IP Library Granted Patent US 12,280,408
Granted Patent B2
US 12,280,408 · App. 18/230,269 · Granted Apr 22, 2025

Systems and methods for processing mixed solid waste

Inventor: George Gitschel (Houston, TX)
Assignee: Upland Road IP Holdco LLC
B09B5/00B02C23/14B03B9/06B09B3/00C10G1/10C10L5/46B29B17/02B29B2017/0279B29K2023/065B29K2027/06B29K2067/003C10G2300/1003C10L2290/08C10L2290/26C10L2290/54C12P5/023Y02E50/10Y02E50/30Y02P20/129Y02P20/133Y02T10/12Y02W30/20Y02W30/62
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Quick Facts
Patent No.
US 12,280,408
App. No.
18/230,269
Granted
Apr 22, 2025
Kind
B2
Abstract

Solid waste that includes a mixture of wet organic material and dry organic material can be are separated using mechanical separation to produce a wet organic stream enriched in wet organics and a dry organic stream enriched in dry organics. The separated wet organic stream and dry organic stream are separately converted to renewable or recyclable products using different conversion techniques particularly suited for the separated wet and dry organic streams.

Claims (54)

1. A method for recovering recyclable materials from mixed solid waste stream using optical sorters, comprising:

providing a mixed waste stream comprising high value recyclable material including paper and rigid plastic, said rigid plastic excluding PVC, wherein the mixed waste stream includes at least 20% and less than 100% by weight of low value material selected from the group consisting of wet organics, green waste, grit, fines less than 1 inch, concrete, textiles, rubber, film plastic, PVC, foil, rock, used consumer products, low value glass, composite materials, and combinations of these;

fractionating the mixed waste stream by size by performing an upper size cut and a lower size cut to produce a sized waste stream, the sized waste stream having a particle size range where a particle size ratio of an upper cut-off to a lower cut-off is greater than 1 and less than 4;

fractionating the sized waste stream by density to produce an intermediate waste stream enriched in the paper and rigid plastic; and

using a first one or more optical sorters to:

scan the intermediate waste stream for paper; and

eject the paper from the intermediate waste stream;

using a second one or more optical sorters to:

scan the intermediate waste stream for plastic; and

eject the plastic from the intermediate waste stream;

producing a sorted paper material and a sorted plastic material.

2. The method of claim 1 wherein performing the lower size cut includes screening the mixed waste stream using a first sized screen and performing the upper size cut includes screening the mixed waste stream using a second sized screen.

3. The method of claim 2 wherein the first sized screen comprises a trommel screen.

4. The method of claim 2 wherein the second sized screen comprises a trommel screen.

5. The method of claim 1 wherein the density separator includes an air-drum separator.

6. The method of claim 1 wherein the sized waste stream has an upper cut-off in a range of from 8 inch to 16 inch.

7. A method for recovering recyclable materials from mixed solid waste stream using optical sorters, comprising:

providing a mixed waste stream comprising high value recyclable material including paper and rigid plastic, said rigid plastic excluding PVC, wherein the mixed waste stream includes at least 20% and less than 100% by weight of low value material selected from the group consisting of wet organics, green waste, grit, fines less than 1 inch, concrete, textiles, rubber, film plastic, PVC, foil, rock, used consumer products, low value glass, composite materials, and combinations of these;

fractionating the mixed waste stream by size by performing an upper size cut and a lower size cut to produce a sized waste stream, the sized waste stream having a particle size range where a particle size ratio of an upper cut-off to a lower cut-off is greater than 1 and less than 6;

fractionating the sized waste stream by density to produce an intermediate waste stream enriched in the paper and rigid plastic; and

using a first one or more optical sorters to:

scan the intermediate waste stream for paper; and

eject the paper from the intermediate waste stream;

using a second one or more optical sorters to:

scan the intermediate waste stream for plastic; and

eject the plastic from the intermediate waste stream;

producing a sorted paper material and a sorted plastic material.

