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advanced wastewater treatment Applications

  • Advanced Ultrafiltration Modules

    The Q-SEP Ultrafiltration membranes incorporate high-strength, hollow fibers that deliver superior performance without the risk of fiber breaks. They are made from a hydrophilic polyether sulfone material with excellent low fouling characteristics. These hollow fiber membranes operate under a pressurized inside-out flow configuration for superior performance. These hollow fiber UF membranes offer reliable removal of turbidity, microorganisms & viruses. Turbidity can be reduced to less than 0.05 NTU. Typically, a 6-log removal for bacteria, giardia & cryptosporidium, while a 4-log removal for viruses, can be achieved. The Q-SEP modules contain an advanced UF fiber, prepared by an innovative patented cloud point precipitation method. This method ensures a very uniform pore size distribution and high pore density in the membrane. As a result, the product water quality from the modules is significantly better than the quality from conventional UF modules at a very operating pres

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

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    Advanced water treatment equipments for ion exchange

    Ion exchange is an exchange of ions between two electrolytes or between an electrolyte solution and a complex. In most cases the term is used to denote the processes of purification, separation, and decontamination of aqueous and other ion-containing solutions with solid polymeric or mineralic `ion exchangers`.

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

  • Advanced oxidation for sewage treatment

    By HF Pure Water based in Compton, CALIFORNIA (USA).

  • Advanced oxidation for waste water treatment

    By HF Pure Water based in Compton, CALIFORNIA (USA).

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    Advanced water treatment equipments for deionization

    Deionized water, also known as demineralized water (DI water or de-ionized water; can also be spelled deionised water), is water that has had its mineral ions removed, such as cations from sodium, calcium, iron, copper and anions such as chloride and bromide. Deionization is a physical process which uses specially-manufactured ion exchange resins which bind to and filter out the mineral salts from water. Because the majority of water impurities are dissolved salts, deionization produces a high purity water that is generally similar to distilled water, and this process is quick and without scale buildup. However, deionization does not significantly remove uncharged organic molecules, viruses or bacteria, except by incidental trapping in the resin. Specially made strong base anion resins can remove Gram-negative bacteria. Deionization can be done continuously and inexpensively using electrodeionization.

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

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    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).

  • Advanced oxidation for water purification

    By HF Pure Water based in Compton, CALIFORNIA (USA).

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    Advanced water treatment equipments for hydrogen sulfide removal

    The presence of hydrogen sulfide in home drinking water supplies is not a health hazard, but is a common nuisance contaminant whose distinctive `rotten egg` odor makes water treatment desirable. Several treatment methods are available, and often hydrogen sulfide can be treated and removed using the same process and equipment used for iron and manganese removal.

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

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    Ultraviolet disinfection systems for the advanced oxidation processes (AOP)

    Advanced Oxidation reactions are an extension of the process whereby UV alone is used to reduce Total Organic Carbon (TOC) through the lysing of water molecules into hydroxyl radicals. Hydroxyl radicals (OH) are produced with the help of one or more primary oxidants (usually ozone or hydrogen peroxide) and ultraviolet light. This reactive species is the strongest oxidant that can be applied in water and can oxidize virtually any compound present in the water.

    By atg UV Technology based in Wigan, UNITED KINGDOM.

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    Wastewater treatment management for desalination industry

    Due to decreasing adequacy and quality of water resources across coastal mainland communities and island nations across the world, municipalities are seeking advanced, innovative and efficient potable drinking water treatment solutions. These solutions will need to assist them to meet the needs of an expanding population in a cost effective and sustainable manner while achieving increasingly tighter regulatory compliance. Brackish water and seawater desalination solutions are effective solutions to meet and secure the water needs of your communities into the future.

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

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    Wastewater treatment management for drinking water industry

    Water scarcity, aging infrastructure and increasingly stringent environmental regulations regarding disinfection byproducts and emerging contaminants are challenges facing municipalities around the world. Large cities, small cities, communities and water utility operators globally are seeking advanced, innovative and efficient drinking water treatment solutions. These solutions will assist them to meet the needs of an expanding population in a cost effective and sustainable manner while achieving increasingly tighter regulatory compliance.

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

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    Wastewater treatment solutions for textile industry

    The Textile industry is a water intensive industry. Rising water costs due to increasing water scarcity and more stringent environmental regulations have lead to textile companies globally to seek advanced, innovative and efficient textile wastewater treatment solutions to assist them to reduce their water footprint, decrease operational cost and maintain regulatory compliance. Therefore, sustainable water quality management and conservation through water reuse strategies are increasingly becoming critical to the entire operations of a textile manufacturer.

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

  • Effluent wastewater treatment for refineries

    Aquatech has experience working with refinery effluent pollutants in the refinery market and offers the advanced petroleum wastewater treatment and recovery technology necessary for the refinery’s needs.

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

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    Ultraviolet disinfection systems for the wastewater industry

    UV technology has made tremendous gains in the last 25 years and is now recognised as a primary method of disinfecting waste water. atg UV Technology have researched the wastewater industry and identified the need for a range of compact closed chamber UV systems, which are easy to install into a pipeline, can deal with a wide range of water qualities and offer a high output within a small foot print. The advanced range of atg UV systems have successfully treated a wide range of fluids, in many different industries and have been installed on traditional and specialist wastewater treatment works worldwide.

    By atg UV Technology based in Wigan, UNITED KINGDOM.

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    Ultraviolet disinfection systems for the produced water treatment

    With environmental regulations becoming more stringent, and the link between re-injected water quality and operational costs becoming clear to operators, investing early in advanced water treatment solutions for produced water for both reinjection applications and environmental discharges is now a top priority for operators worldwide.  atg UV Technology have provided a number of specialist UV packages for the disinfection of Produced Water in order to reduce microorganisms such as SRB’s (Sulphate Reducing Bacteria), Acid Producing Bacteria and Slime Forming Bacteria, that if left untreated, pose a range of negative consequences including: - Souring the well with hydrogen sulphide gas H2S, Microbiological induced corrosion, Loss of fluid stability during injection, Plugging of the well, Damage of equipment and components (e.g. RO membranes, filters).

    By atg UV Technology based in Wigan, UNITED KINGDOM.

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    Water treatment and wastewater treatment solutions for food and beverage industry

    Food and beverage processing companies have unique challenges requiring advanced food and beverage water treatment and wastewater treatment solutions. These challenges include optimizing water efficiency and exceeding regulation compliance standards. There is typically four main water processes involved in food and beverage processing. These processes are cooling water, process water, boiler feed water and process wastewater. The typical allocation of water used in each process varies by industry, from about 60-65% for processing uses in the meat & poultry industry to about 15-20% for the sugar processing industry.

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

  • Ozone/UV systems for Industrial, municipal, and residential wastewater treatment

    In 2004-2005 LIFETECH`s laboratory worked out an advanced oxidation process (AOP) for removal of dioxins and furans (PCDD/F), chlorophenols and other contaminants from the BCD process wastewater. Consequently, our technology was installed and from April 2006 successfully used in the `Spolana-Dioxins` Project at SPOLANA a.s. in Neratovice, Czech Republic, as a part of Special Wastewater Treatment Plant. Our supply consisted of an ozone generator with the output of 5 kg O3/h at 10% w/w ozone concentration, two reaction tanks with mixing systems, a vent ozone destructor, and a control system. The world largest project for removal of PCDD/F was managed by BCD CZ a.s., a subsidiary of Thermal and Chemical Soil Remediation Ltd.

    By LIFETECH based in Brno, CZECH REPUBLIC.

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