Thermally stable macromolecular compound and petroleum composition including the same

US11560526B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11560526-B2
Application numberUS-201916293878-A
CountryUS
Kind codeB2
Filing dateMar 6, 2019
Priority dateMar 6, 2018
Publication dateJan 24, 2023
Grant dateJan 24, 2023

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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Abstract

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In one embodiment, an alkylphenol copolymer is disclosed wherein the copolymer comprises at least one alkylphenol monomer and the alkylphenol copolymer exhibits the following: an oscillation displacement Θ of greater than 0 at a temperature of −5° C. in a first oscillation temperature sweep and an oscillation displacement Θ in a second oscillation temperature sweep within 25% of the oscillation displacement Θ in the first oscillation temperature sweep at a temperature of −5° C. In a further embodiment, a petroleum composition is disclosed wherein the composition comprises a petroleum source and a macromolecular compound wherein the macromolecular compound exhibits the following: an oscillation displacement Θ of greater than 0 at a temperature of −10° C. in a first oscillation temperature sweep, and an oscillation displacement Θ in a second oscillation temperature sweep within 25% of the oscillation displacement Θ in the first oscillation temperature sweep at a temperature of −10° C.

First claim

Opening claim text (preview).

What is claimed is: 1. An alkylphenol copolymer comprising at least two different alkylphenol monomers, wherein the alkylphenol copolymer exhibits the following: an oscillation displacement Θ of greater than 0 at a temperature of −5° C. in a first oscillation temperature sweep, and an oscillation displacement Θ in a second oscillation temperature sweep within 25% of the oscillation displacement Θ in the first oscillation temperature sweep at a temperature of −5° C., wherein the first oscillation temperature sweep starts at 30° C. and ends at either −20° C. or an oscillation displacement Θ of 0 and is conducted with a stress of 0.4 Pa at an angular frequency of 0.25 rad/s and each subsequent oscillation temperature sweep starts at 25° C. and ends at either −20° C. or an oscillation displacement Θ of 0 and is conducted with a stress of 0.4 Pa at an angular frequency of 0.25 rad/s, wherein at least one of the at least two different alkylphenol monomers as the following repeating unit (B): wherein, y is an integer from 1 to 200; and R 2 includes a straight or branched C 22 -C 40 alkyl. 2. The alkylphenol copolymer of claim 1 , wherein the oscillation displacement Θ in the second oscillation temperature sweep is within 20% of the oscillation displacement Θ in the first oscillation temperature sweep. 3. The alkylphenol copolymer of claim 1 , wherein the oscillation displacement Θ in the second oscillation temperature sweep is within 5% of the oscillation displacement Θ in the first oscillation temperature sweep. 4. The alkylphenol copolymer of claim 1 , wherein the oscillation displacement Θ in a third oscillation temperature sweep is within 25% of the oscillation displacement Θ in the first oscillation temperature sweep at a temperature of −5° C. 5. The alkylphenol copolymer of claim 1 , wherein the oscillation displacement Θ in a fourth oscillation temperature sweep is within 25% of the oscillation displacement Θ in the first oscillation temperature sweep at a temperature of −5° C. 6. The alkylphenol copolymer of claim 1 , wherein the oscillation displacement Θ in the second oscillation temperature sweep is within 25% of the oscillation displacement Θ in the first oscillation temperature sweep at a temperature of −10° C. 7. The alkylphenol copolymer of claim 1 , wherein the oscillation displacement Θ in the first oscillation temperature sweep is greater than 0 at a temperature of −20° C. 8. The alkylphenol copolymer of claim 1 , wherein the oscillation displacement Θ in the first oscillation temperature sweep is greater than 0 at a temperature of −40° C. 9. The alkylphenol copolymer of claim 1 , wherein the other of the at least two different alkylphenol monomers of the alkylphenol copolymer comprises the following repeating unit (A): wherein, x is an integer from 1 to 200; and R 1 includes a straight or branched C 1 -C 40 alkyl. 10. The alkylphenol copolymer of claim 1 , wherein the other of the at least two different alkylphenol monomers of the alkylphenol copolymer comprises the following repeating unit (A): wherein, x is an integer from 1 to 200; and R 1 includes a straight or branched C 1 -C 15 alkyl. 11. The alkylphenol copolymer of claim 1 , wherein the oscillation displacement Θ in the second oscillation temperature sweep is within 10% of the oscillation displacement Θ in the first oscillation temperature sweep. 12. The alkylphenol copolymer of claim 1 , wherein the oscillation displacement Θ in the second oscillation temperature sweep is within 25% of the oscillation displacement Θ in the first oscillation temperature sweep at a temperature of −15° C. 13. The alkylphenol copolymer of claim 1 , wherein the oscillation displacement Θ in a third oscillation temperature sweep is within 25% of the oscillation displacement Θ in the first oscillation temperature sweep at a temperature of −10° C. and wherein the oscillation displacement Θ in a fourth oscillation temperature sweep is within 25% of the oscillation displacement Θ in the first oscillation temperature sweep at a temperature of −10° C. 14. The alkylphenol copolymer of claim 1 , wherein the alkylphenol copolymer is a block copolymer. 15. The alkylphenol copolymer of claim 1 , wherein the alkylphenol copolymer exhibits an asphaltene dispersancy parameter of about 500 or less as determined at a non-volatile residue percentage of 15% and/or wherein the alkylphenol copolymer exhibits a percent asphaltene dispersancy of about 80% or more as determined at a non-volatile residue percentage of 15%. 16. The alkylphenol copolymer of claim 1 , wherein the alkylphenol copolymer exhibits a Cold Finger paraffinic wax inhibition of about 60% or more. 17. The alkylphenol copolymer of claim 1 , wherein the oscillation temperature sweeps are conducted in a composition consisting essentially of the alkylphenol copolymer and a hydrocarbon solvent at a non-volatile residue concentration of 15%.

Assignees

Inventors

Classifications

  • Asphaltenes · CPC title

  • of formaldehyde, e.g. of formaldehyde formed in situ · CPC title

  • obtained by reactions involving only carbon-to-carbon unsaturated bonds · CPC title

  • with all hydroxy groups on non-condensed rings {, e.g. phenylphenol} · CPC title

  • Additives · CPC title

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What does patent US11560526B2 cover?
In one embodiment, an alkylphenol copolymer is disclosed wherein the copolymer comprises at least one alkylphenol monomer and the alkylphenol copolymer exhibits the following: an oscillation displacement Θ of greater than 0 at a temperature of −5° C. in a first oscillation temperature sweep and an oscillation displacement Θ in a second oscillation temperature sweep within 25% of the oscillation…
Who is the assignee on this patent?
Si Group Inc
What technology area does this patent fall under?
Primary CPC classification C10G71/00. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Jan 24 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 9 related publications on this page (citations in our corpus or others sharing the same primary CPC).