System for Transporting Plant Clones
20190230869 ยท 2019-08-01
Inventors
Cpc classification
B65D81/052
PERFORMING OPERATIONS; TRANSPORTING
A01G9/0299
HUMAN NECESSITIES
A01G13/0243
HUMAN NECESSITIES
B65D81/22
PERFORMING OPERATIONS; TRANSPORTING
B65D85/52
PERFORMING OPERATIONS; TRANSPORTING
Y02W90/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B65D81/05
PERFORMING OPERATIONS; TRANSPORTING
B65D81/22
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention provides a system for transporting plant clones that have developed root systems outside solid cultivating media. The transporting system comprises stem collars that hold plant clones. The stem collars are made of biodegradable materials so that plant clones can be transplanted to the field with the collars. The plant clone transporting system also comprises a collar tray to hold stem collars and a portable tank to hold water or solid media that holds water, such as rockwool and perlite, to provide favorable conditions to the root systems of the plant clones, so they can survive a long transportation.
Claims
1. A system for transporting plant clones, comprising: a portable tank configured to hold liquid or moist plant growing media, the portable tank comprising a bottom and sidewalls; one or more stem collars for holding plant clones, each of the stem collars comprising a stem collar body and a hole cut through the thickness of the stem collar body for a stem of plant cutting to be inserted; and a collar tray configured to be fit on top of the portable tank, the collar tray comprising an essentially flat collar tray body and plurality of apertures in the collar tray body, the apertures configured for the stem collars to be inserted in.
2. The system for transporting plant clones in claim 1, wherein each of the stem collars further comprises a vertical slit cut through the thickness of the collar body, the vertical slit intersecting with the hole of the stem collar; and each of the stem collars is made of a material that is not completely rigid so that the vertical slit can be opened wider with mechanical force.
3. The system for transporting plant clones in claim 1, wherein the apertures in the collar tray are circular in shape; the stem collar body of each of the stem collars has an overall shape of a truncated cone having a top circular surface and a circular bottom surface; the diameter of the top circular surface of the stem collar body is greater than the diameter of the apertures in the collar tray; and the diameter of the top circular surface of the stem collar body is smaller than the diameter of the apertures in the collar tray.
4. The system for transporting plant clones in claim 1, wherein the stem collars are made of a bio-degradable material.
5. The system for transporting plant clones in claim 4, wherein the stem collars are made of cork.
6. The system for transporting plant clones in claim 1, wherein the tank further comprises one or more support columns extending vertically from the bottom of the tank, the support columns configured to bear some of the weight of the collar tray when the collar tray is placed on top of the tank.
7. The system for transporting plant clones in claim 1, wherein the bottom of the tank comprises a plurality of raised ridges to mechanically reinforce the tank without significantly adding weight and material.
8. The system for transporting plant clones in claim 1, wherein the tank is made of plastic.
9. The system for transporting plant clones in claim 1, wherein the collar tray further comprises a plurality of handles located on the periphery of the collar tray body.
10. The system for transporting plant clones in claim 1, wherein the collar tray further comprises a plurality of protrusion structures extending vertically under the collar tray body; the sidewalls of the tank comprises a plurality of indentations structures configured to match with the protrusion structures of the collar tray; and when the collar tray placed on top of the tank, the protrusion structures of the collar tray and fit into the indentations structures of the sidewalls of the tank, so that the coupling of the protrusion structures and the indentation structures prevent the collar tray from laterally sliding over the tank.
11. The system for transporting plant clones in claim 1, wherein the collar tray body further comprises a plurality of raised ridges to mechanically reinforce the collar tray without significantly adding weight and material.
12. The system for transporting plant clones in claim 1, wherein the collar tray is made of plastic.
13. A stem collar for holding a stem of plant cutting during cultivation or transportation of the plant cutting, comprising: a stem collar body having a shape of a truncated cone; a hole cut through the thickness of the stem collar body for a stem of plant cutting to be inserted; and a vertical slit cut through the thickness of the collar body, the vertical slit intersecting with the hole of the stem collar; wherein the stem collar is made of a material that is not completely rigid, so that the vertical slit can be opened wider with mechanical force.
14. The stem collar in claim 13, wherein stem collar is made of a bio-degradable material.
15. The stem collar in claim 14, wherein the stem collar is made of cork.
16. A collar tray for plant clone cultivation and transportation, the collar tray configured to be placed on top of a portable tank or fit in a plant clone cultivation apparatus, the collar tray comprising: an essentially flat collar tray body and plurality of circularly-shaped apertures in the collar tray body, the apertures configured for a plurality of stem collars to be inserted in; and a plurality of handles located on the periphery of the collar tray body.
17. The collar tray for plant clone cultivation and transportation in claim 16, wherein the collar tray body further comprises a plurality of raised ridges to mechanically reinforce the collar tray without significantly adding weight and material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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REFERENCE NUMERALS IN THE DRAWINGS
[0022] Reference is now made to the following components of embodiments of the present invention: [0023] 100 Plant clone transport system [0024] 110 Collar tray [0025] 112 Collar tray body [0026] 114 Collar receiving aperture [0027] 116 Collar tray handle [0028] 117 Handle protrusion [0029] 118 Collar tray raised ridge [0030] 150 Tank [0031] 151 Tank bottom [0032] 152 Tank sidewall [0033] 154 Support column [0034] 156 Tank sidewall indentation [0035] 158 Tank raised ridge [0036] 180 Stem collar [0037] 182 Stem collar body [0038] 184 Stem collar center hole [0039] 186 Stem collar slit [0040] 188 Stem collar top surface [0041] 189 Stem collar bottom surface
DETAILED DESCRIPTION OF THE INVENTION
[0042] In the detailed description, numerous specific details are set forth in order to provide a thorough understanding of the invention. However, it will be understood by those skilled in the art that these are specific embodiments, and that the present invention may be practiced also in different ways that embody the characterizing features of the invention as described and claimed herein.
[0043]
[0044] As shown in
[0045] As shown in
[0046] As shown in
[0047] An embodiment of the stem collar 180 is illustrated in
[0048] In general, the stem collar 180 is made of a material that is not completely rigid. The slit 186 can be opened up a little wider with mechanical force, as shown in
[0049] The foregoing description and accompanying drawings illustrate the principles, preferred or example embodiments, and modes of assembly and operation, of the invention; however, the invention is not, and shall not be construed as being exclusive or limited to the specific or particular embodiments set forth hereinabove.