IP Library Granted Patent US 12,018,218
Granted Patent B2
US 12,018,218 · App. 16/419,771 · Granted Jun 25, 2024

Hydrocracking process for making middle distillate from a light hydrocarbon feedstock

Inventor: Michael Chiun-Kuei Hu (Houston, TX)
Assignee: SHELL USA, INC.
C10G67/02C10L1/08C10G2300/107C10G2300/202C10G2300/301C10G2300/70C10G2400/04C10L2270/026C10L2290/543
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Quick Facts
Patent No.
US 12,018,218
App. No.
16/419,771
Granted
Jun 25, 2024
Kind
B2
Abstract

A two-stage hydrocracking process for preferentially making a high-quality middle distillate product such as diesel from a relatively light hydrocarbon feedstock such as light vacuum gas oil.

Claims (25)

1. A hydrocracking process for converting a light gas oil feedstock to produce a diesel product, wherein the hydrocracking process comprises:

introducing the light gas oil feedstock into a first reaction zone defined by a first reactor and containing a first pretreating catalyst, wherein the light gas oil feedstock has an initial boiling temperature greater than 135° C. (275° F.), a final boiling temperature less than 440° C. (824° F.), and characterized as having a T10 of greater than 150° C. (302° F.) and a T90 of 400° C. (752° F.) or less;

yielding from the first reaction zone a first reactor effluent;

introducing the first reactor effluent into a second reaction zone defined by a second reactor and containing a first hydrocracking catalyst;

yielding from the second reaction zone a second reactor effluent;

introducing the second reactor effluent into a first separation zone defined by a first separator vessel providing means for separating the second reactor effluent into a first separator vapor and a first separator liquid;

introducing the first separator liquid into a fractionator providing for distillation separation of the first separator liquid to yield at least a bottoms product and another product;

introducing the bottoms product into a third reaction zone defined by a third reactor, wherein within the third reaction zone is included a top bed having a top bed volume and comprising a second pretreating catalyst and a bottom bed having a bottom bed volume and comprising a second hydrocracking catalyst, wherein the ratio of top bed volume-to-bottom bed volume is in the range of from 0.1:1 to 1.5:1, wherein the second hydrocracking catalyst comprises less than 60 wt.% amorphous alumina, greater than 30 wt.% crystalline zeolite, from 1 to 10 wt.% nickel or cobalt, and from 5 to 25 wt.% tungsten or molybdenum and wherein the third reaction zone has a cracking temperature, and admixing a nitrogen-containing compound with the bottoms product before its introduction into the third reaction zone;

yielding from the third reaction zone a third reactor effluent;

introducing the third reactor effluent into a second separation zone defined by a second separator vessel providing means for separating the third reactor effluent into a second separator vapor and a second separator liquid; and

introducing the second separator liquid into the fractionator, or introducing the second separator liquid as feed to the third reaction zone, or introducing a portion of the second separator liquid into the fractionator and a separate portion of the second separator liquid as a feed to the third reaction zone.

2. The hydrocracking process as recited in claim 1 , wherein the light gas oil feedstock is characterized as having a nitrogen content in the range of from 500 to 10,000 ppmw, and a sulfur content in the range of from 0.01% to 5% by weight.

3. The hydrocracking process as recited in claim 1 , further comprising:

admixing with the bottoms product an effective amount of a nitrogen-containing compound to modify cracking activity of the second hydrocracking catalyst to enhance its diesel selectivity.

4. The hydrocracking process as recited in claim 1 , further comprising:

introducing quench gas into the third reaction zone to control diesel selectivity of the cracking reaction by controlling the cracking reaction temperature within the bottom bed of the third reaction zone.

5. The hydrocracking process as recited in claim 4 , wherein the second hydrocracking catalyst comprises less than 50 weight percent amorphous alumina.

6. The hydrocracking process as recited in claim 5 , wherein the light gas oil feedstock is characterized as having a nitrogen content in the range of from 500 to 10,000 ppmw, and a sulfur content in the range of from 0.01% to 5% by weight.

7. The hydrocracking process as recited in claim 6 , further comprising:

admixing with the bottoms product an effective amount of a nitrogen-containing compound so to modify cracking activity of the second hydrocracking catalyst to enhance its diesel selectivity.

8. The hydrocracking process as recited in claim 4 , further comprising:

admixing with the bottoms product an effective amount of a nitrogen-containing compound to modify cracking activity of the second hydrocracking catalyst to enhance its diesel selectivity.

9. The hydrocracking process as recited in claim 1 , further comprising:

admixing with the first reactor effluent an effective amount of a nitrogen-containing compound to modify the cracking activity of the first hydrocracking catalyst to enhance its diesel selectivity.

10. The hydrocracking process as recited in claim 9 , wherein the nitrogen-containing compound is selected from the group consisting of ammonia and organic amine compounds capable of conversion to ammonia under the conditions within the third reaction zone.

Assignments (2)
CHANGE OF NAME Recorded Sep 25, 2023
From: SHELL OIL COMPANY
To: SHELL USA, INC.
Reel/Frame 065019/0839 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2019
From: HU, MICHAEL CHIUN-KUEI
To: SHELL OIL COMPANY
Reel/Frame 049257/0926 →
Continuity (2)
Provisional Application 62676398 · May 25, 2018
Related Publication 20190359900A1 · Nov 28, 2019