IP Library Patent Application 17992368
Patent Application
App. No. 17/992,368

THERMAL FRACTURE AND MICROCARBON SEPARATION OF COAL PARTICLES

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Patent No.
US None
App. No.
17/992,368
Abstract

A process for fracturing and devolatilizing coal particles rapidly exposes coal particles to a high temperature, oxygen-depleted work zone for a sufficient time period to cause volatile matter within the coal particles to vaporize and fracture the coal particles. The work zone has a temperature in the range from 600° C. to 2000° C. The coal particles are exposed to the high temperature, oxygen-depleted work zone for a time period less than 1 seconds, and preferably less than 0.3 second. The vaporized volatile matter is condensed and recovered as microcarbon particles.

Claims (25)

1 . A process for fracturing coal particles comprising exposing coal particles to a high temperature, oxygen-depleted work zone for a time period less than 2 seconds to cause volatile matter within the coal particles to vaporize and fracture the coal particles and to produce coal-derived low volatile matter and fractured particles, wherein the work zone has a temperature in the range from 1000° C. to 2000° C., wherein the high temperature, oxygen-depleted work zone contains less than 1.5% oxygen.

2 . The process for fracturing coal particles according to claim 1 , wherein the coal particles are exposed to the high temperature, oxygen-depleted work zone for a time period less than 1 second.

3 . The process for fracturing coal particles according to claim 1 , wherein the coal particles are exposed to the high temperature, oxygen-depleted work zone for a time period less than 0.3 second.

4 . The process for fracturing coal particles according to claim 1 , wherein the coal-derived low volatile matter and fractured particles have a diameter that is 5 times or more smaller than the original coal particles, a volatile matter content less than 10% by weight, a carbon content greater than 90% by weight, a sulfur content less than 1% by weight, a nitrogen content less than 1% by weight.

5 . The process for fracturing coal particles according to claim 1 , wherein the coal particles have a particle size less than 10 mm.

6 . The process for fracturing coal particles according to claim 1 , wherein the coal-derived low volatile matter and fractured particles have an average particle size less than 200 μm.

7 . The process for fracturing coal particles according to claim 1 , wherein the vaporized volatile matter form coal-derived microcarbon particles within the work zone.

8 . The process for fracturing coal particles according to claim 1 , wherein the high temperature, oxygen-depleted work zone is obtained from combustion gas exiting a pulse combustor or pulse jet engine.

9 . The process for fracturing coal particles according to claim 1 , wherein the high temperature, oxygen-depleted work zone contains less than 1.0% oxygen.

10 . The process for fracturing coal particles according to claim 1 , wherein the coal particles are unprocessed and have a given particle size, volatile matter content, sulfur content, and nitrogen content on an ash-free basis, and wherein the coal-derived low volatile matter and fractured particles are characterized by a reduction of two or more of particle size, volatile matter content, sulfur content, and nitrogen content on an ash-free basis compared to the unprocessed coal particles.

11 . A thermal mill for reducing the particle size of coal particles comprising:

a work zone having a coal particle inlet and a fractured particle outlet;

a source of high temperature, oxygen-depleted gas connected to the work zone to provide the work zone with an operating temperature in the range from 1000° C. to 2000° C., wherein the high temperature, oxygen-depleted work zone contains less than 1.5% oxygen; and

a source of moving gas to entrain and convey coal particles via the coal particle inlet into the work zone for a time period less than 2 seconds to cause volatile matter within the coal particles to vaporize and fracture the coal particles, thereby forming coal-derived low volatile matter and fractured particles, and to entrain and convey the coal-derived low volatile matter and fractured particles via the fractured particle outlet.

12 . The thermal mill according to claim 11 , further comprising a cyclone to recover the coal-derived low volatile and fractured particles.

13 . The thermal mill according to claim 11 , wherein the coal particles have a particle size less than 10 mm.

14 . The thermal mill according to claim 13 , wherein the coal-derived low volatile and fractured particles have an average particle size less than 200 μm.

15 . The thermal mill according to claim 11 , wherein the coal particles are exposed to the work zone for a time period less than 1 second.

16 . A coal-derived solid material obtained by exposing unprocessed coal particles having a given particle size, volatile matter content, carbon content, sulfur content, nitrogen content, and entrained mineral matter content to an oxygen depleted gas at a temperature greater than 1000° C. for a time period less than 2 seconds, wherein the resulting coal-derived solid material is characterized by a reduction of one or more of particle size, volatile matter content, carbon content, sulfur content, nitrogen content, and entrained mineral matter content compared to the unprocessed coal particles.

17 . The coal-derived solid material according to claim 16 , having a sulfur content less than 50% of the sulfur content of the unprocessed coal particles.

18 . The coal-derived solid material according to claim 16 , having a volatile matter content less than 10% by weight.

19 . The coal-derived solid material according to claim 16 , having an average particle size less than 50% of the average particle size of the unprocessed coal particles.

20 . The coal-derived solid material according to claim 16 , having a reduced diameter compared to the unprocessed coal particles, a volatile matter content less than 10% by weight, a carbon content greater than 90% by weight, a sulfur content less than 1% by weight, and a nitrogen content less than 1.5% by weight.

21 . The coal-derived solid material according to claim 16 , consisting of coal-derived low volatile matter and fractured particles.

22 . The coal-derived solid material according to claim 16 , consisting of coal-derived microcarbon particles.

Assignments (3)
AMENDMENT AND SUPPLEMENT TO INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jul 14, 2026
From: OMNIS ADVANCED TECHNOLOGIES, LLC
To: RG ENERGY LLC
Reel/Frame 075971/0194 →
AMENDMENT AND SUPPLEMENT TO INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jul 14, 2026
From: OMNIS ADVANCED TECHNOLOGIES, LLC
To: TRAG LLC
Reel/Frame 075974/0790 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2022
From: SWENSEN, JAMES S.; GRUNDER, DOUGLAS E.; HODSON, SIMON K.
To: OMNIS ADVANCED TECHNOLOGIES, LLC
Reel/Frame 061855/0966 →