IP Library Granted Patent US 10,722,874
Granted Patent B2
US 10,722,874 · App. 16/774,891 · Granted Jul 28, 2020

Methods of preparing a catalyst utilizing hydrated reagents

Inventors: Max P. McDaniel (Bartlesville, OK); Kathy S. Clear (Bartlesville, OK); Jeremy M. Praetorius (Bartlesville, OK); Eric D. Schwerdtfeger (Bartlesville, OK); Mitchell D. Refvik (Kingwood, TX); Mark L. Hlavinka (Kingwood, TX)
Assignee: Chevron Phillips Chemical Company LP
B01J31/0209B01J31/34B01J35/1019B01J35/1023B01J35/1047B01J37/024
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Quick Facts
Patent No.
US 10,722,874
App. No.
16/774,891
Granted
Jul 28, 2020
Kind
B2
Abstract

A method comprising a) contacting a solvent, a carboxylic acid, and a peroxide-containing compound to form an acidic mixture wherein a weight ratio of solvent to carboxylic acid in the acidic mixture is from about 1:1 to about 100:1; b) contacting a titanium-containing compound and the acidic mixture to form a solubilized titanium mixture wherein an equivalent molar ratio of titanium-containing compound to carboxylic acid in the solubilized titanium mixture is from about 1:1 to about 1:4 and an equivalent molar ratio of titanium-containing compound to peroxide-containing compound in the solubilized titanium mixture is from about 1:1 to about 1:20; and c) contacting a chromium-silica support comprising from about 0.1 wt. % to about 20 wt. % water and the solubilized titanium mixture to form an addition product and drying the addition product by heating to a temperature in a range of from about 50° C. to about 150° C. and maintaining the temperature in the range of from about 50° C. to about 150° C. for a time period of from about 30 minutes to about 6 hours to form a pre-catalyst.

Claims (29)

1. A method comprising:

a) contacting a solvent, a carboxylic acid, and a peroxide-containing compound to form an acidic mixture wherein a weight ratio of solvent to carboxylic acid in the acidic mixture is from about 1:1 to about 100:1;

b) contacting a titanium-containing compound and the acidic mixture to form a solubilized titanium mixture wherein an equivalent molar ratio of titanium-containing compound to carboxylic acid in the solubilized titanium mixture is from about 1:1 to about 1:4 and an equivalent molar ratio of titanium-containing compound to peroxide-containing compound in the solubilized titanium mixture is from about 1:1 to about 1:20; and

c) contacting a chromium-silica support comprising from about 0.1 wt. % to about 20 wt. % water and the solubilized titanium mixture to form an addition product and drying the addition product by heating to a temperature in a range of from about 50° C. to about 150° C. and maintaining the temperature in the range of from about 50° C. to about 150° C. for a time period of from about 30 minutes to about 6 hours to form a pre-catalyst.

2. The method of claim 1 wherein the peroxide-containing compound comprises hydrogen peroxide, di-tert-butyl peroxide, benzoyl peroxide, dicumyl peroxide, cumene hydroperoxide, tert-butyl hydroperoxide, phthaloyl peroxide or a combination thereof.

3. The method of claim 1 wherein the carboxylic acid comprises a C 1 to C 15 monocarboxylic acid, a C 1 to C 15 dicarboxylic acid, a C 3 to C 15 tricarboxylic acid, a C 1 to C 15 α-hydroxycarboxylic acid, or a combination thereof.

4. The method of claim 1 wherein the carboxylic acid comprises acetic acid, citric acid, gluconic acid, glycolic acid, glyoxylic acid, lactic acid, malic acid, malonic acid, oxalic acid, phosphonoacetic acid, tartaric acid, glyceric acid, gluconic acid, mandelic acid, 2,4-hydroxybenzoic acid, 2,6-pyridine dicarboxylic acid, nitrotriacetic acid, α-hydroxyisobutyric acid, methylmalonic acid, phenyl malonic acid, digluconic acid, iminodiacetic acid, hydoxymethyl-2-butyric acid, or a combination thereof.

