Composition for a Plant Growth Additive
20220174955 · 2022-06-09
Inventors
Cpc classification
A01N37/36
HUMAN NECESSITIES
A01N43/90
HUMAN NECESSITIES
A01N37/02
HUMAN NECESSITIES
A01N37/36
HUMAN NECESSITIES
A01N25/04
HUMAN NECESSITIES
A01N25/04
HUMAN NECESSITIES
International classification
A01N37/02
HUMAN NECESSITIES
A01N43/90
HUMAN NECESSITIES
Abstract
A composition for a plant growth additive that stimulates growth and promotes maximum nutrient absorption. The composition includes a quantity of vitamin B1, a quantity of vitamin B2, a quantity of vitamin C, a quantity of citric acid, a quantity of boron, a quantity of molybdenum, a quantity of potassium, and a quantity of hydrated silica that are homogeneously mixed into a growth-stimulant composition. The composition may be mixed with at least one supplemental growth ingredient such as a quantity of beeswax extract. In order to for the growth-stimulant composition to be safer when applied to a plant, a nutrient solution may further include a quantity of solute and a quantity of solvent, with the growth-stimulant composition as the quantity of solute and a quantity of water as the quantity of solvent. The composition may further be mixed with at least one macro-nutrient ingredient and at least one pH-adjusting ingredient.
Claims
1. A composition for a plant growth additive comprising: a first quantity of vitamin B1; a first quantity of vitamin B2; a first quantity of vitamin C; a first quantity of citric acid; a quantity of boron; a quantity of molybdenum; a quantity of potassium; a quantity of hydrated silica; and, the first quantity of vitamin B1, the first quantity of vitamin B2, the first quantity of vitamin C, the first quantity of citric acid, the quantity of boron, the quantity of molybdenum, the quantity of potassium, and the quantity of hydrated silica being homogeneously mixed into a growth-stimulant composition.
2. The composition for a plant growth additive as claimed in claim 1, wherein the first quantity of vitamin B1 is approximately between 0.5 to 2 percentage by weight (wt. %) of the growth-stimulant composition.
3. The composition for a plant growth additive as claimed in claim 1, wherein the first quantity of vitamin B2 is approximately between 0.1 to 2 wt. % of the growth-stimulant composition.
4. The composition for a plant growth additive as claimed in claim 1, wherein the first quantity of vitamin C is approximately between 0.5 to 4 wt. % of the growth-stimulant composition.
5. The composition for a plant growth additive as claimed in claim 1, wherein the first quantity of citric acid is approximately between 0.1 to 4 wt. % of the growth-stimulant composition.
6. The composition for a plant growth additive as claimed in claim 1, wherein the quantity of boron is approximately between 0.001 to 0.3 wt. % of the growth-stimulant composition.
7. The composition for a plant growth additive as claimed in claim 1, wherein the quantity of molybdenum is approximately between 0.0001 to 0.02 wt. % of the growth-stimulant composition.
8. The composition for a plant growth additive as claimed in claim 1, wherein the quantity of potassium is approximately between 0.1 to 3 wt. % of the growth-stimulant composition.
9. The composition for a plant growth additive as claimed in claim 1, wherein the quantity of hydrated silica is approximately between 0.2 to 5 wt. % of the growth-stimulant composition.
10. The composition for a plant growth additive as claimed in claim 1: a quantity of beeswax extract; and, the quantity of beeswax extract being heterogeneously mixed into the growth-stimulant composition.
11. The composition for a plant growth additive as claimed in claim 10: the quantity of beeswax extract being approximately between 0.1 to 3 wt. % of the growth-stimulant composition.
12. The composition for a plant growth additive as claimed in claim 1: a second quantity of vitamin B1; and, the second quantity of vitamin B1 being heterogeneously mixed into the growth-stimulant composition.
13. The composition for a plant growth additive as claimed in claim 13: the second quantity of vitamin B1 being approximately between 0.5 to 2 wt. % of the growth-stimulant composition.
14. The composition for a plant growth additive as claimed in claim 1: a second quantity of vitamin B2; and, the second quantity of vitamin B2 being heterogeneously mixed into the growth-stimulant composition.
