Claims
- 1. A waste processing method, wherein chlorine-containing waste is processed inside a heating device, an alkali metal compound and a calcium compound are given into the heating device while the temperature of a solid phase inside the heating device is maintained at 400 to 1500° C., chlorine that is contained in the chlorine-containing waste and that has not been bound by the alkali metal compound is bound in the solid phase by the calcium compound, and chlorine is converted into alkali metal chloride from calcium chloride generated in the course of the processing of the chlorine-containing waste.
- 2. The waste processing method according to claim 1, wherein the chlorine-containing waste is a chlorine-containing combustible material, that chlorine-containing combustible material is combustion processed as fuel or as a portion of the fuel in the heating device, the alkali metal compound and the calcium compound are given into the heating device while the temperature of the solid phase inside the heating device is maintained at 400 to 1500° C., chlorine that is contained by the chlorine-containing combustible material and that has not been bound by the alkali metal compound is bound in the solid phase by the calcium compound, and chlorine is converted into alkali metal chloride from calcium chloride generated in the course of the processing of the chlorine-containing combustible material.
- 3. The waste processing method according to claim 1, wherein the temperature of the solid phase inside the heating device is maintained at 400 to 800° C., and the alkali metal chloride bound in the solid phase is eliminated by washing with water.
- 4. The waste processing method according to claim 3, wherein after the elimination of the alkali metal chloride by washing with water, Ca(OH)2 stemming from CaO is given into the heating device as the calcium compound.
- 5. The waste processing method according to claim 1, wherein the temperature of the solid phase in the heating device exceeds 800° C. and is maintained at a temperature of up to 1500° C., and the alkali metal chloride is volatilized and separated from the solid phase.
- 6. The waste processing method according to claim 5, wherein the temperature of the solid phase in the heating device exceeds 800° C. and is maintained at a temperature of up to 1500° C., gas including the alkali metal chloride is cooled to a temperature not greater than the melting point of the alkali metal chloride, and the alkali metal chloride is separated as solid matter.
- 7. The waste processing method according to claim 1, wherein the chlorine-containing combustible material is chloride-containing waste plastic.
- 8. The waste processing method according to claim 1, wherein the heating device is taken as a cement manufacturing device, residue after the elimination of the alkali metal chloride is taken as cement clinker, cement raw material, or cement mixture, and the alkali metal chloride is extracted from a cement manufacturing furnace.
- 9. The waste processing method according to claim 1, wherein the alkali metal compound is the alkali metal compound in waste glass.
- 10. The waste processing method according to claim 1, wherein the calcium compound is at least one calcium compound selected from the group consisting of CaO, CaCO3, and Ca(OH)2.
- 11. A waste processing apparatus comprising a heating device forming alkali metal chloride upon input of chlorine-containing waste and an alkali metal compound, and a water washing device for washing with water a residue including that alkali metal chloride.
- 12. A waste processing apparatus comprising a heating device forming alkali metal chloride upon input of chlorine-containing waste and an alkali metal compound, an extraction device for extracting all or a portion of gas including that alkali metal chloride, a cooling device for obtaining a solid by cooling the extracted gas to a temperature not greater than the melting point of the alkali metal chloride, and a collecting device for collecting the obtained alkali metal chloride.
- 13. An integrated waste processing method, wherein alkali metal-containing inorganic waste, inorganic waste other than alkali metal-containing inorganic waste, chlorine-containing combustible material, and chlorine-free combustible waste are taken as processed materials, the respective amounts of the processed materials that are given into a waste heating facility are regulated, a portion of the chlorine included in the processed materials is reacted with a heavy metal in the processed materials, the chlorine in the other main portion is neutralized by the alkali metal in the processed materials, and a heat amount obtained by combusting the chlorine-containing combustible material and the chlorine-free combustible waste is utilized as processing energy of the waste heating facility, while an obtained reaction product is moved into exhaust gas and removed from the system.
- 14. The integrated waste processing method of claim 13, wherein, when R is a mol number of the alkali metal included in the processed materials, S is a mol number of sulfur present as sulfate radicals in the processed materials, and Cl is a mol number of the chlorine included in the processed materials, then the input amounts of the various processed materials are regulated such that the mol numbers fulfill the relation
- 15. The integrated waste processing method of claim 13, wherein 5 to 40 wt % of all material that is input into the waste heating facility is auxiliary material.
- 16. The integrated waste processing method of claim 13, wherein heavy metals included in dust obtained from the waste heating facility are subjected to a wet process, and the heavy metals are concentrated and collected.
- 17. The integrated waste processing method of claim 16, wherein salts are collected from drainage water discharged from the wet processing step.
- 18. The integrated waste processing method of claim 16, wherein residual heat of the exhaust gas of the heating facility is used for evaporating and eliminating water components in a facility for wet processing the heavy metals included in the dust or a facility for collecting the salts, or for promoting dissolution of heavy metal salts.
- 19. The integrated waste processing method of claim 13, wherein the processed materials after the heating process are discharged from the heating facility in powder form or in clinker form.
- 20. The integrated waste processing method of claim 13, wherein the processed materials after the heating process are discharged from the heating facility in molten form.
- 21. The integrated waste processing method of claim 13, wherein a calcium compound is given into the heating facility as auxiliary material.
- 22. The integrated waste processing method of claim 13, wherein a rotary kiln is used as the heating facility, the chlorine-containing combustible material and the chlorine-free combustible waste are combusted inside that rotary kiln, and cement raw material or a cement admixture is obtained.
- 23. The integrated waste processing method of claim 13, wherein the chlorine-free combustible waste is given into a cooler at a stage following the waste heating facility.
- 24. An integrated waste processing system for working the integrated waste processing method of claim 13, comprising a storage facility for holding the processed materials, a heating facility for breaking down and/or separating harmful substances in the processed materials, a fuel making facility turning the chlorine-containing combustible material and the chlorine-free combustible waste of the processed materials into fuel for the heating facility, a monitoring facility monitoring the nature of the processed materials, a cooling facility transforming the harmful substances present in form of liquid or gas in the exhaust gas of the heating facility into a solid, and a dust gathering facility for gathering dust including the solid, and, according to necessity, further comprising a facility selected from a foreign matter elimination facility for removing foreign matter from the processed materials, a pre-processing facility for transforming the processed materials into a packing style suitable for processing, a proportional mixing facility for balancing the processed materials, and a separation facility for returning dust with a coarse particle size in the exhaust gas to the heating facility.
- 25. The integrated waste processing system according to claim 24, comprising a facility for concentrating and collecting heavy metals included in the dust by wet processing.
- 26. The integrated waste processing system according to claim 25, comprising a facility for collecting salts from the exhaust water discharged by the wet processing step.
- 27. The integrated waste processing system according to claim 24, wherein the heating facility comprises a facility for adding an alkali metal-containing substance.
- 28. The integrated waste processing system according to claim 24, wherein a rotary kiln is used for the heating facility.
- 29. The integrated waste processing system according to claim 24, wherein a heating furnace other than a rotary kiln is used for the heating facility.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2001-228964 |
Jul 2001 |
JP |
|
2002-049475 |
Feb 2002 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims the benefit of U.S. Provisional Application No. 60/365,675 filed Mar. 19, 2002, Japanese Patent Application No. 2001-228964 filed Jul. 30, 2001 and Japanese Patent Application No. 2002-049475 filed Feb. 26, 2002, the disclosures of which are each hereby incorporated by reference herein.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60365675 |
Mar 2002 |
US |