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Wedge Wire Hub and Header Lateral for water treatment

Header laterals promote even distribution while also avoiding flow/pressure concentrations. Each header lateral consists of a series of screen laterals connected to a central header to provide uniform flow within a vessel containing treatment media. Header laterals can be used to either distribute inflow or collect flow, depending on their location within a vessel.  We build header laterals to your specifications for material (stainless steel options or alloys), wire and rod size, and open areas to accommodate your media retention and flow-rate requirements. We also drill the proper size and number of holes for backwash systems. Each of our Header and Hub-Lateral Systems are carefully designed from your specified design conditions that include the vessel inside diameter, volumetric flow rate, allowable pressure drop through the screen, resin/media to be retained, and a minimum open area to list.  Our experienced engineering group designs each system to provide even distributi...

Bottom Header Pipe Reactor Screen for Phenol Production Process

Phenol is both a synthetic chemical and a natural substance. Used primarily in producing phenolic resins and in manufacturing nylon and other synthetic fibers. It is also used in slimicides (chemicals that kill bacteria and fungi in slimes), as a disinfectant and antiseptic. We will use the wedge wire bottom header pipe reactor screen in the Phenol production process.  The bottom header pipe reactor screen is preferably constructed of stainless steel wedge wire material and is shaped in a cylinder so that it can be inserted between two concentric strainer walls. A collector/distributor uses a header pipe or a hub to which several screen tubes are attached to enable excellent collection or distribution of a gas or liquid within a medium without wall effects or channels to maximize efficiency. The wedge wire Bottom Header Pipe Reactor Screen filter is customized by using various diameters, densities, crimping styles, and configurations to optimize the reduction of bypassed debris a...