IP Library Patent Application 17810781
Patent Application
App. No. 17/810,781

METHOD FOR SEPARATING AND RECOVERING LIGNIN AND MELTABLE FLOWABLE BIOLIGNIN POLYMERS

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
17/810,781
Abstract

Lignin is recovered from biomass or byproducts from biomass processing through the use of organic solvents and water while modifying the form or composition of the lignin. During the separation and recovery process, the lignin can be modified or integrated into a form which is more suitable for its intended use. As the lignin is suspended or is soluble within the organic solvent, the integration of materials or reactants may be more easily blended or dispersed within the lignin to improve performance, quality and overall production efficiency.

Claims (32)

1 . A method of making biofuel feedstock, comprising:

a) providing sufficient heat and pressure to a mixture of biomass, non-polar lignin solvent, water, and carrier fluid to convert a hemicellulose fraction of the biomass into an additional carrier fluid comprising an organic furan, and to solubilize a fraction of lignin from the biomass into the non-polar lignin solvent and carrier fluid, leaving a pulp and a liquid, the liquid comprising an organic fraction and an aqueous fraction, the pulp comprising solids;

b) separating the pulp from the liquid fraction;

c) phase separating the liquid fraction into an aqueous layer and organic layer, the organic layer comprising at least a portion of the non-polar lignin solvent and the carrier fluid; and

d) evaporation of at least a portion of the lignin solvent from the organic layer to leave a flowable biopolymer lignin biofuel feedstock.

2 . The method of claim 1 , wherein the biomass comprises a lignocellulosic biomass selected from the group consisting of woody biomass, trees, wood residuals, crop residues, nut hulls, oil seeds, kraft lignin, cellulosic biorefinery byproducts, and combinations thereof.

3 . The method of claim 1 , wherein the lignin solvent comprises a solvent selected from the group consisting of n-butanol, butyl acetate, butyl ester, furfural, and combinations thereof.

4 . The method of claim 1 , wherein the carrier fluid comprises a fluid selected from the group consisting of crude tall oil, vegetable oil, animal fatty acid, and combinations thereof.

5 . The method of claim 1 , wherein additional carrier fluid is added to the organic layer prior to evaporation of the lignin solvent.

6 . The method of claim 1 , wherein the mixture of biomass, non-polar lignin solvent, water, and carrier fluid is heated to a temperature: greater than 20° C. and less than 400° C., or greater than 50° C. and less than 250° C., or greater than 100° C. and less than 250° C., or greater than 100° C. and less than 225° C., or greater than 100° C. and less than 200° C., or greater than 150° C. and less than 250° C., or greater than 150° C. and less than 225° C., or greater than 150° C. and less than 200° C., or greater than 100° C. and less than 180° C., in a reactor wherein the reactor has a pressure equal to or greater than the vapor pressure of the lignin solvent at process operating temperature to prevent boiling or to control the vaporization of the lignin solvent.

7 . The method of claim 1 , wherein the mixture of biomass, non-polar lignin solvent, water, and carrier fluid are heated to an operating temperature with an operating pressure equal to the lignin solvent vapor pressure, or between 0 psig and 50 psig above the solvent vapor pressure, or between 15 psig and 75 psig above the solvent vapor pressure, or between 50 psig and 100 psig above the solvent vapor pressure, or between 75 psig and 250 psig above the solvent vapor pressure, or between 150 and 450 psig above the solvent vapor pressure, or between 300 and 600 psig above the solvent vapor pressure, or between 500 and 2000 psig above the solvent vapor pressure at the operating temperature.

8 . The method of claim 1 , wherein the separation steps have carryover of liquids in the separated pulp, or solids in the separated liquid fraction.

9 . The method of claim 1 , wherein the separated liquid fraction is further processed using a liquid-liquid separation system selected from the group consisting of density separation, gravity separation, decantation, centrifugal separation, chemical separation, evaporation, distillation, and membrane separation.

10 . A method comprising processing the flowable biopolymer lignin biofuel feedstock of claim 1 into a biofuel using a hydrothermal process.

11 . The method of 10 , wherein the hydrothermal process is selected from the group consisting of hydrotreating, hydrothermal processing, pyrolysis, and Fischer Tropsch processing.

12 . The method of claim 10 , wherein the biofuel is selected from the group consisting of gasoline, diesel, marine fuel, jet fuel, and combinations thereof.

