REPLACEABLE HVAC FILTER
20210322916 · 2021-10-21
Inventors
Cpc classification
B01D46/10
PERFORMING OPERATIONS; TRANSPORTING
B01D46/4227
PERFORMING OPERATIONS; TRANSPORTING
B01D46/0005
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D46/42
PERFORMING OPERATIONS; TRANSPORTING
B01D46/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A device is adapted for facilitating the removal and replacement of standardized HVAC vent system filters for primarily return air flow where contaminants are caught in the filter. The device includes a substantially rigid frame defining the perimeter of the filter, a designated location of the frame for attaching a removal device and an elongated tool for engaging the removal device for facilitating removal of the filter. The filter system may include a filter substrate mounted in the frame and containing one or more active ingredients to further improve the filter function.
Claims
1.-18. (canceled)
19. A heating, ventilation, and air conditioning (“HVAC”) vent system filter, comprising: a frame; a filter substrate secured to the frame, wherein the filter substrate comprises a passive media; and an active media, wherein the active media comprises at least two active ingredients, and wherein the active media improves function of the HVAC vent system filter.
20. The HVAC vent system filter of claim 19, wherein the active media is arranged in or on the passive media.
21. The HVAC vent system filter of claim 19, further comprising a separate filter substrate secured to the frame, the separate filter substrate comprising the active media.
22. The HVAC vent system filter of claim 21, wherein the separate filter substrate is arranged in parallel juxtaposition with the filter substrate.
23. The HVAC vent system filter of claim 19, wherein the at least two active ingredients are activated charcoal and a microporous mineral.
24. The HVAC vent system filter of claim 23, wherein the microporous mineral is capable of ion exchange.
25. The HVAC vent system filter of claim 24, wherein the microporous mineral is zeolite.
26. The HVAC vent system filter of claim 19, further comprising a removal device.
27. The HVAC vent system filter of claim 26, wherein the removal device is integral with the frame.
28. The HVAC vent system filter of claim 26, wherein the removal device is an elongated tool for facilitating removal of the HVAC vent system filter, wherein the removal device is attached to a designated location of the frame.
29. The device of claim 28, wherein the elongated tool is removably attached to the frame.
30. The device of claim 29, wherein the elongated tool is a perforated tab formed in the frame with one end releasably secured to the frame and the other end permanently secured to the frame.
31. The device of claim 30, wherein the elongated tool is an integral part of the frame.
32. The device of claim 30, wherein the elongated tool is mounted directly on the frame.
33. The device of claim 32, wherein the elongated tool includes a wing tab for further facilitating the removal of the HVAC vent system filter.
34. The device of claim 33, wherein the wing tab is integral to the elongated tool.
35. The device of claim 26, wherein the removal device is an elongated tool for facilitating removal of the HVAC vent system filter, wherein the elongated tool is separate from the HVAC vent system filter and the elongated tool includes an adhesive assembly, the adhesive assembly comprising an adhesive tip and a mated adhesive tip located on the frame.
36. The device of claim 35, wherein the adhesive assembly is a hook and loop fastener.
37. The device of claim 19, wherein the active ingredient is in at least one layer placed in overlying relationship with the filter substrate.
38. The device of claim 19, wherein the active ingredient is in multiple layers, wherein the multiple layers are in overlying relationship with the filter substrate, each layer of the multiple layers including a separate active ingredient.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The components in the drawings are not necessarily to scale relative to each other. Like reference numerals designate corresponding parts throughout the several views.
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DETAILED DESCRIPTION
[0026] The subject invention is shown in two parts, (1) the inclusion of active material in the media grid(s) and (2) the inclusion of a removal tool. Parts (1) and (2) may be used together or separately.
[0027] Turning first to part (1), a typical removable, disposable filter 20 is shown in
[0028] As described above, the disposable filter 20 can include an active media 26. In some implementations, the active media 26 includes a microporous mineral (i.e., an active ingredient). A microporous mineral has a structure that accommodates ions (e.g., anions or cations), which makes the material useful in HVAC filtration applications. An example microporous mineral is zeolite. Example zeolites include, but are not limited to, analcime, chabazite, clinoptilolite, heulandite, natrolite, phillipsite, and stilbite. It should be understood that zeolites are naturally occurring minerals and can also be synthesized artificially. Zeolites accommodate a variety of cations (i.e., positively-charged ions) such as Na.sup.+, K.sup.+, Ca.sup.2+, Mg.sup.2+, etc., which can be exchanged for negatively-charged substances in the air. For example, zeolites can attract viruses or bacteria with negative charge in the air such that the viruses or bacteria get trapped in the disposable filter 20. In some implementations, the active media 26 includes a plurality of active ingredients, e.g., activated charcoal and a microporous mineral such as zeolite. Optionally, the microporous mineral is ground into a fine powder and mixed with the activated charcoal.
[0029] As shown in
[0030] Part (2) of the application is shown in
[0031] As shown in
[0032] As shown in
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[0035] While certain features and embodiments of the invention have been described in detail herein, it should be understood that the invention encompasses all modifications and enhancements within the scope and spirit of the following claims.