardness scaling. Optimize power consumption by using higher electrical current only where required. Ensure the best water quality, continuously consistently by removing a major part of the deionization load in the hardness removal zone, while residual ionic impurities are effectively removed in the silica removal zone;, which stays in a polishing mode.

    By QUA Group LLC based in Canonsburg, PENNSYLVANIA (USA).

  • COD Reduction

    Chemical Oxygen Demand (COD) is used as a measure of organic pollutants in water. In wastewater treatment, it indicates the efficacy of a treatment process and is expressed in milligrams per litre (mg/L) or parts per million (ppm). Removing certain fractions of COD in waste streams can be particularly challenging, especially to levels safe for discharge to the environment.

    By Arvia Technology based in Runcorn, UNITED KINGDOM.

  • Energy from the anaerobic wastewater treatment for the Food and Beverage industrial sector

    Industrial wastewater characterized by an high COD content are an interesting renewable source for the Food and beverage industrial sector which can have them readily available from their industrial processes. The COD contribution in the wastewater can be easily converted in biogas and then in green energy to reuse inside the factory as both electrical energy and thermal energy. This process can be applied with the installation of the UASB technology, implemented by Hydroitalia - Colsen in new and existing plants.

    By Hydroitalia - Colsen Srl based in Medicina, ITALY.

  • Organic Micro-Pollutants Removal

    Organic Micro-pollutants are low and trace levels of synthetic organic substances released in water through human activity. They can be found in industrial, agricultural and domestic wastewater streams. Some of the most difficult-to-treat wastewater contains micro-pollutants such as persistent organic pollutants (POPs), herbicides and pesticides, personal care products (PCPs), toxic chemicals, carcinogenic and endocrine disruptive compounds (EDCs), and emerging contaminants.

    By Arvia Technology based in Runcorn, UNITED KINGDOM.

  • Wastewater solutions for municipal sewer control

    Problem: A significant portion of the operational costs of a conventional municipal wastewater treatment plant employing an aerobic biological treatment unit comes from electricity costs associated with aeration. In many cases, the aeration rates are kept at the maximum level to ensure that the plant’s effluent is in compliance with the regulations. The critical parameter for regulatory purposes and treatment efficiency, BOD, takes 5 days to measure through standard methods providing almost no value to the plant operators in terms of adjusting aeration rates and chemical dosing.

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

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