The present disclosure relates to humidors and humidity-stabilizing devices for dried herbs.
Smoking materials (cigars, loose tobacco, and various dried herbs) must be kept at a consistent humidity level to maintain flavor, freshness, and potency. Without adequate humidity the materials will dry out; excessive humidity can cause mildew and/or mold.
Smoking materials require specific relative humidity (RH) levels. Cigars are normally kept at 65-75% RH. Dry, pre-rolled cigarette tobacco is best stored around 60% RH. Dried herbs are best stored at approximately 50%-65%. The most effective humidity-stabilization devices effect two-way humidity control, working as both humectant and desiccant. These devices prevent mildew and mold and maintain smoking materials within a proper RH range regardless of environmental humidity.
Silica gel is a granular, vitreous, porous form of silicon dioxide made synthetically from sodium silicate. Silica gel contains a nano-porous silica micro-structure suspended in a liquid. Silica gel beads, commonly used for removing moisture from packaging containers, may be calibrated with a coating of mineral salts to absorb or release humidity in various RH ranges, providing a buffering effect on relative humidity. This action referred to as two-way humidity control.
Silica gel beads commonly require distilled water for use in saturating the beads. Saturating beads is also referred to as charging the beads.
One skilled in the art understands that common two-way humidity maintenance devices for smoking materials are most commonly cigar-specific and, as such, maintain humidity levels that are too high for loose tobacco and dried herbs. Humidity-stabilizing devices designed to maintain ideal humidity levels for loose tobacco and dried herbs are either disposable or require maintenance of a humidor and use of distilled water.
Disclosed herein is a humidity-stabilizing device for converting a container into a humidor that is maintained using ordinary tap water. In some embodiments the container is a glass jar that is between a 4-oz and 32-oz size by volume.
In an example embodiment, a sealable container has two internal compartments that are separated by a moisture or vapor permeable barrier. One of the compartments contains humidity stabilization beads that are designed to maintain the surrounding environment between 45% and 70% relative humidity, otherwise referred to as the optimal RH level for the smoking materials and dried herbs. The other contains an absorbent material that absorbs a sufficient amount of water to properly charge the beads with a sufficient amount of moisture when the water evaporates from the absorbent material.
The device is configured to ensure physical separation between the absorbent material and the humidity stabilization beads by a vapor permeable barrier. This allows the beads to be charged by applying ordinary tap water to the absorbent material and then sealing the device. The beads are then rehydrated by evaporation of the water and transmission of evaporate through the moisture permeable barrier, thus charging the beads with evaporate. By this process, tap water may be used in lieu of distilled water that silica gel beads commonly require.
In some embodiments a means for affixing the apparatus to the inside of a container is provided, turning any jar with a metal lid into a humidor. In an example embodiment, a neodymium magnet is used to attach the apparatus to the inside of a jar lid, Neodymium magnets are particularly susceptible to corrosion, especially given the intentionally humid environment inside the apparatus and the salts contained in the beads. The apparatus uses a two-walled container, with the magnet inserted between the walls and therefore separated from the beads to prevent corrosion of the magnets.
Other objects and features will become apparent from the following detailed description considered in conjunction with the accompanying drawings. It is to be understood, however, that the drawings are designed as an illustration and not as a definition of the limits of the invention.
The following is a brief description of the drawings, which are presented for the purposes of illustrating the disclosure set forth herein and not for the purposes of limiting the same. Example embodiments of the present disclosure are further described with reference to the appended figures. It is to be noted that the various features and combinations of features described below and illustrated in the figures can be arranged and organized differently to result in embodiments which are still within the spirit and scope of the present disclosure. To assist those of ordinary skill in the art in making and using the disclosed systems, assemblies and methods, reference is made to the appended figures, wherein:
The example embodiments disclosed herein are illustrative of a humidity-stabilizing device for the purpose of creating an environment inside ajar, the jar having a metal lid. Referring to
Referring to
The illustration in
In some embodiments a spacer 138 resides between the bottom of the inner container 110 and the screen 126 to further support the screen 126. A number of humidity-stabilization beads 134 are dispersed inside the inner container 110 beneath the screen 126 and are thus held in place behind the screen 126 which is held, between the spacer 138 and the flange 136, with the O-ring 124.
Referring to
In use, the device is engaged by way of the magnet 130 with a ferrous metal jar lid 114 (
One skilled in the art understands that it is not beneficial to add ordinary tap water to humidity-stabilization beads, however evaporate is not harmful to humidity-stabilization beads. The embodiment provides for the use of ordinary tap water to humidify humidity-stabilization beads.
The illustration in
A number of humidity-stabilization beads 234 are dispersed inside the inner container 210 beneath the screen 226 and are thus held in place behind the screen 226 which is held, between the two O-rings 240 and 224.
Referring to
The present disclosure has been described with reference to example embodiments. Modifications and alterations will occur to others upon reading and understanding the preceding detailed description. It is intended that the present disclosure be construed as including all such modifications and alterations insofar as they come within the scope of the appended claims or the equivalents thereof.
Although the systems and methods of the present disclosure have been described with reference to example embodiments thereof, the present disclosure is not limited to such example embodiments and or implementations. Rather, the systems and methods of the present disclosure are susceptible to many implementations and applications, as will be readily apparent to persons skilled in the art from the disclosure hereof. The present disclosure expressly encompasses such modifications, enhancements and or variations of the disclosed embodiments. Since many changes could be made in the above construction and many widely different embodiments of this disclosure could be made without departing from the scope thereof, it is intended that all matter contained in the drawings and specification shall be interpreted as illustrative and not in a limiting sense. Additional modifications, changes, and substitutions are intended in the foregoing disclosure. Accordingly, it is appropriate that the appended claims be construed broadly and in a manner consistent with the scope of the disclosure.
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