Pressure limiting. and/or flow regulating valve for use with POU/POE filter system

    公开(公告)号:AU2004288138A1

    公开(公告)日:2005-05-19

    申请号:AU2004288138

    申请日:2004-08-17

    Abstract: An apparatus comprising a pressure limiting valve for preventing transmission of elevated pressure to components downstream of the apparatus. Preferably, the pressure limiting valve is used in combination with a flow regulating device that maintains a substantially steady flow rate through the apparatus even when subject to a wide range of applied pressure. The apparatus of the present invention is preferably suitable for use with filter systems wherein the pressure limiting valve is placed upstream of filter components that have limited burst and fatigue life capabilities. By isolating the downstream filter components from pressures that are greater than the target pressure range for a given application, the filter components can be designed to operate at much lower pressure, can be produced at a smaller size, and at a reduced cost.

    METHOD AND APPARATUS FOR METAL REMOVAL FROM DRINKING WATER

    公开(公告)号:CA3048919A1

    公开(公告)日:2018-11-29

    申请号:CA3048919

    申请日:2018-04-16

    Abstract: A single sheet water filter media for gravity filtration applications that improves flow performance over the product life while maintaining sufficient metal reduction, wherein at least two distinct density gradients of the single sheet form a physical barrier for capturing colloidal and insoluble contaminants, retaining the colloidal and insoluble contaminants until the contaminants become soluble in the fluid, and being removed by the single sheet' filter media. The single sheet filter overcomes the difficulties of dual- and multi- layer filters attributable to slower flow rate realized well before the rated lifetime of the product. The two distinct density gradients of the single sheet filter media are created by exerting a force on a liquid slurry, such force resulting in the separation of higher powder loading and fibers that compose the top and bottom density gradients, respectfully.

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