Claims
- 1. In a process for the production of heteromacrocyclic compounds selected from the group consisting of cyclic esters and lactones having 8 to 20 carbon atoms in the ring by depolymerization of a linear polyester and ring closure at an elevated temperature and reduced pressure and in the presence of a metal catalyst, the improvement comprising conducting the process as a continuous or semi-continuous operation in the presence of 0.75 to 10 mole percent monocarboxylate derived from an aromatic monocarboxylic acid having 7 to 30 carbon atoms and with agitation which provides top-to-bottom mixing throughout essentially the total volume of the reaction mass in an inverted multiple-blade conical vessel wherein the blades have a helical configuration and are arranged to rotate throughout essentially the entire reaction mass and in close proximity to the interior surface of said conical vessel and in a direction which provides a downward flow within the reaction mixture.
- 2. The process of claim 1 wherein the aromatic monocarboxylate is present at a concentration of 1.25 to 5.0 mole percent.
- 3. The process of claim 2 wherein said conical vessel is formed by two inverted intersecting vertical cones and is fitted with two conical helical ribbon blades, which fit the inner contour of the bowl formed by the cones and whose axes coincide with the axes of the cones, and which intermesh as they rotate in opposite directions at the same speed.
- 4. The process of claim 1 wherein the reaction temperature is between 200.degree. C. and 400.degree. C., the pressure is less than 50 mm Hg, from about 0.01 to 10 weight percent of an oxide, hydroxide, halide or carboxylate of an organic acid having from 2 to 30 carbon atoms of a Group IIIa, IVa, IVb, Va, VIIb or VIII metal is employed to catalyze the depolymerization and the hetero-macrocyclic compounds is a cyclic ester or cyclic ether-ester corresponding to the formula ##STR10## wherein R' is a bivalent hydrocarbon radical having 1 to 15 carbon atoms, R.sub.1 is a saturated bivalent hydrocarbon radical having 1 to 17 carbon atoms, R.sub.2 is a saturated bivalent hydrocarbon radical having 1 to 8 carbon atoms, A is oxygen or sulfur and x is an integer from 0 to 4, or a lactone or ether-lactone corresponding to the formula ##STR11## wherein R.sub.1 and x are the same as defined above, R" is a bivalent hydrocarbon radical having 1 to 18 carbon atoms and A is the same as defined above except that when x is zero A can only be oxygen.
- 5. The process of claim 4 wherein the catalyst is an oxide, hydroxide, chloride or carboxylate of a metal selected from the group consisting of magnesium, titanium, manganese, iron, cobalt, tin and lead and the cyclic ester or cyclic ether-ester corresponds to formula (c) where R.sub.1 and R.sub.2 are saturated bivalent hydrocarbon radicals having 2 to 13 carbon atoms, A and x are the same as defined above, R' is a bivalent hydrocarbon radical of the formula --CR.sub.3 R.sub.4 --CH.sub.2 --.sub.y where R.sub.3 and R.sub.4 are hydrogen or a C.sub.1-4 alkyl group and y is an integer from 0 to 11, and the lactone or ether-lactone corresponds to formula (d) where R.sub.1, A and x are the same as previously defined except that when x is zero A can only be oxygen, and R" is a bivalent hydrocarbon radical of the formula --CH.sub.2 --.sub.u CR.sub.3 R.sub.4 -- where R.sub.3 and R.sub.4 are hydrogen or a C.sub.1- 4 alkyl group and u is an integer from 5 to 14.
- 6. The process of claim 5 wherein the reaction temperature is between about 250.degree. C. and 350.degree. C., pressure is in the range 0.01 to 10 mm Hg, from about 0.1 to 5 weight percent catalyst is used and the concentration of aromatic monocarboxylate ranges between 1.25 and 5 mole percent with the monocarboxylate having the general formula ##STR12## where the radical R is a phenyl or naphthyl which can be unsubstituted or substituted with one or more substituents selected from the group C.sub.1-20 alkyl, C.sub.3-8 cycloalkyl, C.sub.1-20 alkoxy and halogen.
- 7. The process of claim 1 wherein the hetero-macrocyclic compound is a lactone or ether-lactone corresponding to the formula ##STR13## wherein R.sub.5 is a saturated bivalent hydrocarbon radical having 2 to 13 carbon atoms, u is an integer from 5 to 14 and v is 0, 1 or 2 and conducted at a temperature between about 250.degree. C. and 350.degree. C., pressure in the range 0.01 to 10 mm Hg and in the presence of about 0.1 to 5 weight percent of an oxide, hydroxide, chloride or carboxylate of a metal selected from the group consisting of magnesium, titanium, manganese, iron, cobalt, tin and lead and 1.25 to 5 mole percent aromatic monocarboxylate having the general formula ##STR14## where the radical R is a phenyl or naphthyl which can be unsubstituted or substituted with one or more substituents selected from the group C.sub.1-20 alkyl, C.sub.3-8 cycloalkyl, C.sub.1-20 alkoxy and halogen in an inverted multiple-blade conical vessel wherein the blades have a helical configuration and are arranged to rotate through essentially the entire reaction mass and in close proximity to the interior surface of said conical vessel and in a direction which provides a downward flow within the reaction mixture.
