MOISTURE REMOVAL APPARATUS AND METHOD
In one embodiment, a moisture removal apparatus is provided. The apparatus includes a housing having a top and bottom surface, an outer side wall surrounding a drying zone, the drying zone for receiving a moisture-absorbent material. The moisture absorbent material may include a hygroscopic material, in one non-limiting embodiment. The apparatus may further include a fluid path in fluid communication with at least a portion of the bottom surface and the drying zone, and a movable lid portion for disposal over the drying zone. When the lid is disposed over the drying zone, access to the drying zone occurs via the fluid path from the bottom surface of the housing, such that fluid enters the housing from beneath the housing through the fluid path and is received in the drying zone, wherein moisture is absorbed.
Many different types of moisture removal devices and agents are used to remove moisture. These devices typically include a structure wherein moisture can enter the device from a top surface of the device having openings in its top surface. These devices suffer from difficulty of maintaining dryness of the moisture-absorbing agent, and of the interior of the container. Some devices are awkward in shape and in size, are difficult to transport, and inefficient to store, as most devices take up a substantial amount of space.
SUMMARYIn one embodiment, a moisture removal apparatus is provided. The apparatus includes a housing having a top and bottom surface, an outer side wall surrounding a drying zone, the drying zone for receiving a moisture-absorbent material. The moisture absorbent material may include a hygroscopic material, in one particular non-limiting embodiment. The apparatus may further include a fluid path in fluid communication with at least a portion of the bottom surface and the drying zone, and a movable lid portion for disposal over the drying zone. When the lid is disposed over the drying zone, access to the drying zone occurs via the fluid path from the bottom surface of the housing, such that fluid enters the housing from beneath the housing through the fluid path and is received in the drying zone, wherein moisture is absorbed. In one non-limiting embodiment, the apparatus is used to remove moisture from the air as it passes through the apparatus. The hygroscopic material removes moisture from the air that is received there within.
In another embodiment, a method for removing moisture from an environment is provided including circulating air from the environment through a fluid path extending from a bottom surface of an apparatus for receiving air to a drying zone within the apparatus, wherein the drying zone comprises a material or agent for absorbing moisture.
A more particular description of the invention briefly described above will be rendered by reference to specific embodiments thereof that are illustrated in the appended drawings. Understanding that these drawings depict only typical embodiments of the invention and are not therefore to be considered limiting of its scope, the invention will be described and explained with additional specificity and detail through the use of the accompanying drawings in which:
A common issue associated with most moisture removal devices is that they are large, difficult to store, take up significant space, and their drying capability is often compromised easily due to the structural features, and the placement of the openings for supplying air through the device.
In accordance with one aspect of the present invention, a moisture removal apparatus is provided allowing fluid to enter the apparatus from beneath the housing, to allow for use in an environment where splashing or other debris may fall onto the top surface of the apparatus, such as on a watercraft, for example. The apparatus may include, in an embodiment, a housing having a top and bottom surface, an outer side wall surrounding a drying zone, the drying zone for receiving a moisture-absorbent material. In a non-limiting embodiment, the drying zone may retain a moisture-absorbent material. The drying zone may be accessible from beneath the housing. The moisture absorbent material may include a hygroscopic material or agent, in one particular, non-limiting embodiment. The apparatus may further include a fluid path in fluid communication with the drying zone, and a movable lid portion for disposal over the drying zone. When the lid is disposed over the drying zone, access to the drying zone occurs via the fluid path from the bottom surface of the housing, such that fluid enters the housing from beneath the housing through the fluid path and is received in the drying zone, wherein moisture is absorbed. In one non-limiting embodiment, the apparatus is used to remove moisture from the air as it passes through the apparatus. In another embodiment, the hygroscopic material removes moisture from the air that comes in contact therewith.
In one embodiment, the hygroscopic material or agent may include any agent used to draw moisture from the air that comes in contact with the material. In some specific, but non-limiting embodiments, the hygroscopic material may include sodium bicarbonate, i.e. baking soda, sodium chloride, honey, glycerin, ethanol, methanol, concentrated sulfuric acid, among others generally known in the art. Hygroscopic agents or material typically attract and hold fluid molecules from the environment surrounding, via absorption or adsorption. In some non-limiting embodiments herein, the terms “hygroscopic material” and “hygroscopic agent” may be used interchangeably.
In practicing the invention, those skilled in art would appreciate that the fluid that is communicated between areas of the device would typically be water vapor, air, or air having a moisture conent. While water in liquid form could flow via fluid communication, the device is not intended to be submerged in water in liquid form.
In one embodiment, the invention pertains to a moisture removal apparatus.
In a more specific embodiment, the invention includes a moisture removal apparatus comprising a lid, wherein the apparatus is configured to store items thereon, while also removing moisture from an environment. In one particular, nonlimiting embodiment, the dimensions of the housing include a housing wherein the height is smaller than the length and/or width, serving to increase the surface area of the apparatus and enhance the drying capability of the apparatus, while preventing further obstruction to the area in which the apparatus is stored due to the low profile of the apparatus. In a further non-limiting embodiment, multiple apparatuses of those described herein may be associated with one another or physically attached to one another in another, more specific embodiment, so as to provide an extended area for moisture absorption.
