IP Library Patent Application 19081962
Patent Application
App. No. 19/081,962

SYSTEMS AND METHODS FOR PARTICLE CLASSIFICATION

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Quick Facts
Patent No.
US None
App. No.
19/081,962
Abstract

Systems and methods for classifying carbon particles by size. Multiple classifiers separate carbon particles into size ranges. One or more of the size ranges of the carbon particles is separately infiltrated with an electrochemical modifier to create a uniform composite material. One or more of the uniform composite materials are blended according to a desired specification.

Claims (54)

1 . A method comprising:

classifying pyrolyzed, activated carbon particles using a multi-stage classification system to produce multiple size classes of pyrolyzed, activated carbon particles; and

separately infiltrating pores of each size class of the pyrolyzed, activated carbon particles with an electrochemical modifier to form a plurality of uniformly sized composite particles.

2 . The method of claim 1 , further comprising blending the uniformly sized composite particles from two or more of the plurality of uniformly sized composite particles based on a predefined specification.

3 . The method of claim 1 , wherein classifying further comprises:

sending the pyrolyzed, activated carbon particles through a plurality of elbow jet classifiers.

4 . The method of claim 3 , wherein sending comprises:

separating the pyrolyzed, activated carbon particles into a first target size range and one or more non-target size ranges at a first elbow jet classifier;

sending the pyrolyzed, activated carbon particles associated with a first one of the non-target size ranges to a second elbow jet classifier;

separating the pyrolyzed, activated carbon particles into a second target size range and one or more non-target size ranges at the second elbow jet classifier;

sending the pyrolyzed, activated carbon particles associated with a second one of the non-target size ranges from the first classifier to a third elbow jet classifier; and separating the pyrolyzed, activated carbon particles into a third target size range and one or more non-target size ranges at the third elbow jet classifier.

5 . The method of claim 4 , wherein sending further comprises:

at the second elbow jet classifier, sending the pyrolyzed, activated carbon particles associated with a third one of the non-target size ranges to the first elbow jet classifier for reprocessing; and

at the third elbow jet classifier, sending the pyrolyzed, activated carbon particles associated with a fourth one of the non-target size ranges to the first elbow jet classifier for reprocessing.

6 . The method of claim 4 , wherein classifying further comprises:

refluxing at least a portion of the pyrolyzed, activated carbon particles associated with any of the size ranges at any of the elbow jet classifiers.

7 . The method of claim 4 , further comprising:

at an n th elbow jet classifier, separating the pyrolyzed, activated carbon particles into an additional target size range and one or more additional non-target size ranges, where n represents an integer greater than three; and

sending the pyrolyzed, activated carbon particles associated with one of the additional non-target size ranges to one of the first, second, third, or n th elbow jet classifiers.

8 . A system comprising:

a porous carbon production system configured to produce pyrolyzed, activated carbon particles;

a multi-stage classification system configured to separate the pyrolyzed, activated carbon particles into multiple size classes; and

a chemical vapor infiltration system configured separately infiltrate pores of at least one of the size classes of the pyrolyzed, activated carbon particles with an electrochemical modifier to form uniformly sized composite particles.

9 . The system of claim 8 , further comprising a blending device configured to blend the uniformly sized composite particles from two or more of the size classes based on a predefined specification.

10 . The system of claim 8 , wherein the multi-stage classification system comprises a plurality of elbow jet classifiers.

11 . The system of claim 10 , wherein the plurality of elbow jet classifiers comprises:

a first elbow jet classifier configured to separate the pyrolyzed carbon particles into a first target size range and one or more non-target size ranges;

a second elbow jet classifier configured to:

receive the pyrolyzed carbon particles associated with a first one of the non-target size ranges from the first elbow jet classifier; and

separate the pyrolyzed carbon particles into a second target size range and one or more non-target size ranges; and

a third elbow jet classifier configured to:

receive the pyrolyzed carbon particles associated with a second one of the non-target size ranges from the first elbow jet classifier; and

separate the pyrolyzed carbon particles into a third target size range and one or more non-target size ranges.

12 . The system of claim 11 , wherein:

the second elbow jet classifier is further configured to send the pyrolyzed carbon particles associated with a third one of the non-target size ranges to the first elbow jet classifier for reprocessing; and

the third elbow jet classifier is further configured to send the pyrolyzed carbon particles associated with a fourth one of the non-target size ranges to the first elbow jet classifier for reprocessing.

13 . The system of claim 11 , wherein one or more of the elbow jet classifiers comprises a reflux device configured to reprocess a portion of the pyrolyzed carbon particles associated with any of the target size ranges.

14 . The system of claim 10 , further comprising one or more hoppers configured to receive pyrolyzed carbon particles to be fed to one or more of the elbow jet classifiers.

15 . The system of claim 14 , wherein the one or more hoppers comprise one or more cyclone hoppers.

16 . A particle classification system comprising:

a plurality of elbow jet classifiers configured to separate pyrolyzed, activated carbon particles into multiple size classes.

17 . The system of claim 16 , wherein the plurality of elbow jet classifiers comprises:

a first elbow jet classifier configured to separate the pyrolyzed carbon particles into a first target size range and one or more non-target size ranges;

a second elbow jet classifier configured to:

receive the pyrolyzed carbon particles associated with a first one of the non-target size ranges from the first elbow jet classifier; and

separate the pyrolyzed carbon particles into a second target size range and one or more non-target size ranges; and

a third elbow jet classifier configured to:

receive the pyrolyzed carbon particles associated with a second one of the non-target size ranges from the first elbow jet classifier; and

separate the pyrolyzed carbon particles into a third target size range and one or more non-target size ranges.

18 . The system of claim 17 , wherein:

the second elbow jet classifier is further configured to send the pyrolyzed carbon particles associated with a third one of the non-target size ranges to the first elbow jet classifier for reprocessing; and

the third elbow jet classifier is further configured to send the pyrolyzed carbon particles associated with a fourth one of the non-target size ranges to the first elbow jet classifier for reprocessing.

19 . The system of claim 17 , wherein one or more of the elbow jet classifiers comprises a reflux device configured to reprocess a portion of the pyrolyzed carbon particles associated with the target size range.

20 . The system of claim 16 , further comprising one or more hoppers configured to receive pyrolyzed carbon particles to be fed to one or more of the elbow jet classifiers.

Assignments (2)
SECURITY INTEREST Recorded Jul 1, 2026
From: GROUP14 TECHNOLOGIES, INC.
To: NOMURA STRATEGIC VENTURES FUND 1, LP
Reel/Frame 075876/0771 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2025
From: VIDONI, ADAM; ALEXANDER, SYDNEY; COSTANTINO, HENRY R.; TIMMONS, CHRISTOPHER
To: GROUP14 TECHNOLOGIES, INC.
Reel/Frame 070725/0495 →