IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0179270
(2011-07-08)
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등록번호 |
US-8337583
(2012-12-25)
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발명자
/ 주소 |
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출원인 / 주소 |
|
대리인 / 주소 |
Bozicevic, Field & Francis LLP
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인용정보 |
피인용 횟수 :
7 인용 특허 :
19 |
초록
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Soil amendment/foliar nutrient compositions and methods for their manufacture and use are provided. The compositions are aqueous compositions that include a carbon skeleton energy component (CSE); a macronutrient; a vitamin cofactor; a complexing agent; and at least one of exotic micronutrient compo
Soil amendment/foliar nutrient compositions and methods for their manufacture and use are provided. The compositions are aqueous compositions that include a carbon skeleton energy component (CSE); a macronutrient; a vitamin cofactor; a complexing agent; and at least one of exotic micronutrient component and an ionophore component.
대표청구항
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1. An aqueous composition comprising: a first source comprising a carbon skeleton energy component;a second source comprising a macronutrient component;a third source comprising a vitamin cofactor component;a fourth source comprising a complexing agent; anda fifth source comprising an exotic micronu
1. An aqueous composition comprising: a first source comprising a carbon skeleton energy component;a second source comprising a macronutrient component;a third source comprising a vitamin cofactor component;a fourth source comprising a complexing agent; anda fifth source comprising an exotic micronutrient component comprising 10 or more exotic micronutrient ionic elements. 2. The composition according to claim 1, further comprising an ionophore component. 3. The composition according to claim 1, wherein said exotic micronutrient component is present in an amount ranging from 2 to 10% w/w and said carbon skeleton energy component is present in an amount ranging from 15 to 60% w/w. 4. The composition according to claim 3, wherein said 10 or more exotic micronutrient ionic elements are selected from the group consisting of: Aluminum (Al), Antimony (Sb), Barium (Ba), Beryllium (Be), Bismuth (Bi), Boron (B), Bromine (Br), Cadmium (Cd), Cerium (Ce), Cesium (Cs), Chromium (Cr), Cobalt (Co), Dysprosium (Dy), Erbium (Er), Europium (Eu), Fluorine (F), Gadolinium (Gd), Gallium (Ga), Germanium (Ge), Gold (Au), Hafnium (Hf), Holmium (Ho), Indium (In), Lanthanum (La), Lutetium (Lu), Lithium (Li), Mercury (Hg), Molybdenum (Mo), Neodymium (Nd), Nickel (Ni), Niobium (Nb), Platinum (Pt), Praseodymium (Pr), Rhodium (Rh), Ruthenium (Ru), Samarium (Sm), Scandium (Sc), Selenium (Se), Silica (Si), Silver (Ag), Strontium (Sr), Sulfur (S), Tellurium (Te), Terbium (Tb), Thallium (Tl), Thorium (Th), Thulium (Tm), Tin (Sn), Titanium (Ti), Tungsten (W), Vanadium (V), Ytterbium (Yb), Yttrium (Y), and Zirconium (Zr). 5. The composition according to claim 1, wherein the source of said exotic micronutrient component is fulvic acid. 6. The composition according to claim 2, wherein said ionophore component is present in said composition in an amount ranging from 50 to 500 ppm. 7. The composition according to claim 2, wherein said ionophore component comprises an antibiotic or an amino butyric acid. 8. The composition according to claim 7, wherein said ionophore component is 4-GABA. 9. The composition according to claim 1, wherein said carbon skeleton energy component is present in an amount ranging from 10 to 50% w/w and said exotic micronutrient component is present in an amount ranging from 2.5 to 7.5% w/w. 10. The composition according to claim 1, wherein said macronutrient component is present in an amount ranging from 0.01 to 25% w/w. 11. The composition according to claim 1, further comprising a micronutrient component present in an amount ranging from 0.001 to 25% w/w. 12. The composition according to claim 1, wherein said vitamin cofactor component is present in an amount ranging from 0.001 to 10% w/w. 13. The composition according to claim 4, wherein each exotic micronutrient ionic element is independently present or absent and when present, Cadmium (Cd), Cesium (Cs) and Mercury (Hg) are each independently present at a concentration ranging from 1 to 10 ppb in the composition. 14. The composition according to claim 4, wherein each exotic micronutrient ionic element is independently present or absent and when present, Selenium (Se), Aluminum (Al), Barium (Ba), Beryllium (Be), Boron (B), Chromium (Cr), Dysprosium (Dy), Gallium (Ga), Lanthanum (La), Nickel (Ni), Ruthenium (Ru), Strontium (Sr), Tellurium (Te), Tin (Sn), and Vanadium (V) are each independently present at concentrations ranging from 10 to 25 ppb in the composition. 15. The composition according to claim 4, wherein each exotic micronutrient ionic element is independently present or absent and when present, Molybdenum (Mo), Antimony (Sb), Cerium (Ce), Cobalt (Co), Erbium (Er), Gadolinium (Gd), Germanium (Ge), Hafnium (Hf), Lutetium (Lu), Lithium (Li), Rhodium (Rh), Samarium (Sm), Titanium (Ti), Tungsten (W), Ytterbium (Yb) and Zirconium (Zr) are each independently present at a concentration ranging from 20 to 40 ppb in the composition. 