Claims
- 1. A plant seed having an adherent coating thereon comprising an adhesive binder and a particulate urea-formaldehyde polymer.
- 2. The plant seed of claim 1 wherein the particulate urea-formaldehyde polymer is made by acidifying a aqueous methylol urea solution, wherein the aqueous methylol urea solution either contains a dispersing agent or is subjected to a high shear condition during the acidifying, to form an aqueous dispersion of insoluble urea-formaldehyde polymer particles and drying the dispersion to recover the urea-formaldehyde polymer particles.
- 3. The seed of claim 2 wherein the adhesive binder is applied to the seed as a latex and dried.
- 4. The seed of claim 3 wherein the latex is selected from an acrylic polymer emulsion and a polyacylamide polymer emulsion.
- 5. The seed of claim 2 wherein the aqueous methylol urea solution is made by reacting urea and formaldehyde at a urea:formaldehyde mole ratio of approximately 1:1.
- 6. The seed of claim 5 wherein the aqueous methylol urea solution is made by reacting urea and formaldehyde at a urea:formaldehyde mole ratio of 0.83:1 to 1.1:1.
- 7. The method of claim 2 wherein the methylol urea solution is made by reacting urea and formaldehyde at a urea:formaldehyde mole ratio of 0.95:1 to 1.05:1.
- 8. The seed of claim 2 wherein the aqueous methylol urea solution is made by reacting urea and formaldehyde at a urea:formaldehyde mole ratio of 0.95:1 to 1.05:1 and wherein the methylol urea solution contains a dispersing agent during the acidifying.
- 9. The seed of claim 1, 2, 5, 6, 7 or 8 wherein the seed is selected from grass seed, barley, oats, corn, sunflower, sugar beets, rape, safflower, flax, canary grass, tomatoes, cotton seed, peanuts, soybean, wheat, rice, alfalfa, sorghum, beans, carrot, broccoli, cabbage and flower seeds.
- 10. The seed of claim 9 wherein said coating has an additional adjuvant selected from calcium carbonate; gypsum; metal silicates; metal chelates of a metal selected from iron, zinc and manganese; talc; elemental sulfur; activated carbon; pesticides; herbicides; fungicides; super absorbent polymers; wicking agents; wetting agents; plant stimulants; urea, inorganic fertilizers, sources of phosphorus and sources of potassium.
- 11. The seed of claim 9 wherein the particulate urea-formaldehyde polymer is provided in an amount to result in a release of nitrogen at a rate consistent with the growth rate of the plant.
- 12. The seed of claim 9 wherein the particulate urea-formaldehyde polymer particles contain about 36% nitrogen.
- 13. A method of enhancing the growth and development of a plant grown from seed comprising providing said seed with an adherent coating thereon comprising an adhesive binder and a particulate urea-formaldehyde polymer prior to planting said seed.
- 14. The method of claim 13 wherein the particulate urea-formaldehyde polymer is made by acidifying a aqueous methylol urea solution, wherein the aqueous methylol urea solution either contains a dispersing agent or is subjected to a high shear condition during the acidifying, to form an aqueous dispersion of insoluble urea-formaldehyde polymer particles and drying the dispersion to recover the urea-formaldehyde polymer particles.
- 15. The method of claim 14 wherein the adhesive binder is applied to the seed as a latex and dried.
- 16. The method of claim 15 wherein the latex is selected from an acrylic polymer emulsion and a polyacylamide polymer emulsion.
- 17. The method of claim 14 wherein the methylol urea solution is made by reacting urea and formaldehyde at a urea:formaldehyde mole ratio of approximately 1:1.
- 18. The method of claim 17 wherein the methylol urea solution is made by reacting urea and formaldehyde at a urea:formaldehyde mole ratio of 0.83:1 to 1.1:1.
- 19. The method of claim 14 wherein the methylol urea solution is made by reacting urea and formaldehyde at a urea:formaldehyde mole ratio of 0.95:1 to 1.05:1.
- 20. The method of claim 14 wherein the methylol urea solution is made by reacting urea and formaldehyde at a urea:formaldehyde mole ratio of 0.95:1 to 1.05:1 and wherein the methylol urea solution contains a dispersing agent during the acidifying.
- 21. The method of claim 13, 14, 18, 19 or 20 wherein the seed is selected from grass seed, barley, oats, corn, sunflower, sugar beets, rape, safflower, flax, canary grass, tomatoes, cotton seed, peanuts, soybean, wheat, rice, alfalfa, sorghum, beans, carrot, broccoli, cabbage and flower seeds.
- 22. The method of claim 21 wherein said seed coating has an additional adjuvant selected from calcium carbonate; gypsum; metal silicates; metal chelates of a metal selected from iron, zinc and manganese; talc; elemental sulfur; activated carbon; pesticides; herbicides; fungicides; super absorbent polymers; wicking agents; wetting agents; plant stimulants; urea, inorganic fertilizers, sources of phosphorus and sources of potassium.
- 23. The method of claim 21 wherein the particulate urea-formaldehyde polymer is provided in an amount to result in a release of nitrogen at a rate consistent with the growth rate of the plant.
- 24. The method of claim 21 wherein the particulate urea-formaldehyde polymer particles contain about 36% nitrogen.
- 25. An artificial seedbed containing a seed according to any one of claims 1, 2, 7, or 8.
Parent Case Info
[0001] This application claims the benefit of provisional application No. 60/367,278 filed Mar. 26, 2002 and Provisional application No. 60/379,402 filed May 13, 2002.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60367278 |
Mar 2002 |
US |
|
60379402 |
May 2002 |
US |