B01D53/8675

Flow sensing ozone converter

A flow sensing ozone converter includes an inlet housing, an outlet housing, and a central housing. The inlet housing defines a first pressure port. The outlet housing defines a second pressure port. The central housing extends between a second end of the inlet housing and a first end of the outlet housing.

High efficiency ultra-violet reactor
10449265 · 2019-10-22 · ·

A high efficiency ultra-violet air purification system is disclosed. The system includes an apparatus for purifying air. The apparatus includes a chamber having a hollow interior and having an inlet and an outlet, the chamber having an inner reflective surface. The apparatus further includes an ultraviolet (UV) light source mounted within the hollow interior of the chamber between the inlet and the outlet. The apparatus further includes a honeycomb structure mounted to each of the inlet and the outlet of the UV chamber, the honeycomb structure having an array of hexagonal passages that are orthogonal to the inner reflective surface of the chamber, each hexagonal passage being at least partly coated with a UV catalyst and a UV light absorption coating.

Air filter assembly
10442690 · 2019-10-15 · ·

A compact lightweight air filtration system is disclosed. The air filtration system includes a hydrophobic particulate/coalescing filter and a cleanable ozone converter housed in a housing with an inlet and an outlet. Air flowing from the inlet to the outlet passes through the particulate/coalescing filter element and then the cleanable ozone converter to remove particulates, aerosols, liquids, and ozone.

Simple application of surface coating based on a formulation containing additive to remove air pollutants.
20190308138 · 2019-10-10 ·

Simple application of surface coating based on a formulation containing additive to remove air pollutants is disclosed. This improved surface wash, surface coating, windscreen wash, windscreen coating, is applied as a surface coating, wash or treatment to automotive vehicles, during regular periodic intervals, wherein vehicle is washed, and surface coating applied and also applied as window wash as needed. And as such method is very well distributed geographically. This invention avoids complexities involved in operation of existing methods, where heavy, expensive equipment and complex operation is prevalent. The invention is simple enough such that human error is effectively avoided.

GAS PROCESSING APPARATUS
20190282722 · 2019-09-19 · ·

A gas processing apparatus of an embodiment includes a gas processing unit, a flow forming unit, an AC power supply, and first and second filters. The gas processing unit includes a plurality of stacks each having a dielectric substrate, a first to a third electrode. The flow forming unit forms a flow of a target gas flowing toward the gas processing unit. The AC power supply applies an AC voltage across the first, second electrodes and the third electrode so as to generate plasma induced flows of the target gas between the dielectric substrates. The first filter is disposed at an upstream of the gas processing unit, and removes ozone. The second filter is disposed at a downstream of the gas processing unit, and removes ozone.

Air ionization systems and components

Ionization systems configured with a catalyst-bearing sleeve provide improved filtration while filtering ozone. Modular configurations provide for serviceability and replaceability. System controls may be used to monitor particulates, temperature, humidity, and other relevant factors and adjust an ionization level accordingly.

HIGH POROSITY METAL OXIDE CATALYST COATINGS

Disclosed in certain implementations is a catalysis composition that includes a metal catalyst and a support material impregnated with the metal catalyst.

CATALYTIC OZONE REMOVAL

A method is disclosed for removing ozone from a gas. According to this method, the gas is contacted with an adsorbent that includes a transition metal oxide or metal organic framework to form a treated gas. The treated gas is contacted with a noble metal catalyst to catalytically decompose ozone in the treated gas, thereby forming an ozone-depleted treated gas.

AIR TREATMENT SYSTEM AND METHOD OF USE

A built-in apparatus and method for treating air including a housing with an air inlet and an air outlet. An air mover positioned near the air outlet is configured to draw the air through the air inlet. The housing encloses an air treatment zone, such as including an oxidizing zone, and an ozone removal zone positioned downstream of the air treatment zone and oxidizing zone. The air treatment zone includes UV light and/or ozone that partially oxidizes the chemical contaminants in the air treatment zone. A catalyst in the oxidizing zone oxidizes elements within the air treatment zone. The ozone removal zone includes a second, different catalyst material. A UV bulb that may or may not generate ozone is positioned within or downstream of the first and/or second catalyst materials to assist catalyst oxidation and/or self-clean the apparatus.

AIR TREATMENT METHOD

A built-in apparatus and method for treating air including a housing with an air inlet and an air outlet. An air mover positioned near the air outlet is configured to draw the air through the air inlet. The housing encloses an air treatment zone, such as including an oxidizing zone, and an ozone removal zone positioned downstream of the air treatment zone and oxidizing zone. The air treatment zone includes UV light and/or ozone that partially oxidizes the chemical contaminants in the air treatment zone. A catalyst in the oxidizing zone oxidizes elements within the air treatment zone. The ozone removal zone includes a second, different catalyst material. A UV bulb that may or may not generate ozone is positioned within or downstream of the first and/or second catalyst materials to assist catalyst oxidation and/or self-clean the apparatus.