Static Mixer |
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Helical Static Mixer |
HSM High Shear Mixer |
Helical Static Mixer Rods |
Wafer Type Static Mixer |
Fin Type Static Mixer |
Gas Mixer |
   Heat Exchanger |
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SM Type Heat Exchanger |
   Desuperheater |
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Venturi Type Desuperheater |
   Ejector Air/Steam/Liquid |
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Steam, Sump, Liquid, Air Ejector |
   Eductor/Jet Mixer/Venturi |
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Jet Mixing Eductor |
   Turbo Dryer |
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Wyssmont Turbo Dryer |
   Evaporation and Distillation |
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Falling Film Evaporator |
Rising Falling Film Evaporator |
Forced Circulation Evaporator |
Distillation System |
   Powder Blending |
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Powder Blending |
   Thermal Processing |
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Direct Dryers |
Purge Vessel |
Fluid Bed Dryer |
PCX Dispersion Dryer |
Solidaire |
TorusDisc |
Indirect Dryers |
Solidaire |
TorusDisc |
Thermascrew |
Continuator |
   Size Reduction |
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Block Grinding |
Rubber Chopper |
Extructor |
Coarse Grinding |
RA/RP Disintegrator |
RD Disintegrator |
RI Disintegrator |
Fine Grinding |
Pulvocron |
   Agglomeration and Compaction |
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Pressure Agglomeration |
Briquetting/ Granulating System |
Tumbling Agglomeration/Mixing |
Turbulizer |
Extrusion Agglomeration/Mixing |
Extrud-o-mix |
   Solid Liquid Separation |
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Screw Press |
   Mixing and Blending |
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Hydramix |
Ribbon Blender |
Wet Cake Feeder |
Turbulizer |
Extrud-o-mix |
   Fire Safe Valves |
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Fusible Link Assemblies | Re-settable Emergency Block Valve | Deadman Handles & Valve Packages |
   Fabricated Equipment |
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Fabricated Equipment |
Manufactured by Hebeler Process Solutions, USA
Falling Film Evaporators offer distinct operating advantages to concentrate many materials,
such as certain food products, fruit juices, pharmaceuticals and similar materials,
which are particularly suited to evaporation in this type of equipment.
Our Falling Film Evaporators are unique as they utilize a novel operating principle from other types.
The dilute liquid is fed to the top of the tubes,which flows downward as evaporation occurs.
Uniform distribution of the liquid to the tubes is assured by an exclusive feature which controls the flow of the liquid to the top of the vertical heating tubes. The liquid flows over the edge of the tubes and runs down the inside surface in a thin, uniform film. The vapor travels down the tubes in the same direction as the liquid, gaining in velocity by the addition of more vapor as the mixture descends, resulting in high velocity for both the liquid and vapor.
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