Abstract:
System and method to reducing risk of patient infections (HAI), using operating rooms equipped with suitable automatic airborne sterilizing agent generators, sensors, mechanisms, automatic air control devices, and ceiling mounted structures that allows the room to both provide air curtains of laminar flow sterilized air over the operating table, as well as to be quickly and completely sterilized. After suitable safety checks, the system isolates the interior air from external air, and activates an air phase anti-microbial agent generator, filing the room with air-phase anti-microbial agent. After sterilization, the invention deactivates the generator, removes the remaining air-phase anti-microbial agent by flowing room air through a catalytic converter, and then restores the connection to outside sterilized air. The ceiling mounted structure is configured for laminar flow air curtain delivery, supply lighting, and support boom mounted operating room equipment. Various sensors, control methods, wall coverings, and other options are disclosed.
Abstract:
A fan coil apparatus includes an air flow path, a humidification unit, and a treatment applicator. The air flow path extends from a heating zone to a fan coil air outlet, and includes a humidification section. The humidification unit includes a humidification unit water droplet outlet and an air permeable water retaining member. The air permeable water retaining member and the humidification unit water droplet outlet are provided in the humidification section and the air permeable water retaining member is positioned downstream from the humidification unit water droplet outlet. The treatment applicator provides a disinfecting agent upstream from an air outlet of the humidification section.
Abstract:
An HVAC fluid dispersant system. The HVAC fluid dispersant system includes one or more fluid lines, the one or more fluid lines configured to allow movement of a fluid and a pump, the pump configured to move the fluid through the one or more fluid lines. The HVAC fluid dispersant system also includes a source line, the source line configured to provide the fluid to the pump and a nozzle. The nozzle is configured to receive the fluid from the one or more fluid lines, create a mist composed of the fluid and attach to a duct vent.
Abstract:
A composition that can be used as an additive to paints, adhesives and resins to provide a prolonged effectiveness to kill microorganisms exposed to the coating is disclosed. The biocidal coating is comprised of a calcium hydroxide particulate that is within the matrix forming material (e.g. paint, adhesive, resin, etc.). The calcium hydroxide is hygroscopic and attracts waters at a surface of the biocidal coating to limit conversion of the calcium hydroxide particulate at the surface to calcium carbonate in order to maintain a high alkalinity of the biocidal coating. The calcium hydroxide particulate is produced through calcination of crushed limestone, hydration, and then grinding and classification to a particle size less than 25 microns. The calcium hydroxide particulate is then mixed with water in a desired ratio prior to adding to the matrix forming material. The mixture is then applied shortly after mixing.
Abstract:
The invention relates to an air decontamination device. The mobile air decontamination device (1) includes: (i) an inlet port and an outlet port; (ii) a dehumidifying means downstream from the inlet port for dehumidifying the air entering the device (1) via said inlet port; and (iii) a means for evaporating a microbicidal material, which is arranged upstream from the outlet port and downstream from the dehumidifying means, and which is intended for vaporizing the microbicidal material in the air flowing inside the device (1). Furthermore, the dehumidifying means includes a compressor (4) connected to the inlet port for compressing the air entering the device (1), a forced-convection condenser (5) arranged downstream from the compressor (4), and a water-separating filter (6) arranged downstream from the forced-convection condenser (5), the device (1) including a means for adjusting the discharge pressure of the compressor (4).
Abstract:
A system for disinfecting a room includes an enclosure having first and second air inlets and an air intake control assembly to selectably control air flow into the enclosure through the first and second air inlets. Air that flows between the exterior and interior of the enclosure through the second air inlet passes through a filter assembly. The enclosure also includes an air dispersion outlet having a fan that draws air into the enclosure through the first and second air inlets and forces air out of the enclosure. A chemical dispersion assembly generates a disinfecting fog relative to the fan. A system controller controls the air intake control assembly to disperse the disinfecting fog into the room, and subsequently draw the disinfecting fog from the room and through the filter assembly.
Abstract:
The object of the present invention is a device for the production of a sterilized spray, or limited in its potential microbial pathogen activity. Such spray is produced with a liquid, through the use of an impulsion steam that is obtained through the vaporization of part of such liquid stream to be atomized.
Abstract:
An object is to provide an air bacteria removal device in which leakage of electrolytic water to the outside is eliminated as much as possible and in which maintenance can easily be performed, the air bacteria removal device comprises a main body including a water storage section having a sealed or semi-sealed structure in which the electrolytic water is stored, and a water absorption member for supplying the electrolytic water from the water storage section to an air-liquid contact member by use of a capillary phenomenon, the air-liquid contact member and the water absorption member are integrated and detachably attached to the main body, the water absorption member attached to this main body enters the water storage section, and is submerged into the electrolytic water, and the water storage section is brought into a sealed or semi-sealed state.
Abstract:
A method and apparatus is described for neutralizing airborne pathogens and chemical toxins in ventilated air, and in heating or air conditioning systems. The pathogen-chemical toxin neutralization system is effective against a wide spectrum of pathogens and toxins, it incorporates commercially available components, and it can be readily integrated into commercial HVAC systems where it decontaminates large volumes of ventilated air in real time without any chemical reagents. The system has a flow-through reaction chamber that contains a UV light source that emits short intense flashes of broad-spectrum UV light, a source aqueous hydrogen peroxide that can be a reservoir or a hydrogen peroxide generator, and optionally a source of ozone. The interaction of UV light and hydrogen peroxide generates hydroxyl radicals that neutralize pathogens and chemical toxins as they pass through the reaction chamber in real time. The pathogens that can be neutralized by this system include bacteria, viruses, spores, fungi and parasites.
Abstract:
To provide an air conditioner having an antibacterial and mold-proofing member which can be easily incorporated and has high effectiveness and a method for controlling the air conditioner. An air conditioner of the present invention having a heat exchanger and a blower for supplying the heat exchanger with air comprises an antibacterial and mold-proofing member which includes an antibacterial and mold-proofing component which will volatile at an ambient temperature and diffuse in the air conditioner, and also has a control mechanism for gradually evaporating which controls the release rate of the antibacterial and mold-proofing component to the inside of the air conditioner so that it becomes large at high humidity and small at low humidity.