IP Library Granted Patent US 11,359,147
Granted Patent B2
US 11,359,147 · App. 17/237,633 · Granted Jun 14, 2022

Circular economy for plastic waste to polypropylene via oil refinery with filtering and metal oxide treatment of pyrolysis oil

Inventor: Hye-Kyung Timken (Albany, CA)
Assignee: Chevron U.S.A. Inc.
C10B53/07C10G31/06C10G31/09C10G45/26C10G2300/1003C10G2400/04C10G2400/20
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Quick Facts
Patent No.
US 11,359,147
App. No.
17/237,633
Filed
Apr 22, 2021
Granted
Jun 14, 2022
Kind
B2
Art Unit
1772
USPC
585/241
Abstract

Provided in one embodiment is a continuous process for converting waste plastic comprising polyethylene and/or polypropylene into recycle for polypropylene polymerization. The process comprises selecting waste plastics containing polyethylene, polypropylene, or a mixture thereof, and passing the waste plastics through a pyrolysis reactor to thermally crack at least a portion of the polyolefin waste and produce a pyrolyzed effluent. The pyrolyzed effluent is separated into offgas, a pyrolysis oil comprising a naphtha, diesel and heavy fractions, and char. The pyrolysis oil, or at least a fraction, is passed to a filtration/metal oxide treatment, with the treated product passed to a refinery FCC unit. A liquid petroleum gas C 3 olefin/paraffin mixture fraction is recovered from the FCC unit, as well as a C 4 olefin/paraffin mixture fraction. The C 3 olefin fraction can be passed to a propylene polymerization reactor, and the C 3 paraffin passed to a dehydrogenation unit to produce propylene for further polymerization.

Claims (73)

1. A continuous process for converting waste plastic into recycle for polypropylene polymerization comprising:

(a) selecting waste plastics containing polyethylene and/or polypropylene;

(b) passing the waste plastics from (a) through a pyrolysis reactor to thermally crack at least a portion of the polyolefin waste and produce a pyrolyzed effluent;

(c) separating the pyrolyzed effluent into offgas, a pyrolysis oil comprising a naphtha/diesel/heavy fraction, and char;

(d) passing the pyrolysis oil from (c) to a filtration unit followed by a metal oxide treatment;

(e) recovering the treated pyrolysis oil from the metal oxide treatment and passing same to a refinery FCC unit;

(f) recovering a liquid petroleum C 3 olefin/paraffin mixture fraction from the FCC unit;

(g) separating the C 3 paraffin and C 3 olefin into different fractions; and

(h) passing the C 3 olefin to a propylene polymerization reactor.

2. The process of claim 1 , further comprising passing the C 3 paraffin to a dehydrogenation unit to produce C 3 olefin and then passing the C 3 olefin to a propylene polymerization reactor.

3. The process of claim 1 , wherein a gasoline and heavy fraction are recovered from the refinery FCC unit.

4. The process of claim 1 , wherein consumer polypropylene products are prepared from the polymerized propylene.

5. The process of claim 1 , wherein the amount of gasoline produced by the FCC unit is increased due to the treated pyrolysis oil passed to the FCC unit in (e).

6. The process of claim 1 , wherein the waste plastics selected in (a) are from plastics classification group 2, 4, and/or 5.

7. The process of claim 1 , wherein the filtration employs a filter having pores averaging 5 microns or less in diameter.

8. The process of claim 7 , wherein the pores average less than 1 micron in diameter.

9. The process of claim 1 , wherein the metal oxide treatment comprises a metal oxide selected from CaO, ZnO, MgO, NiO, MoO 3 , alumina, silica, silica-alumina, clay or a mixture thereof.

10. The process of claim 1 , wherein the metal oxide treatment occurs at a temperature above 200° F.

11. The process of claim 1 , wherein the filtration and metal oxide treatment occur in a refinery comprising the FCC unit.

12. The process of claim 1 , wherein filtration occurs at a pyrolysis facility and the metal oxide treatment occurs at a refinery comprising the FCC unit.

13. The process of claim 1 , wherein the content of heptane insolubles is reduced to less than 0 . 1 wt. % after the filtration treatment.

14. The process of claim 1 , wherein the chloride content is reduced to less 5 ppm after the metal oxide treatment.

15. The process of claim 1 , wherein the total metal impurity is less than 10 ppm after the metal oxide treatment.

16. The process of claim 1 , wherein solid particulate and chloride reduction is achieved in the filtration and metal oxide treatment of (d), and S, diene, olefin, and N reduction is achieved by the refinery FCC unit.

17. The process of claim 1 , wherein only the diesel and heavy fractions of the pyrolysis oil, or the heavy fraction of the pyrolysis oil is passed to a filtration and metal oxide treatment.

18. The process of claim 1 , wherein the filtration unit employs a filter having pores averaging 5 microns or less in diameter, and the metal oxide treatment comprises a metal oxide selected from CaO, ZnO, MgO, NiO, MoO 3 , alumina, silica, silica-alumina, clay or a mixture thereof.

19. A continuous process for converting waste plastic into recycle for polypropylene polymerization comprising:

(a) selecting waste plastics containing polyethylene and/or polypropylene;

(b) passing the waste plastics from (a) through a pyrolysis reactor to thermally crack at least a portion of the polyolefin waste and produce a pyrolyzed effluent;

(c) separating the pyrolyzed effluent into offgas, a pyrolysis oil comprising a naphtha/distillate/heavy fraction, and char;

(d) passing the pyrolysis oil from (c) to a filtration unit followed by a metal oxide treatment;

(e) recovering the treated pyrolysis oil from the metal oxide treatment and passing same to a refinery FCC feed pretreatment unit;

(f) recovering effluent from the FCC pretreatment unit and passing the effluent to a FCC unit;

(g) recovering a liquid petroleum C 3 olefin/paraffin mixture fraction from the FCC unit;

(h) separating the C 3 paraffin and C 3 olefin into different fractions; and

(h) passing the C 3 olefin to a propylene polymerization reactor.

