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on-site water Applications

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    Contaminated Water Filtration

    Industry standard best practices are designed to ensure that all work done on Asbestos Abatement Projects is done to the highest level of safety and risk management. Containment of the generated waste water fibers and debris is critical to proper compliance and worker safety. If these fibers are not captured and contained, they can be very harmful for the environment, on-site workers and the occupants of neighboring areas. Exactly how you approach your containment and capture solutions will depend on the individual site’s risk assessment report. If you need help identifying solutions to the issues raised in the report, feel free to contact our customer service department and we can review your options together. Water from showers at Asbestos Abatement sites is often contaminated with asbestos fibers from washing protective gear and equipment. This water must be filtered prior to discharge into a drain.

    By Omnitec Design, Inc. based in Mukilteo, WASHINGTON (USA).

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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.

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    Remediation solutions for soil & water remediation industry

    Carus Corporation has been an active participant in the remediation industry since the late 1990s. Our Carus Remediation Technologies (CRT) team is dedicated to the support and growth ofin situchemical oxidation (ISCO), bioremediation and other emerging technologies.

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

  • 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).

  • Analytical services for site assessment and remediation

    Analytical precision is essential, whether remediation is to abide by regulatory provisions or for development projects. With specific standards in place for each region and situation, Maxxam has developed comprehensive test packages for soil, groundwater, sediments, surface water and soil vapour to meet provincial regulations and/or Canada-wide Standards as set out by the Canadian Council of Ministers of the Environment.

    By Maxxam Analytics based in Mississauga, ONTARIO (CANADA).

  • 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).

  • Groundwater Monitoring for Remediation

    Many fresh water sources have been degraded to toxic levels by the inclusion of industrial, agricultural, and human waste products that have been discharged into the closest body of water, accidentally or deliberately for many years.

    By HERON Instruments Inc. based in Dundas, ONTARIO (CANADA).

  • Groundwater Monitoring for Construction Sites

    All construction affects groundwater and a water management plan will be required. From deforestation to urbanisation, from holes to heaps and dams to drains, they all have an affect on the groundwater. Deforestation causes an increase in the rate of run off of rainwater resulting in lower percolation of precipitation into the soil and a consequent increase in soil erosion leading to slope instability, hence land and mud slides. The increased rate of run off can cause small streams and large rivers to rise and flood in a shorter time, but also to dry up sooner. These conditions cause great difficulties for subsistence farmers in developing countries. Urbanisation also causes faster run off because of the non permeable surfaces such as roads, roofs and car parks. This also creates drainage problems that can lead to contamination and erosion of natural water courses.

    By HERON Instruments Inc. based in Dundas, ONTARIO (CANADA).

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    MPP water purification systems for groundwater remediation application

    Toxic hydrocarbons in groundwater can be found dissolved in water diffused over the area. At higher concentrations they can be present as DNAPLs (dense non-aqueous-phase liquids) or LNAPLS (light non-aqueous-phase liquids) creating an enduring source of toxic contaminant supply to the water phase.

    By VWT Techno Center Netherlands B.V. - MPP Systems based in Ede, NETHERLANDS.

  • Monitoring of VOCs in Porewater

    Monitoring VOCs in porewater in the unsaturated zone is now possible.

    Sorbisense regularly offers new options for using the patented Sorbicell, which is used to monitor surface water, wastewater and groundwater.

    The latest is almost as “ground-breaking” as the SorbiCell itself. Until now it has been difficult, if not impossible, to directly monitor for volatile substances in pore water in the unsaturated zone. But the environmental consultancy firm Ejlskov A/S in Aarhus combined the use of Sorbisense sampling equipment with the proven technology of soil water samplers. With this combination, a practical new method is made available, which allows for monitoring the presence of porewater-dissolved VOCs above the groundwater table. This provides a significantly improved basis to define and determine the leaching risk to the groundwater, and thus allows for better and more cost-efficient decisions to prevent the pollution in reaching the groundwater.