13 . A method of making a bio-feedstock, comprising:

a) providing sufficient heat and pressure to a mixture of biomass, non-polar lignin solvent, and water to convert a hemicellulose fraction of the biomass into an organic furan lignin solvent and a furfural non-polar carrier fluid, and to solubilize a portion of the lignin from the biomass into the lignin solvents, leaving a pulp and a liquid;

b) separating the pulp from the liquid fraction;

c) phase separating the liquid fraction into an organic layer and an aqueous layer; and

d) evaporating at least a portion of the lignin solvent in the organic layer leaving a melt flowable thermoplastic biopolymer lignin that is solid at room temperature.

14 . The method of claim 13 , wherein the biomass comprises a lignocellulosic biomass selected from the group consisting of woody biomass, trees, wood residuals, crop residues, nut hulls, oil seeds, kraft lignin, cellulosic biorefinery byproducts, and combinations thereof.

15 . The method of claim 13 , wherein the lignin solvent comprises a solvent selected from the group consisting of n-butanol, butyl acetate, butyl ester, organic furans, and combinations thereof.

16 . The method of claim 13 , wherein the carrier fluid comprises a self-generated fluid selected from the group consisting of furfural, tetrahydrofuran, esters, and combinations thereof.

17 . The method of claim 13 , wherein the mixture of biomass and lignin solvent is heated to a temperature: greater than 20° C. and less than 400° C., or greater than 50° C. and less than 250° C., or greater than 100° C. and less than 250° C., or greater than 100° C. and less than 225° C., or greater than 100° C. and less than 200° C., or greater than 150° C. and less than 250° C., or greater than 150° C. and less than 225° C., or greater than 150° C. and less than 200° C., or greater than 100° C. and less than 180° C., in a reactor wherein the reactor has a pressure is equal to or greater than the vapor pressure of the lignin solvent and at process operating temperature to prevent boiling or to control vaporization of the lignin solvent

18 . The method of claim 13 , wherein the mixture of biomass and lignin solvent are heated to an operating temperature with an operating pressure: equal to the lignin solvent vapor pressure, or between 0 psig and 50 psig above the lignin solvent vapor pressure, or between 15 psig and 75 psig above the lignin solvent vapor pressure, or between 50 psig and 100 psig above the lignin solvent vapor pressure, or between 75 psig and 250 psig above the lignin solvent vapor pressure, or between 150 psig and 450 psig above the lignin solvent vapor pressure, or between 300 psig and 600 psig above the lignin solvent vapor pressure, or between 500 psig and 2000 psig above the lignin solvent vapor pressure at the operating temperature.

19 . The method of claim 13 , wherein the separation steps have carryover of liquids in the separated pulp, or solids in the separated liquid fraction.

20 . The method of claim 13 , wherein the phase separation of the liquid fraction comprises a system selected from the group consisting of density separation, gravity separation, decanting, centrifugal separation, chemical separation, evaporation, distillation, and membrane separation.

21 . A method comprising heating the solid melt flowable thermoplastic biopolymer lignin of claim 13 until it is a flowable liquid; and processing the flowable liquid into a biofuel using a hydrothermal process.

22 . The method of claim 21 , wherein hydrothermal process is selected from the group consisting of hydrotreating, hydrothermal processing, pyrolysis, and Fischer Tropsch processing.

23 . The method of claim 21 , wherein the biofuel is selected from the group consisting of gasoline, diesel, marine fuel, jet fuel, and combinations thereof.

24 . A method comprising processing the solid melt flowable thermoplastic biopolymer lignin of claim 13 to make a product selected from the group consisting of plastics, bioplastics, elastomers, bioelastomers, composites, coatings, adhesives, binders, plastic additives, tackifiers, asphalt, asphalt binders, and graphite products.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2025
From: COMSTOCK IP HOLDINGS LLC
To: BIOLEUM CORPORATION
Reel/Frame 072203/0088 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 5, 2022
From: WINSNESS, DAVID
To: GREENSHIFT CORPORATION
Reel/Frame 060403/0801 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 5, 2022
From: GREENSHIFT CORPORATION
To: PLAIN SIGHT INNOVATIONS LLC
Reel/Frame 060403/0851 →
CHANGE OF NAME Recorded Jul 5, 2022
From: PLAIN SIGHT INNOVATIONS LLC
To: COMSTOCK IP HOLDINGS LLC
Reel/Frame 060588/0457 →