IP Library › Granted Patent US 10,962,283
Granted Patent B2
US 10,962,283 · App. 16/130,260 · Granted Mar 30, 2021

Helium extraction from natural gas

Inventors: Vincent White (Surrey, GB); Paul Higginbotham (Surrey, GB); Jason Michael Ploeger (Perkasie, PA)
Assignee: Air Products and Chemicals, Inc.
F25J3/069B01D53/226B01D53/227B01D53/229F25J3/08F25J2200/06F25J2200/38F25J2200/40F25J2205/64F25J2205/80F25J2205/82F25J2215/30F25J2220/62F25J2220/66F25J2220/68F25J2260/60F25J2270/30F25J2280/10
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,962,283
App. No.
16/130,260
Granted
Mar 30, 2021
Kind
B2
Abstract

A helium-containing stream is recovered from a natural gas feed using a membrane followed by multiple distillation steps. Refrigeration is provided by expanding a bottoms liquid with a higher nitrogen content than the feed, achieving a lower temperature in the process. The helium-enriched vapor is then purified and the helium-containing waste stream is recycled to maximize recovery and reduce the number of compressors needed. The helium-depleted natural gas stream can be returned at pressure for utilization or transportation.

Claims (21)

1. A process for recovering helium from a natural gas feed comprising methane, nitrogen, and helium, said process comprising:

introducing said natural gas feed to a membrane separation system to produce a helium-enriched permeate stream and a helium-depleted non-permeate stream;

compressing said helium-enriched permeate stream in a permeate compressor to produce a compressed permeate stream;

cooling said compressed permeate stream, or a stream derived from said compressed permeate stream, to produce a cooled permeate stream which is at least partially condensed;

separating said cooled permeate stream in a first distillation column system to produce a helium-enriched overhead vapor and a first helium-depleted bottoms liquid;

cooling said helium-enriched overhead vapor to produce a cooled overhead stream which is at least partially condensed;

separating said cooled overhead stream in a second distillation column system to produce a crude helium vapor and a second helium-depleted bottoms liquid;

and expanding at least a portion of the second helium depleted bottoms liquid to produce a low-temperature refrigerant;

wherein the cooling duty for cooling the helium-enriched overhead vapor is provided at least in part by indirect heat exchange with said low-temperature refrigerant;

warming at least a portion of said second helium-depleted bottoms liquid to produce a first return stream;

combining said first return stream with said first helium-depleted bottoms liquid to produce a second return stream;

and compressing and combining said second return stream with said low-temperature refrigerant and said helium-depleted non-permeate stream to produce a helium-depleted natural gas product.

2. Process of claim 1 wherein the pressure of said first distillation column is set to achieve a ratio of liquid to vapor density in the distillation column system greater than.

3. Process of claim 1 wherein the pressure of said first distillation column is set to achieve a liquid phase surface tension in the distillation column system greater than 0.5 dyne/cm.

4. Process of claim 1 further comprising the step of removing at least one of carbon dioxide, water, and heavy hydrocarbons from said compressed permeate stream.

5. Process of claim 1 wherein the re-boiling duty for said first distillation column system is provided at least in part by indirect heat exchange with the compressed permeate stream.

6. Process of claim 1 wherein the re-boiling duty for said second distillation column system is provided at least in part by indirect heat exchange with the helium-enriched overhead vapor.

7. Process of claim 1 wherein the cooling duty for cooling the compressed permeate stream is provided at least in part by indirect heat exchange with said second return stream.

8. Process of claim 1 further comprising the step of purifying the crude helium vapor to produce a pure helium product and a helium-depleted waste stream.

9. Process of claim 8 further comprising combining said helium-depleted waste stream with said helium-enriched permeate stream prior to entering, or at an interstage of, said permeate compressor.

10. Process of claim 8 wherein the crude helium vapor is purified in an adsorption system.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2018
From: WHITE, VINCENT; HIGGINBOTHAM, PAUL; PLOEGER, JASON MICHAEL
To: AIR PRODUCTS AND CHEMICALS, INC.
Reel/Frame 047728/0227 →
Continuity (1)
Related Publication 20200088466A1 · Mar 19, 2020