IP Library Granted Patent US 10,669,248
Granted Patent B2
US 10,669,248 · App. 16/271,782 · Granted Jun 2, 2020

Methods to chemically modify cannabinoids

Inventors: C. Russell Thomas (Boulder, CO); Matthew M. DePalo (Broomfield, CO)
Assignee: Natural Extraction Systems, LLC
C07D311/78C07C29/80C07C67/08B01D5/006
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Quick Facts
Patent No.
US 10,669,248
App. No.
16/271,782
Granted
Jun 2, 2020
Kind
B2
Abstract

Various aspects of this disclosure relate to methods to lower the activation energy of the cannabinoid decarboxylation reaction by performing the decarboxylation reaction in the gas phase.

Claims (77)

1. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the cannabinoids comprise a native cannabinoid molecule, the native cannabinoid molecule comprises a carboxyl group, and the native cannabinoid molecule is in a liquid phase or a solid phase;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate, in which at least 95% of the native cannabinoid molecule is converted into the condensed cannabinoid molecule per mole; and

collecting the liquid distillate.

2. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the cannabinoids comprise a native cannabinoid molecule, the native cannabinoid molecule comprises a carboxyl group, and the native cannabinoid molecule is in a liquid phase or a solid phase;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate; and

collecting the liquid distillate, in which the liquid distillate comprises the condensed cannabinoid molecule and cannabinol at a molar ratio greater than 100:1.

3. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the cannabinoids comprise a native cannabinoid molecule, the native cannabinoid molecule comprises a carboxyl group, and the native cannabinoid molecule is in a liquid phase or a solid phase;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate;

collecting the liquid distillate, in which the liquid distillate comprises ethanol; and

evaporating the ethanol to produce a product from the liquid distillate, in which the product comprises the condensed cannabinoid molecule at a concentration of at least 55% by weight.

4. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the cannabinoids comprise a native cannabinoid molecule, the native cannabinoid molecule comprises a carboxyl group, and the native cannabinoid molecule is in a liquid phase or a solid phase;

contacting the composition with 2 kilojoules to 50 kilojoules of energy per gram of the composition thereby converting the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate; and

collecting the liquid distillate.

5. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the cannabinoids comprise a native cannabinoid molecule, the native cannabinoid molecule comprises a carboxyl group, and the native cannabinoid molecule is in a liquid phase or a solid phase;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate; and

collecting the liquid distillate,

in which contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) the carbon dioxide molecule and (ii) the modified cannabinoid molecule in the gas phase comprises contacting the composition with energy at a rate of less than 100 kilowatts of power per gram of the composition for a duration of less than 60 seconds.

6. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids and cellulose, in which the cannabinoids comprise a native cannabinoid molecule, the native cannabinoid molecule comprises a carboxyl group, and the native cannabinoid molecule is in a liquid phase or a solid phase;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

separating the modified cannabinoid molecule in the gas phase from the cellulose;

collecting the cellulose;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate; and

collecting the liquid distillate.

7. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the cannabinoids comprise a native cannabinoid molecule, the native cannabinoid molecule comprises a carboxyl group, and the native cannabinoid molecule is in a liquid phase or a solid phase;

suspending a particle or a droplet of the composition comprising cannabinoids in a gas phase, in which the particle or droplet comprises the native cannabinoid molecule;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate; and

collecting the liquid distillate.

8. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the cannabinoids comprise a native cannabinoid molecule, the native cannabinoid molecule comprises a carboxyl group, and the native cannabinoid molecule is in a liquid phase or a solid phase;

coating a heated surface with the composition at a surface-area-to-volume ratio of the composition that is greater than 500 per meter;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate; and

collecting the liquid distillate.

9. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the cannabinoids comprise a native cannabinoid molecule, the native cannabinoid molecule comprises a carboxyl group, and the native cannabinoid molecule is in a liquid phase or a solid phase;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

directing the composition along a heated path having a length of at least 4 meters, in which the composition is contacted with the sufficient energy in the heated path;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate; and

collecting the liquid distillate.

10. The method of claim 9 , comprising directing the composition comprising cannabinoids along a heated path at a rate of at least 2 meters per second.

11. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the cannabinoids comprise a native cannabinoid molecule, the native cannabinoid molecule comprises a carboxyl group, and the native cannabinoid molecule is in a liquid phase or a solid phase;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate; and

collecting the liquid distillate,

in which both contacting the composition with the sufficient energy and condensing the modified cannabinoid molecule into the condensed cannabinoid molecule are performed in less than 60 seconds.

12. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the composition has a surface-area-to-volume ratio greater than 1000 per meter; the cannabinoids comprise a native cannabinoid molecule; the native cannabinoid molecule comprises a carboxyl group; and the native cannabinoid molecule is in a liquid phase or a solid phase;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate; and

collecting the liquid distillate.

13. A method to chemically modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the cannabinoids comprise a native cannabinoid molecule; the native cannabinoid molecule is cannabidiolic acid or tetrahydrocannabinolic acid; the composition comprises the native cannabinoid molecule at a concentration of at least 5% by weight; the native cannabinoid molecule is in a liquid phase or a solid phase;

contacting the composition with sufficient energy to convert the native cannabinoid molecule into (i) a carbon dioxide molecule and (ii) a modified cannabinoid molecule in a gas phase;

contacting the modified cannabinoid molecule with a heat sink to condense the modified cannabinoid molecule into a condensed cannabinoid molecule in a liquid distillate, in which at least 95% of the native cannabinoid molecule is converted into the condensed cannabinoid molecule per mole; and

collecting the liquid distillate.

14. A method to chemically-modify a cannabinoid molecule, comprising:

providing a composition comprising cannabinoids, in which the composition has a surface-area-to-volume ratio greater than 1000 per meter, the cannabinoids comprise cannabidiolic acid at a concentration of at least 5% by weight, and the cannabidiolic acid is in a liquid phase or a solid phase;

contacting the composition with sufficient energy to convert the cannabidiolic acid into (i) a carbon dioxide molecule and (ii) gas phase cannabidiol;

contacting the gas phase cannabidiol with a heat sink to condense the gas phase cannabidiol into liquid phase cannabidiol of a liquid distillate, in which at least 95% of the cannabidiolic acid is converted into the liquid phase cannabidiol per mole; and

collecting the liquid distillate.

15. The method of claim 14 , comprising:

contacting the composition with 2 kilojoules to 50 kilojoules of energy per gram of the composition to convert the cannabidiolic acid into (i) the carbon dioxide molecule and (ii) the gas phase cannabidiol; and

contacting the gas phase cannabidiol with the heat sink less than 240 seconds after contacting the composition with the 2 kilojoules to 50 kilojoules of energy per gram of the composition.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2019
From: THOMAS, C. RUSSELL; DEPALO, MATTHEW M.; METCALF, DOUGLAS G.
To: NATURAL EXTRACTION SYSTEMS, LLC
Reel/Frame 048297/0954 →
Continuity (3)
Provisional Application 62717235 · Aug 10, 2018
Provisional Application 62803408 · Feb 8, 2019
Related Publication 20200048214A1 · Feb 13, 2020
Cited By (5)
US 12,297,181 US 12,420,214 US 12,453,930 US 12,544,390 US 12,606,535