5. A method comprising:

a) contacting a solvent, a carboxylic acid, a nitrogen-containing compound, and a peroxide-containing compound to form an acidic mixture wherein a weight ratio of solvent to carboxylic acid in the acidic mixture is from about 1:1 to about 100:1;

b) contacting a titanium-containing compound and the acidic mixture to form a solubilized titanium mixture wherein an equivalent molar ratio of titanium-containing compound to carboxylic acid in the solubilized titanium mixture is from about 1:1 to about 1:4 and an equivalent molar ratio of titanium-containing compound to peroxide-containing compound in the solubilized titanium mixture is from about 1:1 to about 1:20; and

c) contacting a chromium-silica support comprising from about 0.1 wt. % to about 20 wt. % water and the solubilized titanium mixture to form an addition product and drying the addition product by heating to a temperature in a range of from about 50° C. to about 150° C. and maintaining the temperature in the range of from about 50° C. to about 150° C. for a time period of from about 30 minutes to about 6 hours to form a pre-catalyst.

6. The method of claim 5 wherein the carboxylic acid comprises a C 1 to C 15 monocarboxylic acid, a C 1 to C 15 dicarboxylic acid, a C 3 to C 15 tricarboxylic acid, a C 1 to C 15 α-hydroxycarboxylic acid, or a combination thereof.

7. The method of claim 5 wherein the carboxylic acid comprises acetic acid, citric acid, gluconic acid, glycolic acid, glyoxylic acid, lactic acid, malic acid, malonic acid, oxalic acid, phosphonoacetic acid, tartaric acid, glyceric acid, gluconic acid, mandelic acid, 2,4-hydroxybenzoic acid, 2,6-pyridine dicarboxylic acid, nitrotriacetic acid, α-hydroxyisobutyric acid, methylmalonic acid, phenyl malonic acid, digluconic acid, iminodiacetic acid, hydoxymethyl-2-butyric acid, or a combination thereof.

8. The method of claim 5 wherein the nitrogen-containing compound comprises an alkanolamine, an amide, an amine, an alkylamine, an ammonium hydroxide, an aniline, a hydroxylamine, a urea, or a combination thereof.

9. The method of claim 5 wherein the peroxide-containing compound comprises organic peroxides, diacyl peroxides, peroxydicarbonates, monoperoxycarbonates, peroxyketals, peroxyesters, dialkyl peroxides, hydroperoxides or a combination thereof.

10. The method of claim 5 wherein the peroxide-containing compound comprises hydrogen peroxide, di-tert-butyl peroxide, benzoyl peroxide, dicumyl peroxide, cumene hydroperoxide, tert-butyl hydroperoxide, phthaloyl peroxide or a combination thereof.

11. A method comprising:

a) contacting a solvent, at least two carboxylic acids and a peroxide-containing compound to form an acidic mixture wherein a weight ratio of solvent to carboxylic acid in the acidic mixture is from about 1:1 to about 100:1 and wherein the at least two carboxylic acids comprises at least one simple carboxylic acid and at least one complex carboxylic acid;

b) contacting a titanium-containing compound and the acidic mixture to form a solubilized titanium mixture wherein an equivalent molar ratio of titanium-containing compound to carboxylic acid in the solubilized titanium mixture is from about 1:1 to about 1:4 and an equivalent molar ratio of titanium-containing compound to peroxide-containing compound in the solubilized titanium mixture is from about 1:1 to about 1:20; and

c) contacting a chromium-silica support comprising from about 0.1 wt. % to about 20 wt. % water and the solubilized titanium mixture to form an addition product and drying the addition product by heating to a temperature in a range of from about 50° C. to about 150° C. and maintaining the temperature in the range of from about 50° C. to about 150° C. for a time period of from about 30 minutes to about 6 hours to form a pre-catalyst.

