Claims
- 1. A process for purifying an octafluorocyclobutane, comprising the step of contacting a crude octafluorocyclobutane containing impurities with an impurity decomposing agent under elevated temperature and then with an adsorbent to substantially remove said impurities from said crude octafluorocyclobutane.
- 2. The process for purifying an octafluorocyclobutane as claimed in claim 1, wherein said impurity decomposing agent comprises an iron oxide and an alkaline earth metal compound.
- 3. The process for purifying an octafluorocyclobutane as claimed in claim 2, wherein said iron oxide is ferric oxide.
- 4. The process for purifying an octafluorocyclobutane as claimed in claim 3, wherein said ferric oxide is γ-iron hydroxide oxide and/or γ-ferric oxide.
- 5. The process for purifying an octafluorocyclobutane as claimed in claim 2, wherein said alkaline earth metal compound is at least one compound selected from the group consisting of oxides, hydroxides and carbonates of an alkaline earth metal of magnesium, calcium, strontium and barium.
- 6. The process for purifying an octafluorocyclobutane as claimed in claim 1 or 2, wherein said impurity decomposing agent contains from 5 to 40% by mass of an iron oxide and from 60 to 95% by mass of an alkaline earth metal compound based on the entire mass of said impurity decomposing agent.
- 7. The process for purifying octafluorocyclobutane as claimed in claim 1 or 2, wherein said impurity decomposing agent is a granule comprising a powder of an iron oxide having an average particle size of 100 μm or less and a powder of an alkaline earth metal compound having an average particle size of 100 μm or less.
- 8. The process for purifying an octafluorocyclobutane as claimed in claim 1 or 2, wherein said impurity decomposing agent is a granule having an average particle size of 0.5 to 10 mm.
- 9. The process for purifying an octafluorocyclobutane as claimed in claim 1 or 2, wherein said crude octafluorocyclobutane is contacted with said impurity decomposing agent at 250° C. to 380° C.
- 10. The process for purifying an octafluorocyclobutane as claimed in claim 1, wherein said adsorbent is at least one member selected from the group consisting of activated carbon, molecular sieving carbon and activated coal.
- 11. The process for purifying an octafluorocyclobutane as claimed in claim 10, wherein said activated coal is obtained by a process comprising the steps of:washing original coal with an acid and water (step 1); heating the original coal at 50 to 250° C. in an inert gas stream to deoxidize and/or dehydrate said original coal (step 2); heating the original coal at 500 to 700° C. in an inert gas stream to carbonize said original coal (step 3); and heating the original coal at 700 to 900° C. in a mixed gas stream containing an inert gas, carbon dioxide and steam to activate said original coal (step 4).
- 12. The process for purifying an octafluorocyclobutane as claimed in claim 11, wherein said original coal is obtained by carbonizing at least one member selected from the group consisting of coconut-shell coal, coal, charcoal and tar pitch under heating at 400 to 600° C.
- 13. The process for purifying an octafluorocyclobutane as claimed in claim 11, wherein said acid is a mineral acid and the concentration of said acid is from 1 to 1,000 mol/m3.
- 14. The process for purifying an octafluorocyclobutane as claimed in claim 11 or 13, wherein said acid is hydrochloric acid and/or sulfuric acid.
- 15. The process for purifying an octafluorocyclobutane as claimed in claim 11, wherein at the transfer from said step 2 to said step 3, the original coal from the step 2 is heated to 500 to 700° C. at 300 to 500° C./hr in an inert gas stream.
- 16. The process for purifying an octafluorocyclobutane as claimed in claim 11, wherein at the transfer from said step 3 to said step 4, the original coal from the step 3 is heated to 700 to 900° C. at 100 to 200° C./hr in an inert gas stream.
- 17. The process for purifying an octafluorocyclobutane as claimed in claim 11, wherein said mixed gas contains from 50 to 89% by volume of inert gas, from 10 to 30% by volume of carbon dioxide and from 1 to 20% by volume of steam, based on the entire volume of the mixed gas.
- 18. The process for purifying an octafluorocyclobutane as claimed in claim 11, wherein after said step 4, the activated coal from the step 4 is cooled to room temperature at 200 to 300° C./hr in an inert gas stream.
