Claims
- 1. Wood drying process wherein the wood drying process comprises:a pressurizing step to place at least one sealed chamber (1) under a determined pressure of saturating steam and maintain this pressure for a determined time interval while ensuring forced circulation of air and saturating steam pressure conditions within the chamber; a heating step to heat the wood by emitting electromagnetic waves by several means (14) allowing the passage of the electromagnetic waves toward the chamber (1) inside such that to create a temperature differential generating a steam pressure differential in the wood oriented to favor the evacuation of the fluids toward the outside; a step of interruption of the electromagnetic wave generator (44) and of diminution of the chamber (1) pressure.
- 2. Process according to claim 1, wherein, during the pressurizing step, the pressure is produced by injecting steam.
- 3. Process according to claim 1, wherein, during the pressurizing step, the pressure is produced by creating steam.
- 4. Process according to claim 1, wherein it comprises a step of modification of the temperature and pressure rises following cycles optimizing the process versus the wished result.
- 5. Process according to claim 1, wherein it comprises an evacuation step to carry away the liquid exudates yielded by the wood.
- 6. Process according to claim 5, wherein the liquid exudates are permanently evacuated.
- 7. Process according to claim 5, wherein the liquid exudates are intermittently evacuated.
- 8. Process according to claim 5, wherein each exudate evacuation cycle is followed by a repressurizing cycle to replace the chamber (1) under a determined pressure of saturating steam.
- 9. Process according to claim 5, wherein the evacuation comprises a physico-chemical treatment step for the exudates to make them compatible with evacuation toward a waste water circuit.
- 10. Process according to claim 5, wherein the liquid exudate evacuation step is followed by a step of collection in a container for chemical re-treatment.
- 11. Process according to claim 1, wherein the pressure-lowering step is completed by a step of de-humidifying the ambient air of the chamber (1) by passage of an air flux issued from the chamber (1) on a moisture absorption device and a step of cooling the air of the chamber (1).
- 12. Process according to claim 1, wherein electromagnetic wave emitting power applied at the different means are of decreasing magnitude from the center of the wood pieces toward the outside.
- 13. Process according to claim 1, wherein the pressure of saturating steam lies in a range of 2 bars to 15 bars.
- 14. Process according to claim 13, wherein the pressure of saturating steam lies in a range of 2 bars to 2.7 bars.
- 15. Process according to claim 13, wherein the pressure of saturating steam is less than 10 bars to obtain a treated wood moisture content of more than 6%.
- 16. Process according to claim 13, wherein the pressure of saturating steam lies for at least a determined drying time between 10 and 15 bars and the produced temperature reaches a value in the range of 200 to 220° C. to obtain a dry polymerized wood having a moisture content close to 0%.
- 17. Process according to claim 1, wherein the power of the electromagnetic waves generator (44) is calculated and controlled so that the inner heat produced in the wood is higher than the temperature of saturating steam.
- 18. Process according to claim 1, wherein the electromagnetic waves are in a range of frequencies between 1 MHz and 16 GHz.
- 19. Process according to claim 18, wherein the electromagnetic waves are in a range of frequencies between 13 MHz and 2450 MHz.
- 20. System enabling the implementation of the process according to claim 1, including a sealed pressure-resistant chamber (1) with means for allowing the passage of electromagnetic waves produced by at least one electromagnetic wave generator (44), said means being arranged crosswise to the stack of wood (3), the chamber communicating with a pressurized air recirculation pathway (12) and a system of homogeneous diffusion of steam in the chamber.
- 21. System enabling the implementation of the process according to claim 1, including a sealed pressure-resistant chamber (1) with means for allowing the passage of electromagnetic waves produced by at least one electromagnetic wave generator (44), said means being arranged crosswise to the stack of wood (3), the chamber communicating with a pressurized air recirculation pathway (12) and a system of homogeneous creation of steam in the chamber.
- 22. System according to claim 20, wherein it comprises a steam condensing circuit (19).
- 23. System according to claim 21, wherein it comprises a steam condensing circuit (19).
- 24. System according to claim 22, wherein the steam condensing circuit (19) is connected in parallel on the air recirculation circuit (12) and by selectively actuated valves (191, 192).
