Claims
- 1. (amended) A process for preparing 5-alkoxy-substituted oxazoles of the formula I,
- 2. A process as claimed in claim 1, wherein the process is carried out batchwise.
- 3. (amended) A process as claimed in claim 2, wherein the process is carried out in a batchwise or semi-batchwise reactor equipped with an emplaced reaction column and, simultaneously with the conversion, removing the 5-alkoxy-substituted oxazoles of the formula I from the reaction mixture by rectification.
- 4. (amended) A process as claimed in claim 3, wherein the rectification parameters are set in such a way that
D the α-isocyanoalkanoate esters of the formula II are converted to the 5-alkoxy-substituted oxazoles of the formula I in the reactor and/or on the internals of the emplaced reaction column and E the 5-alkoxy-substituted oxazoles of the formula I resulting from the conversion are removed via the emplaced reaction column.
- 5. A process as claimed in claim 2, wherein the conversion is carried out in the presence of an inert solvent.
- 6. A process as claimed in claim 3, wherein the reaction column used is a dividing wall column.
- 7. (amended) A process as claimed in claim 4, wherein the top pressure of the column is set to from 5 to 800 mbar and the resulting bottom pressure, which depends on the type of column used and, if used, the type of column internals, is from 10 mbar to atmospheric pressure.
- 8. A process as claimed in claim 1, wherein the process is carried out continuously.
- 9. (amended) A process as claimed in claim 8, wherein the process is carried out in a reaction column and, simultaneously with the conversion, the 5-alkoxy-substituted oxazoles of the formula I are removed from the reaction mixture by rectification.
- 10. (amended) A process as claimed in claim 9, wherein the rectification parameters are set in such a way that
A the α-isocyanoalkanoate esters of the formula II are converted to the 5-alkoxy-substituted oxazoles of the formula I on the internals and, if present, in the liquid phase of the reaction column, B the 5-alkoxy-substituted oxazoles of the formula I resulting from the conversion are continuously removed with the top stream or side stream of the reaction column and C the assistant and any high-boilers resulting from the conversion are removed continuously and independently of each other with the bottom stream or side stream of the reaction column.
- 11. (amended) A process as claimed in claim 8, wherein the conversion is carried out in the presence of an inert solvent and the reaction parameters are set in such a way that
A the α-isocyanoalkanoate esters of the formula II are converted to the 5-alkoxy-substituted oxazoles of the formula I on the internals and, if present, in the liquid phase of the reaction column, B1 when the solvent has a higher boiling point than the 5-alkoxy-substituted oxazoles of the formula I resulting from the conversion, the 5-alkoxy-substituted oxazoles of the formula I are continuously removed with the top stream and the solvent is continuously removed via the side stream or bottom stream of the reaction column, B2 when the solvent has a lower boiling point than the 5-alkoxy-substituted oxazoles of the formula I resulting from the conversion, the 5-alkoxy-substituted oxazoles of the formula I are continuously removed with a side stream and the solvent is continuously removed with the top stream of the reaction column and C the assistant and any high-boilers resulting from the conversion are removed continuously and independently of each other with the bottom stream or side stream of the reaction column.
- 12. A process as claimed in claim 9, wherein the reaction column used is a dividing wall column.
- 13. (amended) A process as claimed in claim 9, wherein, when the assistant forms an azeotrope with the 5-alkoxy-substituted oxazoles of the formula I, the top pressure of the column is set in such a way that the fraction of the assistant in the azeotrope in the top stream is as low as possible.
- 14. (amended) A process as claimed in claim 9, wherein the top pressure of the column is set to from 5 to 800 mbar and the resulting bottom pressure, which depends on the type of column used and, if used, the type of column internals, is from 10 mbar to atmospheric pressure.
- 15. (amended) A process for preparing pyridoxine derivatives of the formula IX
- 16. (new) A process as claimed in claim 1, wherein the assistants used are cyclizing assistants selected from the group consisting of bases, alcohols and esters.
- 17. (new) A process as claimed in claim 15, wherein the assistants used are cyclizing assistants selected from the group consisting of bases, alcohols and esters.
Priority Claims (2)
Number |
Date |
Country |
Kind |
10137480.1 |
Aug 2001 |
DE |
|
10209446.2 |
Mar 2002 |
DE |
|
Parent Case Info
[0001] This is a Continuation in Part application of application Ser. No. 10/209,529, filed on Aug. 01, 2002.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10209529 |
Aug 2002 |
US |
Child |
10348961 |
Jan 2003 |
US |