- 19. The process for purifying an octafluorocyclobutane as claimed in claim 11, wherein said activated coal has an iodine adsorption quantity of from 700 to 1,000 mg/g.
- 20. The process for purifying an octafluorocyclobutane as claimed in claim 11, wherein the total content of alkali metals contained in said activated coal is 1,000 ppm or less.
- 21. The process for purifying an octafluorocyclobutane as claimed in claim 20, wherein said alkali metal is potassium and the total content of potassium contained in said activated coal is 500 ppm or less.
- 22. The process for purifying an octafluorocyclobutane as claimed in claim 1, wherein said crude octafluorocyclobutane contains said impurities in an amount of 10 to 10,000 ppm by mass.
- 23. The process for purifying an octafluorocyclobutane as claimed in claim 22, wherein said impurity is at least one fluorocarbon selected from the group consisting of 2-chloro-1,1,1,2,3,3,3-heptafluoropropane, 1-chloro-1,1,2,2,3,3,3-heptafluoropropane, 1-chloro-1,2,2,2-tetrafluoroethane, 1-chloro-1,1,2,2-tetrafluoroethane, 1,2-dichloro-1,1,2,2-tetrafluoroethane, hexafluoropropene and 1H-heptafluoropropane.
- 24. The process for purifying an octafluorocyclobutane as claimed in claim 23, wherein after the impurities are substantially removed, the concentration of impurities remaining in the octafluorocyclobutane is less than 1 ppm by mass.
- 25. A process for preparing an octafluorocyclobutane, comprising the steps of producing a crude octafluorocyclobutane containing impurities, and contacting said crude octafluorocyclobutane with an impurity decomposing agent under elevated temperature and then with an adsorbent to obtain an octafluorocyclobutane from which impurities are substantially removed.
- 26. The process for preparing an octafluorocyclobutane as claimed in claim 25, wherein the step of producing an octafluorocyclobutane containing impurities is the thermal decomposition of chlorodifluoromethane.
- 27. The process for preparing an octafluorocyclobutane as claimed in claim 25 or 26, wherein said impurity is at least one fluorocarbon selected from the group consisting of 2-chloro-1,1,1,2,3,3,3-heptafluoropropane, 1-chloro-1,1,2,2,3,3,3-heptafluoropropane, 1chloro-1,2,2,2-tetrafluoroethane, 1-chloro-1,1,2,2-tetrafluoroethane, 1,2-dichloro-1,1,2,2-tetrafluoroethane, hexafluoropropene and 1H-heptafluoropropane.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 2001-6459 |
Jan 2001 |
JP |
|
CROSS REFERENCE OF RELATED APPLICATION
This application is an application filed under 35 U.S.C. §111(a) claiming benefit pursuant to 35 U.S.C. §119(e)(1) of the filing date of Provisional Application 60/264,322 filed on Jan. 29, 2001, pursuant to 35 U.S.C. §111(b).
PCT Information
| Filing Document |
Filing Date |
Country |
Kind |
| PCT/JP02/00148 |
|
WO |
00 |
| Publishing Document |
Publishing Date |
Country |
Kind |
| WO02/05545 |
7/18/2002 |
WO |
A |
US Referenced Citations (7)
Foreign Referenced Citations (5)
| Number |
Date |
Country |
| 0 370 688 |
May 1990 |
EP |
| 58-214149 |
Dec 1983 |
JP |
| 4-82847 |
Mar 1992 |
JP |
| 10-182516 |
Jul 1998 |
JP |
| WO 0003424 |
Jan 2000 |
WO |
Non-Patent Literature Citations (3)
| Entry |
| Esp@cenet—Document Bibliography and Abstract, JP 58-214149, dated Dec. 13, 1983, Hitachi Seisakusho KK. |
| Esp @cenet—Document Bibliography and Abstract, JP 10-182516, dated Jul. 7, 1998, Daikin Ind Ltd. |
| V.B. Maksimov et al, Industrial Organofluoric Products, Khimiya Publishers, St. Petersburg, 1996, pp. 38-45. |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/264322 |
Jan 2001 |
US |