16. The composition according to claim 4, wherein each exotic micronutrient ionic element is independently present or absent and when present, Bismuth (Bi), Europium (Eu), Holmium (Ho), Neodymium (Nd), Platinum (Pt), Silver (Ag), Thallium (Tl) and Thorium (Th) are each independently present at a concentration ranging from 95 to 150 ppb in the composition. 17. The composition according to claim 4, wherein each exotic micronutrient ionic element is independently present or absent and when present, Bromine (Br), Fluorine (F), Gold (Au), Indium (In), Praseodymium (Pr), Terbium (Tb) and Thulium (Tm) are each independently present at a concentration ranging from 400 to 1000 ppb in the composition. 18. The composition according to claim 4, wherein each exotic micronutrient ionic element is independently present or absent and when present, Niobium (Nb), Scandium (Sc), Silicon (Si), Sulfur (S) and Yttrium (Y) are each independently present at a concentration ranging from 2000 to 3700 ppb in the composition. 19. A method comprising: (a) providing an aqueous composition comprising: a first source comprising a carbon skeleton energy component;a second source comprising a macronutrient component;a third source comprising a vitamin cofactor component;a fourth source comprising a complexing agent; anda fifth source comprising an exotic micronutrient component comprising 10 or more distinct exotic micronutrient ionic elements; and(b) applying said composition to at least one member selected from the group consisting of soil and foliage. 20. The method according to claim 19, wherein said composition further comprises an ionophore component. 21. The method according to claim 19, wherein said composition is applied to soil. 22. The method according to claim 19, wherein said composition is applied to foliage. 23. The method according to claim 19, wherein said composition is diluted prior to said applying. 24. The method according to claim 19, wherein the 10 or more exotic micronutrient ionic elements are selected from the group consisting of: Aluminum (Al), Antimony (Sb), Barium (Ba), Beryllium (Be), Bismuth (Bi), Boron (B), Bromine (Br), Cadmium (Cd), Cerium (Ce), Cesium (Cs), Chromium (Cr), Cobalt (Co), Dysprosium (Dy), Erbium (Er), Europium (Eu), Fluorine (F), Gadolinium (Gd), Gallium (Ga), Germanium (Ge), Gold (Au), Hafnium (Hf), Holmium (Ho), Indium (In), Lanthanum (La), Lutetium (Lu), Lithium (Li), Mercury (Hg), Molybdenum (Mo), Neodymium (Nd), Nickel (Ni), Niobium (Nb), Platinum (Pt), Praseodymium (Pr), Rhodium (Rh), Ruthenium (Ru), Samarium (Sm), Scandium (Sc), Selenium (Se), Silica (Si), Silver (Ag), Strontium (Sr), Sulfur (S), Tellurium (Te), Terbium (Tb), Thallium (Tl), Thorium (Th), Thulium (Tm), Tin (Sn), Titanium (Ti), Tungsten (W), Vanadium (V), Ytterbium (Yb), Yttrium (Y), and Zirconium (Zr). 25. The method according to claim 19, wherein the source of the exotic micronutrient component is fulvic acid. 26. The method according to claim 24, wherein each exotic micronutrient ionic element is independently present or absent and when present, Cadmium (Cd), Cesium (Cs) and Mercury (Hg) are each independently present at a concentration ranging from 1 to 10 ppb in the composition. 27. The method according to claim 24, wherein each exotic micronutrient ionic element is independently present or absent and when present, Selenium (Se), Aluminum (Al), Barium (Ba), Beryllium (Be), Boron (B), Chromium (Cr), Dysprosium (Dy), Gallium (Ga), Lanthanum (La), Nickel (Ni), Ruthenium (Ru), Strontium (Sr), Tellurium (Te), Tin (Sn), and Vanadium (V) are each independently present at concentrations ranging from 10 to 25 ppb in the composition. 28. The method according to claim 24, wherein each exotic micronutrient ionic element is independently present or absent and when present, Molybdenum (Mo), Antimony (Sb), Cerium (Ce), Cobalt (Co), Erbium (Er), Gadolinium (Gd), Germanium (Ge), Hafnium (Hf), Lutetium (Lu), Lithium (Li), Rhodium (Rh), Samarium (Sm), Titanium (Ti), Tungsten (W), Ytterbium (Yb) and Zirconium (Zr) are each independently present at a concentration ranging from 20 to 40 ppb in the composition. 29. The method according to claim 24, wherein each exotic micronutrient ionic element is independently present or absent and when present, Bismuth (Bi), Europium (Eu), Holmium (Ho), Neodymium (Nd), Platinum (Pt), Silver (Ag), Thallium (Tl) and Thorium (Th) are each independently present at a concentration ranging from 95 to 150 ppb in the composition. 30. The method according to claim 24, wherein each exotic micronutrient ionic element is independently present or absent and when present, Bromine (Br), Fluorine (F), Gold (Au), Indium (In), Praseodymium (Pr), Terbium (Tb) and Thulium (Tm) are each independently present at a concentration ranging from 400 to 1000 ppb in the composition. 31. The method according to claim 24, wherein each exotic micronutrient ionic element is independently present or absent and when present, Niobium (Nb), Scandium (Sc), Silicon (Si), Sulfur (S) and Yttrium (Y) are each independently present at a concentration ranging from 2000 to 3700 ppb in the composition.
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