IP Library Granted Patent US 9,016,088
Granted Patent B2
US 9,016,088 · App. 12/915,815 · Granted Apr 28, 2015

System and method for producing LNG from contaminated gas streams

Inventor: Rayburn C. Butts (Midland, TX)
Assignee: Butts Propertties, Ltd.
F25J3/0209F25J2210/60F25J3/0233F25J3/0257F25J2200/02F25J2200/50F25J2200/74F25J2210/40F25J2215/04F25J2220/62F25J2230/20F25J2240/02F25J2240/12F25J2245/90F25J2270/02F25J2270/04F25J2270/06F25J2270/88F25J2290/34F25J2290/62Y10S62/927
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 9,016,088
App. No.
12/915,815
Granted
Apr 28, 2015
Kind
B2
Abstract

A system and method for removing nitrogen and producing liquefied natural gas (“LNG”) from methane without the need for external refrigeration. The invention also relates to a system and method for removing nitrogen from methane and for producing liquefied nitrogen in addition to LNG. The system and method of the invention are particularly suitable for use in recovering and processing comparatively small volumes of methane from coal mines or from flash gas captured at an LNG loading site.

Claims (50)

1. A system for removing nitrogen and for producing liquefied natural gas (LNG) from methane gas comprising other gaseous components, the system comprising:

a source of methane gas disposed proximally to a processing site, the source being accessible to the site without transport through an external pipeline;

a nitrogen removal section configured to remove nitrogen gas from the methane gas and to liquefy a substantial portion of the methane gas to produce LNG without use of a recirculated refrigerant, wherein the nitrogen removal section comprises a plate fin cooler and a nitrogen fractionation tower;

wherein the nitrogen fractionation tower discharges gaseous nitrogen and LNG;

wherein the gaseous nitrogen is expanded and cooled;

wherein the expanded and cooled nitrogen is used to subcool the LNG;

wherein the nitrogen used to subcool the LNG is recirculated to the plate fin cooler;

wherein the recirculated nitrogen cools the methane gas;

wherein the recirculated nitrogen is vented after cooling the methane gas;

an LNG subcooler section comprising at least one separator wherein cold but unliquefied methane gas is separated from the LNG and is recirculated to the plate fin cooler in the nitrogen removal section, wherein the recirculated methane gas cools the methane gas entering the nitrogen removal section;

at least one compressor that compresses the recirculated methane gas exiting the plate fin cooler, which compressed recirculated methane gas is then recycled, and apparatus that splits the recycled compressed recirculated methane gas into a first part and a second part;

a receptacle for LNG received from the LNG subcooler section;

apparatus for combining the first part with the methane gas entering the nitrogen removal section upstream of the plate fin cooler and upstream of the nitrogen fractionation tower; and

a conduit through which the second part flows through the plate fin cooler and then into the LNG subcooler section, where the second part is received into at least one expander and cooled sufficiently to liquefy at least a portion thereof.

2. The system of claim 1 comprising apparatus for combining the liquefied portion with the LNG received into the receptacle.

3. A method for removing nitrogen and for producing liquefied natural gas (LNG) from methane gas comprising other gaseous components, the method comprising:

providing a source of methane gas disposed proximally to a processing site, the source being accessible to the site without transport through an external pipeline;

removing nitrogen from the methane gas and liquefying a substantial portion of the methane gas to produce LNG without use of a recirculated refrigerant and wherein the nitrogen is removed in a nitrogen removal section comprising a nitrogen fractionation tower and a plate fin cooler;

subcooling the LNG without use of a recirculated refrigerant in an LNG subcooler section, wherein the LNG subcooler section comprises at least one separator wherein cold but unliquefied methane gas is separated from the LNG and is recirculated to the plate fin cooler in the nitrogen removal section, wherein the recirculated methane gas cools the methane gas entering the nitrogen removal section;

compressing the recirculated methane gas exiting the plate fin cooler, recycling the compressed recirculated methane gas, and splitting the recycled compressed recirculated methane gas into first part and a second part;

combining the first part with the methane gas introduced into the nitrogen removal section upstream of the plate fin cooler and upstream of the nitrogen fractionation tower; and

directing a flow of the second part through the plate fin cooler and then into the LNG subcooler section, and thereafter expanding and cooling the flow sufficiently to liquefy at least a portion thereof.

4. The method of claim 3 comprising combining the liquefied portion with the subcooled LNG and introducing the subcooled LNG into a receptacle.