15. The composition for a plant growth additive as claimed in claim 14: the second quantity of vitamin B2 being approximately between 0.1 to 1 wt. % of the growth-stimulant composition.
16. The composition for a plant growth additive as claimed in claim 1: a second quantity of vitamin C; and, the second quantity of vitamin C being heterogeneously mixed into the growth-stimulant composition.
17. The composition for a plant growth additive as claimed in claim 17: the second quantity of vitamin C being approximately between 0.227 to 4 wt. % of the growth-stimulant composition.
18. The composition for a plant growth additive as claimed in claim 1: a second quantity of citric acid; and, the second quantity of citric acid being heterogeneously mixed into the growth-stimulant composition.
19. The composition for a plant growth additive as claimed in claim 18: the second quantity of citric acid being approximately between 0.2 to 5 wt. % of the growth-stimulant composition.
20. The composition for a plant growth additive as claimed in claim 1, wherein a nutrient solution comprises a quantity of solute and a quantity of solvent, and wherein the quantity of solute is the growth-stimulant composition, and wherein the quantity of solvent is a quantity of water.
21. The composition for a plant growth additive as claimed in claim 20, wherein the quantity of solute is approximately between 0.26 to 0.79 wt. % of the quantity of nutrient solution.
22. The composition for a plant growth additive as claimed in claim 20, wherein the quantity of solute is approximately between 0.79 to 4 wt. % of the quantity of nutrient solution.
23. The composition for a plant growth additive as claimed in claim 20, wherein the quantity of solute is approximately between 2.6 to 5.3 wt. % of the quantity of nutrient solution.
24. The composition for a plant growth additive as claimed in claim 1: at least one macro-nutrient ingredient; and, the at least one macro-nutrient ingredient being heterogeneously mixed into the growth-stimulant composition.
25. The composition for a plant growth additive as claimed in claim 24 wherein the at least one macro-nutrient ingredient is a group consisting of: a quantity of nitrogen, a quantity of potassium, a quantity of phosphorous, and a combination thereof.
26. The composition for a plant growth additive as claimed in claim 24, wherein the at least one macro-nutrient ingredient is approximately between 0.5 to 20 wt. % of the growth-stimulant composition.
27. The composition for a plant growth additive as claimed in claim 1: at least one pH-adjusting ingredient; and, the at least one pH-adjusting ingredient being heterogeneously mixed into the growth-stimulant composition.
28. The composition for a plant growth additive as claimed in claim 27, wherein the at least one pH-adjusting ingredient is a group consisting of: a quantity of potassium hydroxide, a quantity of phosphoric acid, and combinations thereof.
29. The composition for a plant growth additive as claimed in claim 27, wherein the at least one pH-adjusting ingredient is configured to adjust a pH level of the growth-stimulant composition between 5.6 to 6.4.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAIL DESCRIPTIONS OF THE INVENTION
[0020] All illustrations of the drawings are for the purpose of describing selected versions of the present invention and are not intended to limit the scope of the present invention.
[0021] The present invention is a composition for a plant growth additive that aids seed inoculation and germination, vegetative growth, and flower phase growth. The present invention promotes plant growth to maximize the health of the plant as well as the production of terpenes, other secondary metabolites, and cannabinoids. Moreover, plant development is regulated by complex interactions that are controlled by exposure to light, water, and nutrients. Furthermore, plant development is important in indoor growth environments that characterize much of Cannabis production. In order for the present invention to target growth factors that maximizes secondary metabolism, the present invention comprises a first quantity of vitamin B1, a first quantity of vitamin B2, a first quantity of vitamin C, a first quantity of citric acid, a quantity of boron, a quantity of molybdenum, a quantity of potassium, and a quantity of hydrated silica, seen in
[0022] The first quantity of vitamin B1, the first quantity of vitamin B2, the first quantity of vitamin C, the first quantity of citric acid, the quantity of boron, the quantity of molybdenum, the quantity of potassium, and the quantity of hydrated silica are homogenously mixed into a growth-stimulant composition, also seen in
[0023] In order to optimize potential growth of the structure of the plant, the flowers of the plant, and the resulting secondary metabolites, such as terpenes and cannabinoids, the aforementioned compositional components are mixed at specific preferred ratios. Thus, the first quantity of vitamin B1 is approximately 0.5 to 2 percentage by weight (wt. %) of the growth-stimulant composition. Furthermore, the first quantity of vitamin B2 is approximately 0.1 to 2 wt. % of the growth-stimulant composition. Furthermore, the quantity of vitamin C is approximately 0.5 to 4 wt. % of the growth-stimulant composition. Furthermore, the first quantity of citric acid is approximately 0.1 to 4 wt. % of the growth-stimulant composition. Furthermore, the quantity of boron is approximately 0.001 to 0.3 wt. % of the growth-stimulant composition. Furthermore, the quantity of molybdenum is approximately 0.0001 to 0.02 wt. % of the growth-stimulant composition. Furthermore, the quantity of potassium is approximately 0.1 to 3 wt. % of the growth-stimulant composition. Furthermore, the quantity of hydrated silica is approximately 0.2 to 5 wt. % of the growth-stimulant composition.