    A simple construction with multiple options

    The application uses SorbiCell VOC combined with suction cells, soil water samplers. When installed correctly, and applied with the correct procedures, the suctions cells extract capillary bound water from the soil matrix. The system demands no other resource than a container that is put under vacuum. The vacuum in the container then ensures a flow through of the Sorbicell over a period of time, fx. 2-3 weeks. The method is highly suitable for monitoring a site over longer periods of time.

    By SORBISENSE based in Tjele, DENMARK.

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    Gray Water remediation utlizing sodium hypochlorite (bleach) Poly Tanks

    Sodium Hypochorite tanks in double wall (safe tanks), vertical, horizontal, cone bottom or IBC tanks. Poly tanks in sulfuric acid service as well as containment assemblies fully manufactured. Custom Fiberglass (FRP) tanks and on-site fiberglass tank repair of existing FRP tanks.

    By Sierra Sales Double Wall Plastic Tanks based in Perkasie, PENNSYLVANIA (USA).

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    In-Situ Groundwater Remediation for the Site Remediation Industry

    In-situ groundwater remediation method is based on injection of Fe(0) nanoparticles through application wells directly into the contaminated water. nZVI injection is very fast, reaching significantly lower operating costs compared to commonly used remediation methods (expensive construction of reactive barriers, building of pump&treat stations, excavation of contaminated soil etc.). In comparison to other in-situ technologies a far lower quantities of injected chemical is needed due to high efficiency of the product and thus the time and cost of remediation is reduced.

    By NANO IRON s.r.o. based in Rajhrad, CZECH REPUBLIC.

  • 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).

  • Manufactured Gas Plant Site Remediation

    It is estimated that there are over 3,000 former Manufactured Gas Plant (MGP) sites across the United States. Another 4,000 dot the landscape of Canada, the UK, continental Europe and Japan. These sites were built long ago on rivers or harbors, often on the outskirts of towns and cities; locations that are now frequently in close proximity to infrastructure, buildings and residential areas. Many underlie or abut valuable commercial, residential, and municipal properties, posing environmental hazards to ground and surface waters. The urgency of remediation has increased due to a potent blend of community activism, regulatory pressure, high real estate values, and the need to reduce liability in light of the Sarbanes-Oxley Act and other measures.

    By TerraTherm, Inc. based in Gardner, MASSACHUSETTS (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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    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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    Wastewater Testing for the the Water Treatment Industry

    There are strict regulations in place surrounding waste water, which makes it very important to monitor. Even small changes in aquatic ecosystems can have a huge impact in the chemical makeup of water, temperature, etc. By using real time monitoring on water quality, pollutants can be detected and mitigated before they pose a potential threat to these ecosystems and enter the water course. The rugged AP-2000 allows for real time testing of wastewater and helps to minimise risk of any potential fines. It is works to protect the device and allow for other essential parameters to be tested. Because it is portable, it is easy to transport between locations, and you can also save money from onsite visits by getting instant data readouts using telemetry.

    By AQUAREAD Limited based in Broadstairs, UNITED KINGDOM.

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    Caustic, Sulfuric Acid & Bleach Double Wall Containment Tanks for On-site Processing

    Our safe tank vessels are independently designed for each project and to the requirements required by th engineer. Chemicals we design HDLPE & XLPE (HDXLPE) vessels for include: Acetic Acid, Aluminum Sulfate, Ammonium Sulfate, Calcium Chloride, Ethylene Glycol, Ferric Chloride, Ferric Sulfate, Ferrous Sulfate, Hydrochloric Acid, Hydrofluoric Acid, Hydrofluosilicic Acid, Hydrogen Peroxide, Magnesium Chloride, Phosphoric Acid, Polymers (Deposition), Potassium Hydroxide, Sodium Hypochlorite, Sulfuric Acid, Surfactants & water.

    By Sierra Sales Double Wall Plastic Tanks based in Perkasie, PENNSYLVANIA (USA).

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