IP Library Granted Patent US 11,932,814
Granted Patent B2
US 11,932,814 · App. 17/731,202 · Granted Mar 19, 2024

Biocarbon blends with optimized fixed carbon content, and methods for making and using the same

Inventors: James A. Mennell (Brighton, UT); Dustin Slack (Gwinn, MI); Daren Daugaard (Newburg, MO)
Assignee: CARBON TECHNOLOGY HOLDINGS, LLC
C10B53/02C04B35/532C04B35/62204C04B35/62695C04B35/636C10B57/02C10B57/06C10B57/10C04B2235/422C04B2235/48
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Quick Facts
Patent No.
US 11,932,814
App. No.
17/731,202
Granted
Mar 19, 2024
Kind
B2
Abstract

In some variations, the invention provides a biocarbon composition comprising a low fixed carbon material with a fixed carbon concentration from 20 wt % to 55 wt %; a high fixed carbon material with a fixed carbon concentration from 50 wt % to 100 wt % (and higher than the fixed carbon concentration of the low fixed carbon material; from 0 to 30 wt % moisture; from 0 to 15 wt % ash; and from 0 to 20 wt % of one or more additives (such as a binder). Some variations provide a process for producing a biocarbon composition, the process comprising: pyrolyzing a first biomass-containing feedstock to generate a low fixed carbon material; separately pyrolyzing a second biomass-containing feedstock to generate a high fixed carbon material; blending the low fixed carbon material with the high fixed carbon material, thereby generating an intermediate material; optionally, blending one or more additives into the intermediate material; optionally, drying the intermediate material; and recovering a biocarbon composition containing the intermediate material or a thermally treated form thereof.

Claims (32)

1. A process for producing a biocarbon composition, said process comprising:

(a) pyrolyzing a first biomass-containing feedstock to generate a low-fixed-carbon material and a first pyrolysis off-gas, wherein said low-fixed-carbon material has a first fixed-carbon concentration from about 10 wt % to about 55 wt % fixed carbon on an ab solute basis;

(b) separately from step (a), pyrolyzing a second biomass-containing feedstock to generate a high-fixed-carbon material and a second pyrolysis off-gas, wherein said high-fixed-carbon material has a second fixed-carbon concentration from about 50 wt % to about 100 wt % fixed carbon on an absolute basis, and wherein said second fixed-carbon concentration is higher than said first fixed-carbon concentration;

(c) blending at least a portion of said low-fixed-carbon material with at least a portion of said high-fixed-carbon material, thereby generating an intermediate material;

(d) optionally, blending one or more additives into said intermediate material;

(e) optionally, drying said intermediate material; and

(f) recovering a biocarbon composition containing said intermediate material or a thermally treated form thereof;

wherein said low-fixed-carbon material is contained in a shell or coating around a core comprising said high-fixed-carbon material.

2. A process for producing a biocarbon composition, said process comprising:

(a) pyrolyzing a first biomass-containing feedstock to generate a low-fixed-carbon material and a first pyrolysis off-gas, wherein said low-fixed-carbon material has a first fixed-carbon concentration from about 10 wt % to about 55 wt % fixed carbon on an ab solute basis;

(b) separately from step (a), pyrolyzing a second biomass-containing feedstock to generate a high-fixed-carbon material and a second pyrolysis off-gas, wherein said high-fixed-carbon material has a second fixed-carbon concentration from about 50 wt % to about 100 wt % fixed carbon on an absolute basis, and wherein said second fixed-carbon concentration is higher than said first fixed-carbon concentration;

(c) blending at least a portion of said low-fixed-carbon material with at least a portion of said high-fixed-carbon material, thereby generating an intermediate material;

(d) optionally, blending one or more additives into said intermediate material;

(e) optionally, drying said intermediate material; and

(f) recovering a biocarbon composition containing said intermediate material or a thermally treated form thereof;

wherein said high-fixed-carbon material is contained in a shell or coating around a core comprising said low-fixed-carbon material.

3. A process for producing a biocarbon composition, said process comprising:

(a) pyrolyzing a first biomass-containing feedstock to generate a low-fixed-carbon material and a first pyrolysis off-gas, wherein said low-fixed-carbon material has a first fixed-carbon concentration from about 10 wt % to about 55 wt % fixed carbon on an ab solute basis;

(b) separately from step (a), pyrolyzing a second biomass-containing feedstock to generate a high-fixed-carbon material and a second pyrolysis off-gas, wherein said high-fixed-carbon material has a second fixed-carbon concentration from about 50 wt % to about 100 wt % fixed carbon on an absolute basis, and wherein said second fixed-carbon concentration is higher than said first fixed-carbon concentration;

(c) blending at least a portion of said low-fixed-carbon material with at least a portion of said high-fixed-carbon material, thereby generating an intermediate material;

(d) optionally, blending one or more additives into said intermediate material;

(e) optionally, drying said intermediate material; and

(f) recovering a biocarbon composition containing said intermediate material or a thermally treated form thereof;

wherein said high-fixed-carbon material is in the form of particulates in a continuous phase of said low-fixed-carbon material.

4. A process for producing a biocarbon composition, said process comprising:

(a) pyrolyzing a first biomass-containing feedstock to generate a low-fixed-carbon material and a first pyrolysis off-gas, wherein said low-fixed-carbon material has a first fixed-carbon concentration from about 10 wt % to about 55 wt % fixed carbon on an ab solute basis;

(b) separately from step (a), pyrolyzing a second biomass-containing feedstock to generate a high-fixed-carbon material and a second pyrolysis off-gas, wherein said high-fixed-carbon material has a second fixed-carbon concentration from about 50 wt % to about 100 wt % fixed carbon on an absolute basis, and wherein said second fixed-carbon concentration is higher than said first fixed-carbon concentration;

(c) blending at least a portion of said low-fixed-carbon material with at least a portion of said high-fixed-carbon material, thereby generating an intermediate material;

(d) optionally, blending one or more additives into said intermediate material;

(e) optionally, drying said intermediate material; and

(f) recovering a biocarbon composition containing said intermediate material or a thermally treated form thereof;

wherein said low-fixed-carbon material is in the form of particulates in a continuous phase of said high-fixed-carbon material.

Assignments (4)
SECURITY INTEREST Recorded Feb 5, 2025
From: CARBON TECHNOLOGY HOLDINGS, LLC
To: ALTER DOMUS (US) LLC
Reel/Frame 070114/0775 →
RELEASE OF SECURITY INTEREST Recorded Feb 4, 2025
From: FORTRESS CREDIT CORP.
To: CARBON TECHNOLOGY HOLDINGS, LLC
Reel/Frame 070608/0239 →
SECURITY INTEREST Recorded Feb 12, 2024
From: CARBON TECHNOLOGY HOLDINGS, LLC
To: FORTRESS CREDIT CORP.
Reel/Frame 066552/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2022
From: MENNELL, JAMES A.; SLACK, DUSTIN; DAUGAARD, DAREN
To: CARBON TECHNOLOGY HOLDINGS, LLC
Reel/Frame 061210/0727 →
Continuity (2)
Provisional Application 63180240 · Apr 27, 2021
Related Publication 20220340818A1 · Oct 27, 2022
Cited By (2)
US 12,674,108 US 12,674,110