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Products by Fluidyne Corporation

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  • ISAM™ Integrated Surge Anoxic Mix

    A TOTALLY NEW CONCEPT IN SBR DESIGN In operation, all influent flow enters the anaerobic basin where influent solids are allowed to settle much like a primary clarifier. Elimination of primary solids in the anaerobic basin allows for much smaller SBR basins at equivalent SRT than conventional... Read More
  • SAM™ Surge Anoxic Mix

    The newest Fluidyne wastewater treatment systems incorporate a surge/anoxic mix (SAM™) tank to control the process and provide rapid and complete treatment. The Surge Anoxic Mix (SAM™) System integrates anoxic and aerobic processes for energy efficient BOD, TSS and nutrient removal. OPTIMAL... Read More
  • Jet MCR™ Multi-Channel Orbital

    COMPLETE NITRIFICATION/ DENITRIFICATION The Fluidyne Jet MCR™ offers significant advantages compared to a similar system with surface aerators. The greatest process advantage is that our mixing pumps draw motive liquids (fully nitrified mixed liquor) from the inner channel and pump it back out... Read More
  • SBR Sequencing Batch Reactor

    LOW COST EASILY CONTROLLED SYSTEM Fluidyne’s unique Sequencing Batch Reactor (SBR) System is a reliable yet easily controlled wastewater treatment process that fits within limited budgets. The Fluidyne SBR eliminates the need for separate clarifiers, RAS pumps and independent anoxic and aerobic... Read More
  • High Efficiency Hydro-Grit™

    Fluidyne’s Hydro-Grit™ grit vortex system removes sand and inorganic material before the wastewater treatment process. Historically one of our most popular and effective products, the high efficiency Hydro-Grit™ offers the same advantages as the standard Hydro-Grit™ with improved grit removal... Read More
  • Standard Efficiency Hydro-Grit™

    FORCED VORTEX AND GRAVITY WORKING TOGETHER The Hydro-Grit™ system takes maximum advantage of the principle of sub-cyclonic separation without the need for any moving parts resulting in removal of grit particles as small as 0.2 MM. Special application design is available which provides for the... Read More
  • Grit Classifier

    The Hydro-Grit™ Classifier is designed for the separation, dewatering and removal of settleable inorganic material typically at the inlet/headworks of a municipal or industrial wastewater treatment plant. EFFICIENTLY DESIGNED The grit classifier consists of a sloping bottom tank and a screw... Read More
  • Jet Aeration

    Fluidyne Jet Aeration provides an economical and effective approach to oxidizing and mixing wastewater. Jet Aeration Systems are ideal for both industrial and municipal activated sludge processes including SBRs, oxidation ditches, extended aeration and BNR. Due to their flexibility, large solids... Read More
  • Jet Aspiration

    Jet aspiration is a simple, efficient and cost effective solution to wastewater treatment and mixing problems. Liquid from the tank is pumped through a specially designed double nozzle assembly which aspirates air into the mixing section. The combined air/liquid plume is then discharged below... Read More
  • Jet Mixing

    Fluidyne Jet mixers can be used in a wide variety of wastewater applications including flow equalization basins, CSO tanks, anoxic reactors, anaerobic digesters, SBRs, oxidation ditches and flash mix tanks. Fluidyne’s jet mixing systems are simple, cost effective and available for new... Read More
  • FFP™ Fixed Plate Cloth Filter

    Fluidyne FFP™ Cloth Media Plate Filters remove suspended solids as small as 10 micron and can be configured for flows ranging from 10,000 to 1,200,000 GPD per unit. Units are offered in completely assembled 100% SS free-standing packages, or as modules for retro-fit into new or existing concrete... Read More
  • Wastewater Treatment Systems

    Wastewater treatment systems from Fluidyne include: Integrated Surge Anoxic Mix (ISAM); Surge Anoxic Mix (SAM); Jet MCR; and, Sequencing Batch Reactor (SBR). ISAM™: A total treatment system incorporating BOD, TSS and nitrogen removal along with sludge reduction in an integrated system. SAM™: The... Read More

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