Claims
- 1. Process for the production of 3-picoline, characterized in that a first educt, consisting of (a) acetaldehyde, (b) at least one acetaldehydeacetal, (c) crotonaldehyde, and (d) a combination of two or more of (a), (b), and (c), is reacted with a second educt, consisting of (e) formaldehyde, (f) at least one formaldehydeacetal, (g) hexamethylenetetramine, and (h) a combination of two or more of (e), (f) and (g), in a liquid, aqueous phase at a temperature of 180.degree. to 280.degree. in a closed vessel in the presence of ammonia and/or ammonium ions and in the presence of at least one water-soluble alkali metal salt of an inorganic and/or organic acid or acids which provides an anion or anions of said inorganic and/or organic acid or acids, which at 20.degree. C. have an acid dissociation constant of 10.sup.6 to 10.sup.-12.
- 2. Process as claimed in claim 1 wherein (i) an acetaldehyde or an acetaldehydeacetal and (ii) formaldehyde or a formaldehydeacetal are used in a molar ratio of from 1:0.5 to 1:1.2.
- 3. Process as claimed in claim 2 wherein the anions of the inorganic and/or organic acid or acids are inserted by the addition of the corresponding water-soluble sodium or potassium salts of said inorganic and/or organic acid or acids into the reaction solution.
- 4. Process as claimed in claim 3 wherein the reaction is conducted at a temperature from 205.degree. to 240.degree. C.
- 5. Process as claimed in claim 4 wherein the salts are used in an aqueous solution in a concentration of 0.3 to 10 mole/1.
- 6. Process as claimed in claim 1 wherein the first educt is acetaldehyde.
- 7. Process as claimed in claim 1 wherein the first educt is a polymer of acetaldehyde.
- 8. Process as claimed in claim 1 wherein the second educt is formaldehyde.
- 9. Process as claimed in claim 1 wherein the second educt is a polymer of formaldehyde.
- 10. Process as claimed in claim 1 wherein (i) acetaldehyde or an acetaldehydeactal and (ii) formaldehyde or a formaldehydeacetal are used in a molar ratio of from 1:0.8 to 1:1.
- 11. Process as claimed in claim 1 wherein the crotonaldehyde and formaldehyde, as such or in the form of one of its derivatives, are used in a molar ratio of from 1:1 to 1:2.4.
- 12. Process as claimed in claim 1 wherein (i) acetaldehyde or an acetaldehydeacetal and (ii) hexamethylenetetramine are used in a molar ratio of from 1:0.083 to 1:0.2.
- 13. Process as claimed in claim 1 wherein the starting pH is between 5.0 and 12.5.
- 14. Process as claimed in claim 1 wherein the reaction is conducted at a temperature of 205.degree. to 240.degree. C.
- 15. Process as claimed in claim 1 wherein 0.5 to 3 moles of ammonia and/or ammonium ions are used per mole of the educts.
- 16. Process as claimed in claim 1 wherein 0.1 moles to 3 moles of said at least one water-soluble alkali metal salt of an inorganic and/or organic acid or acids which provides said anion or anions of said inorganic and/or organic acid or acids are used per mole of the educts.
- 17. Process as claimed in claim 1 wherein 3-picoline is separated from the reaction mixture.
- 18. Process for the production of 3-picoline, which comprises reacting a first educt, consisting of (a) acetaldehyde, (b) at least one acetaldehydeacetal, (c) crotonaldehyde and (d) a combination of two or more of (a), (b) and (c), with a second educt, consisting of (e) formaldehyde, (f) at least one formaldehydeacetal, (g) hexamethylenetetramine and (h) a combination of two or more of (e), (f), and (g), in a liquid, aqueous phase at a temperature of 180.degree. to 280.degree. C. in a closed vessel in the presence of ammonia and/or ammonium ions and in the presence of at least one water-soluble alkali metal salt of an inorganic and/or organic acid or acids which provides an anion or anions of said inorganic and/or organic acid or acids, which at 20.degree. C. have an acid dissociation constant of 10.sup.6 to 10.sup.-12.
- 19. Process as claimed in claim 18 wherein a homogenization agent is present and the composition has a pH of 5 to 12.5.
- 20. Composition comprised of (i) a member of the group consisting of (a) acetaldehyde, (b) at least one acetaldehydeacetal, (c) crotonaldehyde and (d) a combination of two or more of (a), (b), and (c), (ii) a member of the group consisting of (e) formaldehyde, (f) at least one formaldehydeacetal, (g) hexamethylenetetramine, and (h) a combination of two or more of (e), (f), and (g), (iii) water, (iv) ammonia and/or ammonium ions, and (v) at least one water-soluble alkali metal salt of an inorganic and/or organic acid or acids which provides an anion or anions of said inorganic and/or organic acid or acids, which at 20.degree. C. show an acid dissociation constant of 10.sup.6 to 10.sup.-12.
- 21. Composition as claimed in claim 20 wherein a homogenization agent is present and the composition has a pH of 5 to 12.5.
Priority Claims (2)
| Number |
Date |
Country |
Kind |
| 104/81 |
Jan 1981 |
CHX |
|
| 1685/81 |
Mar 1981 |
CHX |
|
Parent Case Info
This is a continuation-in-part of U.S. Application Ser. No. 337,769, filed on Jan. 7, 1982.
US Referenced Citations (1)
| Number |
Name |
Date |
Kind |
|
4370481 |
Dinkel |
Jan 1983 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
337769 |
Jan 1982 |
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