IP Library › Granted Patent US 11,566,193
Granted Patent B2
US 11,566,193 · App. 16/064,737 · Granted Jan 31, 2023

Aviation fuel composition

Inventors: Kati Sandberg (Järvenpää, FI); Ulla Kiiski (Porvoo, FI)
Assignee: NESTE CORPORATION
C10L1/04C10L1/08C10G2300/1011C10G2400/04C10G2400/08C10L2200/043C10L2200/0476C10L2200/0492C10L2270/04Y02E50/10Y02P30/20Y02T50/678
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Quick Facts
Patent No.
US 11,566,193
App. No.
16/064,737
Granted
Jan 31, 2023
Kind
B2
Abstract

The present invention relates to an aviation fuel composition comprising an aviation range fuel component and a diesel range fuel component originating from renewable sources, the diesel range fuel component having a cloud point of at most about −20° C. and existent gum more than about 7 mg/100 ml, wherein existent gum of the aviation fuel composition is at most about 7 mg/100 ml.

Claims (33)

1. An aviation fuel composition comprising:

a) an aviation range fuel component, wherein component a) is a conventional JET A-1 containing aromatic compounds in the range of 8.4 vol-% to 26.5 vol-%, paraffins in the range of 40 vol-% to 60 vol-%, and naphthenes in the range of 18 vol-% to 40 vol-%; and

b) a diesel range fuel component of paraffinic diesel originating from Fischer-Tropsch synthesis products of renewable origin or hydrogenated fatty acid and/or triglyceride materials of renewable origin, wherein the diesel range fuel component has a cloud point of at most −30° C., and an existent gum content in accordance with the IP540 standard of more than 7 mg/100 ml;

the aviation fuel composition comprising 10-20 vol-% of component b) and at least 80 vol-% of component a), wherein, due to solubilizing activity of aromatic compounds in component a), the aviation fuel composition has an existent gum content in accordance with an IP540 standard of at most 7 mg/100 ml, and

wherein the aviation fuel composition complies with at least one of aviation fuel standards selected from ASTM D1655, ASTM D7566, DEFSTAN 91-91, JET A and JET A-1,

wherein component b) comprises:

aromatic compounds in an amount of at most about 0.5 vol-%, iso-paraffins in an amount from about 80 vol-% to about 95 vol-%, the rest being n-paraffins.

2. The aviation fuel composition of claim 1 , wherein component a) is selected from petroleum-based aviation range fuel, aviation range fuel of renewable origin, and a mixture thereof.

3. The aviation fuel composition of claim 1 , wherein component a) complies with at least one of aviation fuel standards selected from ASTM D1655, ASTM D7566 and DEFSTAN 91-91.

4. The aviation fuel composition of claim 1 , wherein the paraffinic diesel is an isomerized paraffinic diesel.

5. The aviation fuel composition of claim 1 , wherein existent gum of component b) is at most about 15000 mg/ml.

6. The aviation fuel composition of claim 1 , wherein the composition further comprises:

a petroleum-based diesel range fuel component, wherein the composition further comprising the petroleum-based diesel range fuel component complies with at least one of aviation fuel standards selected from JET A and JET A-1.

7. The aviation fuel composition of claim 1 , wherein the composition comprises 10-15 vol-% of component b).

8. The aviation fuel composition of claim 1 , wherein the composition comprises at least 85 vol-% of component a).

9. The aviation fuel composition of claim 1 , wherein the freezing point of the aviation fuel composition complies with the specification according to ASTM D1655, DEFSTAN 91-91 or ASTMD 7566.

10. The aviation fuel composition of claim 1 , wherein linear calculation based on proportions of components a) and b) would not result in an existent gum content of at most 7 mg/100 ml in accordance with said IP540 standard.

11. A method for producing an aviation fuel composition, the method comprising:

providing:

a) an aviation range fuel component, wherein component a) is a conventional JET A-1 containing aromatic compounds in the range of 8.4 vol-% to 26.5 vol-%, paraffins in the range of 40 vol-% to 60 vol-%, and naphthenes in the range of 18 vol-% to 40 vol-%, and

producing b) a diesel range fuel component of paraffinic diesel of renewable origin from Fischer-Tropsch synthesis products or hydrogenated fatty acid and/or triglyceride materials of renewable origin, wherein the diesel range fuel component has a cloud point of at most −30° C., and an existent gum content in accordance with the IP540 standard of more than 7 mg/100 ml; and obtaining the aviation fuel composition by mixing component a) and component b) in an amount comprising 10-20 vol-% of component b) and at least 80 vol-% of component a),

wherein, due to solubilizing activity of aromatic compounds in component a), the obtained aviation fuel composition has an existent gum content in accordance with an IP540 standard of at most 7 mg/100 ml, and

wherein the obtained aviation fuel composition complies with at least one of aviation fuel standards selected from ASTM D1655, ASTM D7566, DEFSTAN 91-91, JET A and JET A-1,

wherein component b) comprises aromatic compounds in an amount of at most 0.5 vol-%, iso-paraffins in an amount from 80 vol-% to 95 vol-%, the rest being n-paraffins.

12. The method of claim 11 , wherein component a) is selected from petroleum-based aviation range fuel, aviation range fuel of renewable origin, and a mixture thereof.

13. The method of claim 11 , wherein component a) complies with at least one of aviation fuel standards selected from ASTM D1655, ASTM D7566 and DEFSTAN 91-91.

14. The method of claim 11 , wherein the paraffinic diesel is an isomerized paraffinic diesel.

15. The method of claim 11 , wherein the existent gum content in accordance with the IP540 standard of component b) is at most 15000 mg/ml.

16. The method of claim 11 , wherein the method further comprises introducing a petroleum-based diesel range fuel component to the composition, wherein the composition further comprising the petroleum-based diesel range fuel component complies with at least one of aviation fuel standards selected from JET A and JET A-1.

17. The method of claim 11 , wherein the composition comprises 10-15 vol-% of component b).

18. The method of claim 11 , wherein the composition comprises at least 85 vol-% of component a).

19. The method of claim 11 , wherein the freezing point of the aviation fuel composition complies with the specification according to ASTM D1655, DEFSTAN 91-91 or ASTMD 7566.

20. The method of claim 11 , wherein linear calculation based on proportions of components a) and b) would not result in an existent gum content of at most 7 mg/100 ml in accordance with said IP540 standard.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2020
From: SANDBERG, KATI; KIISKI, ULLA
To: NESTE CORPORATION
Reel/Frame 051782/0932 →
Priority Claims (1)
EP 15201562 · Dec 21, 2015 · regional
Continuity (1)
Related Publication 20190002778A1 · Jan 3, 2019
Cited By (1)
US 12,435,287