8. A method for recovering recyclable materials from mixed solid waste stream using optical sorters, comprising:

providing a mixed waste stream comprising high value recyclable material including paper and rigid plastic, said rigid plastic excluding PVC, wherein the mixed waste stream includes at least 20% and less than 100% by weight of low value material selected from the group consisting of wet organics, green waste, grit, fines less than 1 inch, concrete, textiles, rubber, film plastic, PVC, foil, rock, used consumer products, low value glass, composite materials, and combinations of these;

fractionating the mixed waste stream by size by performing an upper size cut and a lower size cut to produce a sized waste stream, the sized waste stream having a particle size range where a particle size ratio of an upper cut-off to a lower cut-off is greater than 1 and less than 4;

fractionating the sized waste stream by density to produce an intermediate waste stream enriched in the paper and rigid plastic; and

using one or more optical sorters to:

scan the intermediate waste stream for paper; and

eject the paper from the intermediate waste stream;

producing a sorted paper material.

9. The method of claim 8 wherein the high value material further includes cardboard and metal.

10. The method of claim 8 wherein the mixed waste stream comprises at least 30% low value materials.

11. The method of claim 8 wherein performing the lower size cut includes screening the mixed waste stream using a first sized screen and performing the upper size cut includes screening the mixed waste stream using a second sized screen.

12. The method of claim 11 wherein the first sized screen comprises a disc screen.

13. The method of claim 11 wherein the second sized screen comprises a disc screen.

14. The method of claim 8 wherein a ratio of largest to smallest objects fed into the density separator is about 6 to 1.

15. A method for recovering recyclable materials from mixed solid waste stream using optical sorters, comprising:

providing a mixed waste stream comprising high value recyclable material including paper and rigid plastic, said rigid plastic excluding PVC, wherein the mixed waste stream includes at least 20% and less than 100% by weight of low value material selected from the group consisting of wet organics, green waste, grit, fines less than 1 inch, concrete, textiles, rubber, film plastic, PVC, foil, rock, used consumer products, low value glass, composite materials, and combinations of these;

fractionating the mixed waste stream by size by performing an upper size cut and a lower size cut to produce a sized waste stream, the sized waste stream having a particle size range where a particle size ratio of an upper cut-off to a lower cut-off is greater than 1 and less than 4;

fractionating the sized waste stream by density to produce an intermediate waste stream enriched in the paper and rigid plastic; and

using one or more optical sorters to:

scan the intermediate waste stream for plastic; and

eject the plastic from the intermediate waste stream;

producing a sorted plastic material.

16. The method of claim 15 wherein performing the lower size cut includes screening the mixed waste stream using a first sized screen and performing the upper size cut includes screening the mixed waste stream using a second sized screen.

17. The method of claim 16 wherein the first sized screen comprises a ballistic screen.

18. The method of claim 16 wherein the second sized screen comprises a ballistic screen.

19. The method of claim 15 wherein the sized waste stream has an upper cut-off in a range of from 8 inch to 16 inch.

20. The method of claim 15 wherein a ratio of largest to smallest objects fed into the density separator is about 4 to 1.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2024
From: GITSCHEL, GEORGE; BUCKLE, LARRY T.
To: ORGANIC ENERGY CORPORATION
Reel/Frame 066119/0788 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2024
From: ORGANIC ENERGY CORPORATION
To: ROLLIN HOLDINGS, LLC
Reel/Frame 066119/0802 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2024
From: ROLLIN HOLDINGS, LLC
To: UPLAND ROAD IP HOLDCO LLC
Reel/Frame 066119/0816 →
Continuity (20)
Continuation 16908757 · Jun 23, 2020
Continuation 15597075 · May 16, 2017
Continuation 14160020 · Jan 21, 2014
Continuation 13352119 · Jan 17, 2012
Continuation In Part 13013707 · Jan 25, 2011
Continuation In Part 14587846 · Dec 31, 2014
Continuation 14231291 · Mar 31, 2014
Continuation 13693763 · Dec 4, 2012
Continuation 13221647 · Aug 30, 2011
Continuation In Part 14746172 · Jun 22, 2015
Continuation 13794214 · Mar 11, 2013
Continuation 12897996 · Oct 5, 2010
Continuation In Part 13612037 · Sep 12, 2012
Continuation In Part 14181718 · Feb 16, 2014
Provisional Application 61298208 · Jan 25, 2010
Provisional Application 61417216 · Nov 24, 2010
Provisional Application 61291177 · Dec 30, 2009
Provisional Application 61533528 · Sep 12, 2011
Provisional Application 61765723 · Feb 16, 2013
Related Publication 20230381841A1 · Nov 30, 2023
References Cited (1)
US 20050126958A1 · Bohlig · 2005 [cited by examiner]