5. A system for producing liquefied natural gas (LNG) from methane gas comprising other gaseous components, the system comprising:

a source of methane gas disposed proximally to a processing site, the source being accessible to the site without transport through an external pipeline;

a first processing section configured to remove oxygen gas from the methane gas;

a second processing section configured to remove carbon dioxide from the methane gas;

a third processing section configured to dehydrate the methane gas;

a fourth processing section configured to remove nitrogen gas from the methane gas and to liquefy a substantial portion of the methane gas to produce LNG without use of a recirculated refrigerant and comprising a nitrogen fractionation tower and a plate fin cooler;

an LNG subcooler section disposed downstream of the fourth processing section; wherein the LNG subcooler section is configured to further cool LNG received from the fourth processing section without use of a recirculated refrigerant and comprises at least one separator wherein cold but unliquefied methane gas is separated from the LNG and is recirculated to the plate fin cooler in the fourth processing section, wherein the recirculated methane gas cools the methane gas entering the fourth processing section;

conduits through which the methane gas received from the source can flow into and out of the first, second, third and fourth processing sections and the LNG subcooler section;

a receptacle for LNG received from the LNG subcooler section;

at least one compressor that compresses the recirculated methane gas exiting the plate fin cooler, which compressed recirculated methane gas is then recycled, and apparatus that splits the recycled compressed recirculated methane gas into a first part and a second part;

apparatus for combining the first part with the methane gas entering the fourth processing section upstream of the plate fin cooler and upstream of the nitrogen fractionation tower; and

additional conduit through which the second part flows through the plate fin cooler and then into the LNG subcooler section, where the second part is received into at least one expander and cooled sufficiently to liquefy at least a portion thereof.

6. The system of claim 5 comprising apparatus for combining the liquefied portion with the LNG received into the receptacle.

7. A method for producing liquefied natural gas (LNG) from methane gas containing other gaseous components, the method comprising:

providing a source of methane gas disposed proximally to a processing site, the source being accessible to the site without transport through an external pipeline;

introducing the methane gas into a first processing section configured to remove oxygen gas from the methane gas;

introducing the methane gas into a second processing section configured to remove carbon dioxide from the methane gas;

introducing the methane gas into a third processing section configured to dehydrate the methane gas;

introducing the methane gas into a fourth processing section configured to remove nitrogen gas from the methane gas and to liquefy a substantial portion of the methane gas to produce LNG without use of a recirculated refrigerant, the fourth processing section comprising a nitrogen fractionation tower and a plate fin cooler;

introducing the LNG received from the fourth processing station into an LNG subcooling section to further cool LNG received from the fourth processing section without use of a recirculated refrigerant, the LNG subcooling section comprising at least one separator wherein cold but unliquefied methane gas is separated from the LNG and is recirculated to the plate fin cooler in the fourth processing section, wherein the recirculated methane gas cools the methane gas entering the fourth processing section;

introducing LNG received from the LNG subcooler section into a receptacle;

compressing the recirculated methane gas exiting the plate fin cooler;

recycling the compressed recirculated methane gas;

splitting the recycled compressed recirculated methane gas into a first part and a second part;

combining the first part with the methane gas introduced into the fourth processing section upstream of the plate fin cooler and upstream of the nitrogen fractionation tower; and

directing a flow of the second part through the plate fin cooler and then into the LNG subcooler section, and thereafter expanding and cooling the flow sufficiently to liquefy at least a portion thereof.

8. The method of claim 7 comprising combining the liquefied portion with the LNG introduced into the receptacle.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2020
From: BUTTS PROPERTIES, LTD.
To: BCCK HOLDING COMPANY
Reel/Frame 052947/0807 →
SECURITY INTEREST Recorded Mar 2, 2017
From: BCCK HOLDING COMPANY
To: IBERIABANK, AS AGENT
Reel/Frame 041438/0274 →
SECURITY INTEREST Recorded Feb 14, 2017
From: BUTTS, RAYBURN CLARK; BUTTS, SHIRLEY SEWELL; BUTTS PROPERTIES LTD.
To: BCCK HOLDING COMPANY
Reel/Frame 041253/0808 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2010
From: BUTTS, RAYBURN C.
To: BUTTS PROPERTIES, LTD.
Reel/Frame 025220/0800 →
Continuity (2)
Provisional Application 61256053 · Oct 29, 2009
Related Publication 20120103010A1 · May 3, 2012