[0024] The present invention may further comprise a quantity of beeswax extract, seen in
[0025] The present invention may further comprise a second quantity of vitamin B1, seen in
[0026] The present invention may further comprise a second quantity of vitamin B2, seen in
[0027] The present invention may further comprise a second quantity of vitamin C, seen in
[0028] The present invention may further comprise a second quantity of citric acid, seen in
[0029] In order to apply the growth-stimulant composition to a plant, a nutrient solution comprises a quantity of solute and a quantity of solvent, seen in
[0030] In order to supplement plant nutrition, the present invention may further comprise at least one macro-nutrient ingredient, seen in
[0031] In order to increase nutrient absorption, the present invention may further comprise at least one pH-adjusting ingredient, seen in
[0032] The preferred method of manufacturing utilizes a micro-emulsion process in order to create submicron-sized droplets. The method begins by pouring 500 grams of the quantity of water into a three-neck flask. Then, turn on a propylene glycol coolant of a reflux condenser to return vapor to the three-neck flask. Heat the quantity of water at a temperature of approximately between 80 to 100 degrees Fahrenheit. Agitate the quantity of water with a stirrer, preferably a paddle-like stirrer. In order to eliminate side reactions, supply nitrogen into the three-neck flask at a low pressure of approximately between 5 to 10 pounds per square inch (PSI). In order to produce the quantity of hydrated silica, a quantity of potassium silicate is added slowly to the quantity of water in order to maintain temperature for a specified time range of 15 minutes. The quantity of potassium silicate is preferably 40 grams or 4 wt. % of the growth-stimulant composition. The first quantity of vitamin C and the first quantity of citric acid are then added into the three-neck flask to form a first mixture. A second mixture is formed once the first mixture is then heated to a temperature of 120 degrees Fahrenheit for a time range of 40 minutes, and quantity of hydrated silica is formed. This second mixture is cooled to a temperature of 80 degrees Fahrenheit. The first quantity of vitamin B1 is then added to the second mixture and mixed for a time range of 10 minutes. The first quantity of vitamin B2 is then added and mixed for a time range of 15 minutes. The quantity of molybdenum is then added and mixed for a time range of 15 minutes. Then, the quantity of boron is added and mixed for a time range of 45 minutes for the growth-stimulant composition. The growth-stimulant composition is then filtered through a filter, preferably a 0.1-micron filter. The growth-stimulant composition should be stored at a temperature range of approximately between 50 to 110 degrees Fahrenheit. Furthermore, the growth-stimulant composition is stable for a minimum of 24 months, and with mixing up to 48 months.
[0033] In the preferred embodiment of the present invention, the quantity of beeswax extract, the second quantity of vitamin B1, the second quantity of vitamin B2, the second quantity of vitamin C, and the second quantity of citric acid may each be added after the quantity of boron is added and before the growth-stimulant composition is mixed for a time range of 45 minutes. The at least one macro-nutrient ingredient may then be added after the growth-stimulant composition is filtered, followed by the addition of the at least one pH-adjusting ingredient as needed.
[0034] Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.