20. The process of claim 19 , further comprising passing the C 3 paraffin to a dehydrogenation unit to produce C 3 olefin and passing the C 3 olefin to a propylene polymerization reactor.

21. The process of claim 19 , wherein a gasoline and heavy fraction are recovered from the refinery FCC unit.

22. The process of claim 19 , wherein consumer polypropylene products are prepared from the polymerized propylene.

23. The process of claim 19 , wherein the amount of gasoline produced by the FCC unit is increased due to the treated pyrolysis oil passed to the FCC unit in (e).

24. The process of claim 19 , wherein the waste plastics selected in (a) are from plastics classification group 2, 4, and/or 5.

25. The process of claim 19 , wherein the filtration employs a filter having pores averaging 5 microns or less in diameter.

26. The process of claim 25 , wherein the pores average less than 1 micron in diameter.

27. The process of claim 19 , wherein the metal oxide treatment comprises a metal oxide selected from CaO, ZnO, MgO, NiO, MoO 3 , alumina, silica or silica-alumina, or clay or a mixture thereof.

28. The process of claim 19 , wherein the metal oxide treatment occurs at a temperature above 200° F. (93° C.).

29. The process of claim 19 , wherein the filtration and metal oxide treatment occur in a refinery comprising the FCC unit.

30. The process of claim 19 , wherein filtration occurs at a pyrolysis facility and the metal oxide treatment occurs at a refinery comprising the FCC unit.

31. The process of claim 19 , wherein the content of heptane insolubles is reduced to less than 0.1 wt. % after the filtration treatment.

32. The process of claim 19 , wherein the chloride content is reduced to less 5 ppm after the metal oxide treatment.

33. The process of claim 19 , wherein the total impurity metal content is less than 10 ppm after the metal oxide treatment.

34. The process of claim 19 , wherein solid particulate and chloride reduction is achieved in the filtration and metal oxide treatment of (d), and S, diene, olefin, and N reduction is achieved by the refinery FCC feed pretreatment unit.

35. The process of claim 19 , wherein the filtration unit employs a filter having pores averaging 5 microns or less in diameter, and the metal oxide treatment comprises a metal oxide selected from CaO, ZnO, MgO, NiO, MoO 3 , alumina, silica, silica-alumina, clay or a mixture thereof.

36. The process of claim 19 , wherein only the diesel and heavy fractions of the pyrolysis oil, or the heavy fraction of the pyrolysis oil is passed to a filtration and metal oxide treatment.

37. A continuous process for converting waste plastic into recycle for polypropylene polymerization comprising:

(a) selecting waste plastics containing polyethylene and/or polypropylene;

(b) passing the waste plastics from (a) through a pyrolysis reactor to thermally crack at least a portion of the polyolefin waste and produce a pyrolyzed effluent;

(c) separating the pyrolyzed effluent into offgas, a pyrolysis oil comprising a naphtha/diesel/heavy fraction, and char;

(d) passing the pyrolysis oil from (c) to a filtration unit followed by a metal oxide treatment; and

(e) recovering the treated pyrolysis oil from the metal oxide treatment and forwarding same to a refinery for propylene polymerization.

38. The process of claim 37 , wherein the filtration employs a filter having pores averaging 5 microns or less in diameter.

39. The process of claim 38 , wherein the pores average less than 1 micron in diameter.

40. The process of claim 37 , wherein the metal oxide treatment comprises a metal oxide selected from CaO, ZnO, MgO, alumina Silica or silica-alumina, or a mixture thereof.

41. The process of claim 37 , wherein the metal oxide treatment occurs at a temperature above 200° F. (93° C.).

42. The process of claim 37 , wherein the content of heptane insolubles is reduced to less than 0.1 wt. % after the filtration treatment.

43. The process of claim 37 , wherein the chloride content is reduced to less 5 ppm after the metal oxide treatment.

44. The process of claim 37 , wherein the total metal impurity is less than 10 ppm after the metal oxide treatment.

45. The process of claim 37 , wherein filtration occurs at a pyrolysis facility and the metal oxide treatment occurs at a refinery comprising the FCC unit.

46. The process of claim 37 , wherein the waste plastics selected in (a) are from plastics classification group 2, 4, and/or 5.

47. The process of claim 34 , further comprising producing gasoline, jet fuel and/or diesel fuel in the refinery.

48. The process of claim 47 , wherein a jet fuel product is produced in the refinery.

49. The process of claim 47 , wherein gasoline is produced in the refinery.

50. The process of claim 47 , wherein diesel fuel is produced in the refinery.

51. The process of claim 37 , wherein the filtration unit employs a filter having pores averaging 5 microns or less in diameter, and the metal oxide treatment comprises a metal oxide selected from CaO, ZnO, MgO, NiO, MoO 3 , alumina, silica, silica-alumina, clay or a mixture thereof.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2021
From: TIMKEN, HYE-KYUNG
To: CHEVRON U.S.A. INC.
Reel/Frame 056213/0649 →
Continuity (2)
Provisional Application 63014013 · Apr 22, 2020
Related Publication 20210332300A1 · Oct 28, 2021
Cited By (11)
US 12,404,458 US 12,410,370 US 12,415,958 US 12,435,278 US 12,453,993 US 12,453,994 US 12,473,506 US 12,509,636 US 12,545,840 US 12,595,424 US 12,649,879