12. The method of claim 11 wherein the at least two carboxylic acids comprise a C 1 to C 15 monocarboxylic acid, a C 1 to C 15 dicarboxylic acid, a C 3 to C 15 tricarboxylic acid, a C 1 to C 15 α-hydroxycarboxylic acid, or a combination thereof.

13. The method of claim 11 wherein the at least two carboxylic acids comprise, citric acid, gluconic acid, glycolic acid, glyoxylic acid, lactic acid, malic acid, malonic acid, oxalic acid, phosphonoacetic acid, tartaric acid, glyceric acid, gluconic acid, mandelic acid, 2,4-hydroxybenzoic acid, 2,6-pyridine dicarboxylic acid, nitrotriacetic acid, α-hydroxyisobutyric acid, methylmalonic acid, phenyl malonic acid, digluconic acid, iminodiacetic acid, hydoxymethyl-2-butyric acid, or a combination thereof.

14. The method of claim 11 wherein the peroxide-containing compound comprises organic peroxides, diacyl peroxides, peroxydicarbonates, monoperoxycarbonates, peroxyketals, peroxyesters, dialkyl peroxides, hydroperoxides or a combination thereof.

15. The method of claim 11 wherein the peroxide-containing compound comprises hydrogen peroxide, di-tert-butyl peroxide, benzoyl peroxide, dicumyl peroxide, cumene hydroperoxide, tert-butyl hydroperoxide, phthaloyl peroxide or a combination thereof.

16. A method comprising:

a) contacting a solvent, a carboxylic acid, an acidic phenol and a peroxide-containing compound to form an acidic mixture wherein a weight ratio of solvent to carboxylic acid in the acidic mixture is from about 1:1 to about 100:1;

b) contacting a titanium-containing compound and the acidic mixture to form a solubilized titanium mixture wherein an equivalent molar ratio of titanium-containing compound to carboxylic acid in the solubilized titanium mixture is from about 1:1 to about 1:4, wherein an equivalent molar ratio of titanium-containing compound to acidic phenol in the solubilized titanium mixture is from about 1:to about 1:5; and wherein an equivalent molar ratio of titanium-containing compound to peroxide-containing compound in the solubilized titanium mixture is from about 1:1 to about 1:20; and

c) contacting a chromium-silica support comprising from about 0.1 wt. % to about 20 wt. % water and the solubilized titanium mixture to form an addition product and drying the addition product by heating to a temperature in a range of from about 50° C. to about 150° C. and maintaining the temperature in the range of from about 50° C. to about 150° C. for a time period of from about 30 minutes to about 6 hours to form a pre-catalyst.

17. The method of claim 16 wherein the acidic phenol comprises catechol, salicyl alcohol, salicylic acid, phthalic acid, or any combination thereof.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2023
From: MCDANIEL, MAX P.; CLEAR, KATHY S.; PRAETORIUS, JEREMY M.; SCHWERDTFEGER, ERIC D.; REFVIK, MITCHELL D.; HLAVINKA, MARK L.
To: CHEVRON PHILLIPS CHEMICAL COMPANY LP
Reel/Frame 062567/0288 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2020
From: MCDANIEL, MAX P.; CLEAR, KATHY S.; PRAETORIUS, JEREMY M.; SCHWERDTFEGER, ERIC D.; REFVIK, MITCHELL D.; HLAVINKA, MARK L.
To: CHEVRON PHILLIPS CHEMICAL COMPANY LP
Reel/Frame 051674/0775 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2020
From: MCDANIEL, MAX P.; CLEAR, KATHY S.; PRAETORIUS, JEREMY M.; SCHWERDTFEGER, ERIC D.; REFVIK, MITCHELL D.; HLAVINKA, MARK L.
To: CHEVRON PHILLIPS CHEMICAL COMPANY LP
Reel/Frame 051653/0060 →
Continuity (3)
Continuation In Part 16711304 · Dec 11, 2019
Continuation 15953930 · Apr 16, 2018
Related Publication 20200164351A1 · May 28, 2020
Cited By (5)
US 12,269,911 US 12,365,746 US 12,403,454 US 12,421,331 US 12,544,745