- 25. System according to claim 23, wherein the steam condensing circuit (19) is connected in parallel on the air recirculation circuit (12) and by selectively actuated valves (191, 192).
- 26. System according to claim 20, wherein it comprises a system for the evacuation of the liquid exudates yielded by the wood.
- 27. System according to claim 21, wherein it comprises a system for the evacuation of the liquid exudates yielded by the wood.
- 28. System according to claim 26, wherein the system for the evacuation of the liquid exudates is located in the lower part of the chamber (1) constituted by a gravity evacuation outlet (18) to evacuate run-off waters which is controlled by a valve (17).
- 29. System according to claim 27, wherein the system for the evacuation of the liquid exudates is located in the lower part of the chamber (1) constituted by a gravity evacuation outlet (18) to evacuate run-off waters which is controlled by a valve (17).
- 30. System according to claim 20, wherein it comprises:one end that can be closed by an automatic door (16) to ensure sealing against pressure and electromagnetic waves; transfer system for the loads of green wood to be dried from the outside of the chamber to the inside of the chamber via the end that can be closed.
- 31. System according to claim 21, wherein it comprises:one end that can be closed by an automatic door (16) to ensure sealing against pressure and electromagnetic waves; transfer system for the loads of green wood to be dried from the outside of the chamber to the inside of the chamber via the end that can be closed.
- 32. System according to claim 20, wherein the unit formed by the chamber and pre-loading zone is encased in a second protective chamber against radiation leakage, this chamber being accessible from the outside via flexible doors.
- 33. System according to claim 21, wherein the unit formed by the chamber and pre-loading zone is encased in a second protective chamber against radiation leakage, this chamber being accessible from the outside via flexible doors.
- 34. System according to claim 20, wherein the electromagnetic wave generator is embedded in the ground and communicates with the drying chamber via a waveguide.
- 35. System according to claim 21, wherein the electromagnetic wave generator is embedded in the ground and communicates with the drying chamber via a waveguide.
- 36. System according to claim 20, wherein the chamber comprises a safety valve (11).
- 37. System according to claim 21, wherein the chamber comprises a safety valve (11).
- 38. System according to claim 36, wherein the valve (17) is opened permanently.
- 39. System according to claim 36, wherein the valve (17) is opened intermittently.
- 40. System according to claim 37, wherein the valve (17) is opened permanently.
- 41. System according to claim 37, wherein the valve (17) is opened intermittently.
- 42. System according to claim 28, wherein the outlet is connected to a physico-chemical treatment system to make the exudates compatible with evacuation standards for the waste water.
- 43. System according to claim 29, wherein the outlet is connected to a physico-chemical treatment system to make the exudates compatible with evacuation standards for the waste water.
- 44. Extraction method for extracting chemical components from wood including the following steps:a pressurizing step to place at least one sealed chamber (1) under a determined pressure of saturating steam and maintain this pressure for a determined time interval while ensuring forced circulation of air and saturating steam pressure conditions within the chamber; a heating step to heat the wood by emitting electromagnetic waves by several means (14) allowing the passage of the electromagnetic waves toward the chamber (1) inside, the electromagnetic wave power being adapted to the wood zone to which the power is applied; an evacuation step to carry away the liquid exudates yielded by the wood.
- 45. Extraction process according to claim 44, further including treating one single type of species of green wood by applying electromagnetic waves in an atmosphere of saturating steam.
Priority Claims (4)
Number |
Date |
Country |
Kind |
97 13641 |
Oct 1997 |
FR |
|
PCT/FR98/02318 |
Oct 1998 |
FR |
|
99 05555 |
Apr 1999 |
FR |
|
PCT/FR00/01141 |
Apr 2000 |
FR |
|
CROSS-REFERENCES TO RELATED APPLICATIONS
This application is a continuation-in-part of U.S. application Ser. No. 09/530,326, filed Jul. 6, 2000 now U.S. Pat. No. 6,473,994 and U.S. application Ser. No. 09/959,570, filed Oct. 30, 2001 now U.S. Pat. No. 6,581,299.
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Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09/530326 |
Jul 2000 |
US |
Child |
10/215183 |
|
US |
Parent |
09/959570 |
Oct 2001 |
US |
Child |
09/530326 |
|
US |