Abstract:
The invention relates to a method for clearing water in a water supply system from micro-organisms, such as Legionella. The water is thereto first filtered to retain a substantial amount of the micro-organisms, and subsequently radiated to inactivate micro-organisms that may still remain in the water, wherein said radiating step acts on the water at least as this water leaves the water supply system through a supply opening, such as a shower head, sprinkler, irrigation nozzle or the like. The invention furthermore relates to an apparatus for clearing water supplied by a water supply system from micro-organisms, a water supply system provided with such apparatus and a shower unit comprising an apparatus according to the invention.
Abstract:
A germicidal UV reactor for use in fluid purifiers is provided, in which the UV reactor comprises an UV lamp with an UV transparent primary envelope and also an UV transparent secondary envelope around the primary envelope. The outer surface of the secondary envelope is in contact with a flowing fluid to be purified. There is an isolating space between the outer surface of the primary envelope and the inner surface of the secondary envelope. At least one of the outer surface of the primary envelope and the inner surface of the secondary envelope is provided with electrical means for heating and thus enhancing UV emitting efficiency of the UV lamp.
Abstract:
A portable Ultra Violet (UV) sterilizer includes a body into which liquid, or small objects, may be placed. A bulb in the interior of the body and may be activated such that the radiation from the bulb kills DNA-based organisms present in the liquid, or on the objects, and thereby sterilizes the liquid or objects. Through the use of a highly reflective coating on the interior of the body, a lower wattage UV bulb may be used than would be normally necessary.
Abstract:
A sterilizing pot comprises a main frame and a pot with an outlet and an inlet for containing related elements. The inside of the pot is constructed with a magnetizing unit and a UV sterilizing lamp. The magnetizing unit further includes a condensed carbonized healthy stone and a far infrared magnetic hose. The condensed carbonized healthy stone is employed for mineralizing the water, and the far infrared magnetic hose can make the water molecular finer. The carbonized healthy stone and the far infrared magnetic hose are used in cooperation with the UV sterilizing lamp for killing bacteria and/or viruses, to enable the water molecules to be absorbed easily by the human body, and to improve anti-bacteria efficiency.
Abstract:
A septic tank system including a tank and a downstream fluid system. The tank is adapted to receive sewerage and discharge liquid effluent into the downstream fluid system. A treatment chamber is located in the downstream fluid system and receives an ultraviolet light transmitting device which is removably insertable into the treatment chamber. A photoelectric device can be positioned in the downstream fluid system proximate the ultraviolet light transmitting device to monitor the operation of the device.
Abstract:
The present invention provides a photocatalyst sterilizer (200) which draws thereinto water, contained in a water tank (120) and polluted by bacilli and various organic substances, regardless of a water level in the water tank (120) and sterilizes the polluted water using violet rays and through a photocatalyst reaction, thus enhancing a sterilizing ability thereof, and which is easily installed and efficiently used in various appliances, which are necessary to execute sterilizing processes, for example, hot and cold water generators, hot and cold water purifiers, tap water purifiers to be directly coupled to faucet pipes, edible water purifiers, and aquariums.
Abstract:
The present invention relates to a point-of-use water treatment system unit (10). The unit (10) includes a filter housing assembly (60) having a filter tank assembly (66) and a closure (64) which utilizes a handle (152) and cammed reciprocating lock blades (146, 150) to secure the closure (64) to the filter tank assembly (66). A UV tank assembly (300) includes a planar baffle plate (322) and a vaned baffle plate (324) to induce plug flow about a UV lamp assembly (280). The UV lamp assembly (280) is used which simultaneously electrically and sealingly mounts to UV tank assembly (300) and electrical cap assembly (290) using a bayonet mount. A bi-planar manifold assembly (40) is used to interconnect components of the WTS unit and to provide an envelope for accommodating a water pipe assembly (34). The bi-planar manifold assembly (26) enhances the compactness of the design of the WTS unit (10). Also, a support plate (26) is disclosed which provides support to subcomponents of the WTS unit (10) while also dissipating heat from a UV tank assembly (300).
Abstract:
A portable water filtration device includes a liquid-tight filter container and a filtration device mounted in the liquid-tight container. The filtration device includes an inlet opening extending through one of the walls and a first filtration device in liquid transfer connection with the inlet opening operative to receive and filter liquid flowing therethrough. A second filtration device is operative to receive liquid from the first filtration device and further filter the liquid flowing therethrough. The first and second filtration devices are selected from the group including ultraviolet, activated carbon and reverse osmosis filters, and an outlet opening extending through one of the walls then receives the treated water and releases the water from the filtration device. Finally, the liquid-tight filter container is operative to prevent liquid from entering the interior volume thereof thereby preventing contamination of the filtration device from accidental incursion of contaminants.
Abstract:
A new method for design and scale-up of thermocatalytic processes is disclosed. The method is based on optimizing process energetics by decoupling of the process energetics from the DRE for target contaminants. The technique is applicable to high temperature thermocatalytic reactor design and scale-up. The method is based on the implementation of polymeric and other low-pressure drop support for thermocatalytic media as well as the multifunctional catalytic media in conjunction with a novel rotating fluidized particle bed reactor.
Abstract:
A fluid treatment device, preferably for the treatment of water, is described. The device comprises a closed housing having a fluid inlet, a fluid outlet and a fluid treatment zone disposed between the fluid inlet and the fluid outlet. The fluid treatment zone comprises a first irradiation zone and a second irradiation zone. At least one fluid mixing element is interposed between the first irradiation zone and the second irradiation zone.