Method and system for reduction of unwanted gases in indoor air

US10850224B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10850224-B2
Application numberUS-201815995787-A
CountryUS
Kind codeB2
Filing dateJun 1, 2018
Priority dateNov 15, 2012
Publication dateDec 1, 2020
Grant dateDec 1, 2020

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An air treatment system for at least partially removing at least one gaseous contaminant contained in indoor air of a room structured for human occupants. The system may comprise an air treatment assembly having an indoor air inlet configured to receive indoor airflow directly from a room, a regenerable adsorbent material configured to adsorb at least one gaseous contaminant contained in the indoor airflow, at least one airflow element for directing the indoor airflow to flow through the air treatment assembly, an indoor air outlet for expelling the indoor air, from the air treatment assembly back into the room, a purge air inlet configured to receive and direct purge air over and/or through the adsorbent material for removal of at least a portion of the at least one gaseous contaminant, and a purge air outlet for expelling the purge air out of the air treatment assembly.

First claim

Opening claim text (preview).

What is claimed is: 1. An indoor space gaseous contaminant removal unit comprising an air treatment assembly including: a housing configured for placement: within an indoor space, or, within or on an interior wall, window or interior ceiling, of the indoor space; an indoor air inlet arranged on the housing so as to be directly exposed to the indoor space and configured to receive an indoor airflow directly from the indoor space without aid from a duct or conduit; a regenerable adsorbent material configured during an adsorption cycle to adsorb at least one gaseous contaminant contained in the indoor airflow; an airflow element for directing the indoor airflow received from the indoor space to the regenerable adsorbent material; an indoor air outlet arranged on the housing so as to be directly exposed to the indoor space and configured to expel the indoor airflow treated by the adsorbent material back into the indoor space without aid from a duct or conduit; a purge air outlet for expelling a purge air out of the air treatment assembly after a purging airflow flows over and/or through the adsorbent material to remove at least a portion of the at least one gaseous contaminant adsorbed by the adsorbent material, and a controller having computer instructions operating thereon, wherein: the computer instructions are configured to cause the controller to adjust at least one of the indoor air inlet, the airflow element, and the indoor air outlet so as to reduce a concentration of the gaseous contaminant in the indoor air of the indoor space. 2. The unit of claim 1 , wherein the air treatment assembly is further configured to reduce the concentration of the gaseous contaminant in the indoor air below a predetermined concentration upon outdoor air ventilation of the indoor space being insufficient for maintaining the at least one gaseous contaminant concentration below the predetermined concentration. 3. The unit of claim 1 , wherein the unit is used in conjunction with an independent air conditioning system and including components for circulating the indoor air, the air conditioning system configured to condition the indoor air including changing temperature and/or humidity of the indoor air. 4. The unit of claim 2 , wherein the gaseous contaminant is carbon dioxide and the predetermined concentration is less than about 2500 ppm. 5. The unit of claim 1 , further comprising one or more sensors for measuring the concentration of the at least one gaseous contaminant and/or detecting a presence of the at least one gaseous contaminant, wherein the one or more sensors are configured to: generate a signal corresponding to the concentration of the at least one gaseous contaminant and/or the presence of the at least one gaseous contaminant, and transmit the signal to the controller configured to control operation of the air treatment assembly. 6. The unit of claim 1 , wherein the airflow element comprises at least one of a fan, a blower, a damper, and a shutter. 7. The unit of claim 1 , wherein the unit includes one or more wheels and/or castors for transport. 8. The unit of claim 1 , wherein the at least one gaseous contaminant is selected from the group consisting of: carbon dioxide, volatile organic compounds, sulfur oxides, radon, nitrous oxides and carbon monoxide. 9. The unit of claim 1 , wherein the adsorbent material comprises at least one of: activated carbon, carbon particles, solid supported amine, molecular sieves, porous silica, porous alumina, carbon fibers, metal organic frameworks, porous polymers and polymer fibers. 10. The unit of claim 1 , further comprising at least one cartridge wherein the adsorbent material is arranged therein, the air treatment assembly configured to provide access to the cartridge while the air treatment assembly remains stationary. 11. The unit of claim 1 , wherein the removal of the at least one gaseous contaminant adsorbed by the adsorbent material regenerates the adsorbent material and is performed in-situ the adsorbent material without removing the adsorbent material from the air treatment system. 12. The unit of claim 1 , wherein the computer instructions are configured to cause the controller to adjust at least one of the indoor air inlet, the airflow element, and the indoor air outlet so as to reduce a concentration of the gaseous contaminant in the indoor air of the indoor space below a predetermined concentration according to a schedule without access to outdoor air. 13. An indoor space gaseous contaminant removal unit comprising an air treatment assembly including: a housing configured for placement: within an indoor space, or, within or on an interior wall, window or interior ceiling, of the indoor space; an indoor air inlet arranged on the housing so as to be directly exposed to the indoor space and configured to receive an indoor airflow directly from the indoor space without aid from a duct or conduit; a regenerable adsorbent material configured during an adsorption cycle to adsorb at least one gaseous contaminant contained in the indoor airflow; an airflow element for directing the indoor airflow received from the indoor space to the regenerable adsorbent material; an indoor air outlet arranged on the housing so as to be directly exposed to the indoor space and configured to expel the indoor airflow treated by the adsorbent material back into the indoor space without aid from a duct or conduit; a purge air outlet for expelling a purge air out of the air treatment assembly after a purging airflow flows over and/or through the adsorbent material to remove at least a portion of the at least one gaseous contaminant adsorbed by the adsorbent material, and a controller having computer instructions operating thereon.

Assignees

Inventors

Classifications

  • Alumina · CPC title

  • B01D53/04Primary

    with stationary adsorbents {(B01D53/025 takes precedence)} · CPC title

  • Sulfur oxides · CPC title

  • Polymeric adsorbents · CPC title

  • Controlling adsorption (controlling temperature swing adsorption B01D53/0462, controlling pressure swing adsorption B01D53/047) · CPC title

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What does patent US10850224B2 cover?
An air treatment system for at least partially removing at least one gaseous contaminant contained in indoor air of a room structured for human occupants. The system may comprise an air treatment assembly having an indoor air inlet configured to receive indoor airflow directly from a room, a regenerable adsorbent material configured to adsorb at least one gaseous contaminant contained in the in…
Who is the assignee on this patent?
Enverid Systems Inc
What technology area does this patent fall under?
Primary CPC classification B01D53/04. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Dec 01 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).