- 8. The process of claim 1 wherein the hetero-macrocyclic compound is a cyclic ester or cyclic ether-ester corresponding to the formula ##STR15## wherein R.sub.6 and R.sub.7 are hydrogen, methyl or ethyl groups, y is an integer from 0 to 11 and z is an integer from 1 to 4 and conducted at a temperature between about 250.degree. C. and 350.degree. C., pressure in the range 0.01 to 10 mm Hg and in the presence of about 0.1 to 5 weight percent of an oxide, hydroxide, chloride or carboxylate of a metal selected from the group consisting of magnesium, titanium, manganese, iron, cobalt, tin and lead and 1.25 to 5 mole percent aromatic monocarboxylate having the general formula ##STR16## where the radical R is a phenyl or naphthyl which can be unsubstituted or substituted with one or more substituents selected from the group C.sub.1-20 alkyl, C.sub.3-8 cycloalkyl, C.sub.1-20 alkoxy and halogen in an inverted multiple-blade conical vessel wherein the blades have a helical configuration and are arranged to rotate through essentially the entire reaction mass and in close proximity to the interior surface of said conical vessel and in a direction which provides a downward flow within the reaction mixture.
- 9. The process of claim 1 wherein the hetero-macrocyclic compound is a cyclic ester or cyclic ether-ester and corresponding to the formula ##STR17## wherein m is an integer from 4 to 11 and n is 0 or 1 and conducted at a temperature between about 250.degree. C. and 350.degree. C., pressure in the range 0.01 to 10 mm Hg and in the presence of about 0.1 to 5 weight percent of an oxide, hydroxide, chloride or carboxylate of a metal selected from the group consisting of magnesium, titanium, manganese, iron, cobalt, tin and lead and 1.25 to 5 mole percent aromatic monocarboxylic having the general formula ##STR18## where the radical R is a phenyl or naphthyl which can be unsubstituted or substituted with one or more substituents selected from the group C.sub.1-20 alkyl, C.sub.3-8 cycloalkyl, C.sub.1-20 alkoxy and halogen in an inverted multiple-blade conical vessel wherein the blades have a helical configuration and are arranged to rotate through essentially the entire reaction mass and in close proximity to the interior surface of said conical vessel and in a direction which provides a downward flow within the reaction mixture.
- 10. The process of claim 1 wherein the hetero-macrocyclic compound is ethylene brassylate and conducted at a temperature between about 250.degree. C. and 350.degree. C. pressure in the range 0.01 to 10 mm Hg and in the presence of about 0.1 to 5 weight percent of an oxide, hydroxide, chloride or carboxylate of a metal selected from the group consisting of magnesium, titanium, manganese, iron, cobalt, tin and lead and 1.25 to 5 mole percent aromatic monocarboxylate having the general formula ##STR19## where the radical R is a phenyl or naphthyl which can be unsubstituted or substituted with one or more substituents selected from the group C.sub.1-20 alkyl, C.sub.3-8 cycloalkyl, C.sub.1-20 alkoxy and halogen in an inverted multiple-blade conical vessel wherein the blades have a helical configuration and are arranged to rotate through essentially the entire reaction mass and in close proximity to the interior surface of said conical vessel and in a direction which provides a downward flow within the reaction mixture.
- 11. The process of claims 7, 8, 9 or 10 wherein the depolymerization is carried out in a conical vessel formed by two inverted intersecting vertical cones fitted with two conical helical ribbon blades, which fit the inner contour of the bowl formed by the cones and whose axes conicide with the axes of the cones, and which intermesh as they rotate in opposite directions at the same speed and the catalyst is an oxide, hydroxide, chloride or carboxylate of lead or tin.
- 12. The process of claim 11 wherein the catalyst is a lead carboxylate of an organic acid having from 8 to 22 carbon atoms.
CROSS-REFERENCES
This is a continuation-in-part of our copending application Ser. No. 835,253, filed Sept. 21, 1977, now U.S. Pat. No. 4,165,321.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4105672 |
Rueter et al. |
Aug 1978 |
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Non-Patent Literature Citations (2)
Entry |
Chemical Abstracts, vol. 78 (1973) 158966q; 158968s. |
Chemical Abstracts, vol. 79 (1973) 6158k. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
835253 |
Sep 1977 |
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