Turning to the drawings,
In some non-limiting embodiments, as shown in
In some non-limiting embodiments, the apparatus 100 may be used to remove moisture from the air in a closet, on watercraft, or in other areas where space is limited. Due to its dimensions, the increased surface area of the housing, and in particular, of the drying wells 118 provides an efficient moisture removal apparatus, while maintaining an unobtrusive size and shape. In one embodiment, the apparatus 100 may be structured such that when the lid portion 110 is placed on the housing 112, other objects may be stacked on top of the apparatus. Another benefit of the apparatus 100 embodiments described herein is that fluid flow occurs from beneath the housing 112, so when in use, if for example, water splashes on top of the apparatus (i.e., when the apparatus is used on a watercraft, for example), the apparatus will continue to function due to the openings being accessible from the bottom surface of the housing.
The dimensions of the apparatus embodiments described herein may vary; however, in one non-limiting embodiment, a length of the housing may include a range of 2-25 inches. In another embodiment, a width of the housing may include a range of 2-25 inches. In a non-limiting embodiment, a height of the housing may include a range of 0.5-24 inches.
The disclosures of the cited patent documents, publications and references are incorporated herein in their entirety to the extent not inconsistent with the teachings herein. It should be understood that the examples and embodiments described herein are for illustrative purposes only and that various modifications or changes in light thereof will be suggested to persons skilled in the art and are to be included within the spirit and purview of this application and the scope of the appended claims
Claims
1. A moisture removal apparatus, comprising:
- a housing comprising a top surface, a bottom surface, and an outer side wall surrounding a drying zone, the drying zone for receiving a moisture-absorbent material;
- a fluid path in fluid communication with at least a portion of the bottom surface and the drying zone; and
- a movable lid portion for disposal over the drying zone, wherein when the lid is disposed over the drying zone, access to the drying zone occurs via the fluid path from the bottom surface of the housing.
2. The moisture removal apparatus of claim 1, wherein the drying zone comprises one or more drying wells.
3. The moisture removal apparatus of claim 1, further comprising one or more legs extending from the bottom surface.
4. The moisture removal apparatus of claim 3, further comprising an inner side wall surrounding each of the one or more drying wells.
5. The moisture removal apparatus of claim 4, wherein a gap is disposed between the inner side wall and outer side wall.
6. The moisture removal apparatus of claim 5, wherein the fluid conduit comprises one or more access portals disposed along the bottom surface that are in fluid communication with the gap.
7. The moisture removal apparatus of claim 1, wherein the outer side wall defines a perimeter of the housing.
8. The moisture removal apparatus of claim 4, further comprising one or more spacers extending between the inner side wall and the outer side wall.
9. The moisture removal apparatus of claim 2, wherein the drying zone comprises two or more drying wells, and wherein a portion of the outer wall extends between the two or more drying wells.
10. The moisture removal apparatus of claim 4, wherein the inner side wall comprises a first height and the outer side wall comprises a second height, wherein the first height is less than the second height.
11. The moisture removal apparatus of claim 1, wherein a length and/or width of the housing is at least twice the height of the housing.
12. The moisture removal apparatus of claim 1, wherein a length of the housing comprises a range of 2-15 inches.
13. The moisture removal apparatus of claim 1, wherein a width of the housing comprises a range of 2-15 inches.
14. The moisture removal apparatus of claim 1, wherein a height of the housing comprises a range of 0.5 inch-24 inches.
15. The moisture removal apparatus of claim 2, wherein a moisture absorbing material is disposed in one or more of the one or more drying wells.
16. A method for removing moisture from an environment, the method comprising:
- circulating air from the environment through a fluid path extending from a bottom surface of an apparatus for receiving air to a drying zone within the apparatus, wherein the drying zone comprises a material for absorbing moisture.
17. A moisture removal apparatus, comprising:
- a housing comprising a top surface, a bottom surface, an outer side wall surrounding a drying zone, and an inner side wall, the drying zone comprising one or more drying wells for receiving a moisture-absorbent material;
- a fluid path in fluid communication with a portion of the bottom surface and the drying well(s), the fluid path disposed between the outer side wall and inner side wall;
- a movable lid portion for disposal over the drying zone, wherein when the lid is disposed over the drying zone, access to the drying wells occurs via the fluid path from a bottom surface of the housing, such that moisture is absorbed from fluid as it enters the drying zone.
18. The moisture removal apparatus of claim 4, wherein the inner side wall comprises one or more apertures, and wherein the fluid path is in fluid communication with a portion of the bottom surface and the drying zone via the one or more apertures in the inner side wall.
19. The moisture removal apparatus of claim 17, wherein the inner side wall comprises one or more apertures, and wherein a fluid path is in fluid communication with the drying wells via the one or more apertures.
Type: Application
Filed: Feb 5, 2018
Publication Date: Aug 8, 2019
Inventor: Arman Hedayat (Windermere, FL)
Application Number: 15/888,649