Air separation device and air separation method

US12123647B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12123647-B2
Application numberUS-201917624707-A
CountryUS
Kind codeB2
Filing dateJul 10, 2019
Priority dateJul 10, 2019
Publication dateOct 22, 2024
Grant dateOct 22, 2024

How to read this patent

A practical reading order for non-experts. Skip the full description unless you need deep technical detail.

  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

    Who owns or filed the patent and who is credited as inventor.

  4. Key dates

    Filing, priority, publication, and grant dates set the timeline.

  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

    Prior art links and similar publications in this corpus.

Abstract

Official abstract text for this publication.

An air separation device for distilling air at a low temperature, includes a high-pressure column to separate high-pressure raw material air into high-pressure nitrogen gas and high-pressure oxygen-enriched liquefied air; a low-pressure column to separate the high-pressure oxygen-enriched liquefied air into low-pressure nitrogen gas, low-pressure liquefied oxygen, and argon-enriched liquefied oxygen; an argon column to separate the argon-enriched liquefied oxygen having a pressure higher than the pressure into argon gas and medium-pressure liquefied oxygen; first and second indirect heat-exchangers; first and second gas-liquid separation chambers; a first/second passage which communicates the gas/liquid phase of the low-pressure column and the gas phase of the second gas-liquid separation chamber; and a first/second opening/closing mechanism located on the first/second passage.

First claim

Opening claim text (preview).

The invention claimed is: 1. An air separation device, comprising: a high-pressure column configured to distill high-pressure raw material air at a low temperature and separate it into high-pressure nitrogen gas and high-pressure oxygen-enriched liquefied air; a low-pressure column configured to distill the high-pressure oxygen-enriched liquefied air at a low temperature and separate it into low-pressure nitrogen gas, low-pressure liquefied oxygen, and argon-enriched liquefied oxygen; an argon column configured to distill the argon-enriched liquefied oxygen having a pressure higher than the pressure of the low-pressure column at a low temperature and separate it into argon gas and medium-pressure liquefied oxygen; a first indirect heat-exchanger configured to indirectly heat-exchange between the argon gas and the low-pressure liquefied oxygen, liquefy the argon gas to generate liquefied argon, and vaporize the low-pressure liquefied oxygen to generate low-pressure oxygen gas; a second indirect heat-exchanger configured to indirectly heat-exchange between the high-pressure nitrogen gas and the medium-pressure liquefied oxygen, liquefy the high-pressure nitrogen gas to generate high-pressure liquefied nitrogen, and vaporize the medium-pressure liquefied oxygen to generate medium-pressure oxygen gas; a first gas-liquid separation chamber configured to separate the low-pressure oxygen gas which has been vaporized by the first indirect heat-exchanger and the low-pressure liquefied oxygen which has not been vaporized by the first indirect heat-exchanger into a gas phase and a liquid phase; a second gas-liquid separation chamber configured to separate the medium-pressure oxygen gas which has been vaporized by the second indirect heat-exchanger and the medium-pressure liquefied oxygen which has not been vaporized by the second indirect heat-exchanger into a gas phase and a liquid phase; a first passage configured to communicate the gas phase of the low-pressure column and the gas phase of the second gas-liquid separation chamber; a second passage configured to communicate the liquid phase of the low-pressure column and the second gas-liquid separation chamber; a movable first opening/closing mechanism located on the first passage; and a movable second opening/closing mechanism located on the second passage. 2. The air separation device according to claim 1 , wherein the first opening/closing mechanism is configured to adjust an opening degree of the first passage. 3. The air separation device according to claim 1 , wherein the air separation device further comprises: a third passage configured to communicate the gas phase of the argon column and the gas phase of the second gas-liquid separation chamber; and a third opening/closing mechanism which is located on the third passage and is configured to adjust an opening degree of the third passage. 4. The air separation device according to claim 3 , wherein the argon column comprises a first argon column and a second argon column connected in series, the second argon column comprises the second gas-liquid separation chamber, and the third passage is located between the first argon column and the second argon column. 5. The air separation device according to claim 3 , wherein the air separation device further comprises: a fourth passage configured to communicate the gas phase of the lower-pressure column and the gas phase of the first gas-liquid separation chamber; and a fourth opening/closing mechanism which is located on the fourth passage and is configured to adjust an opening degree of the fourth passage. 6. An air separation method using the air separation device according to claim 1 , comprising: when the air separation device is started, compressing, precooling, purifying, and cooling raw material air containing oxygen, nitrogen, and argon to generate high-pressure raw material air; distilling the high-pressure raw material air at a low temperature in the high-pressure column, and separating the high-pressure raw material air into high-pressure nitrogen gas and a high-pressure oxygen-enriched liquefied air; distilling the high-pressure oxygen-enriched liquefied air at a low temperature in the low-pressure column, and separating the high-pressure oxygen-enriched liquefied air into low-pressure nitrogen gas, low-pressure liquefied oxygen, and argon-enriched liquefied oxygen; and introducing the low-pressure liquefied oxygen into the second indirect heat-exchanger to indirectly heat-exchange between the high-pressure nitrogen gas and the low-pressure liquefied oxygen to liquefy the high-pressure nitrogen gas to generate high-pressure liquefied nitrogen, and to vaporize the low-pressure liquefied oxygen to generate low-pressure oxygen gas, and introducing the low-pressure oxygen gas into the gas phase of the low-pressure column. 7. An air separation method using the air separation device according to claim 1 , comprising: when the air separation device is started, compressing, precooling, purifying, and cooling raw material air containing oxygen, nitrogen, and argon to generate high-pressure raw material air; distilling the high-pressure raw material air at a low temperature in the high-pressure column, and separating the high-pressure raw material air into high-pressure nitrogen gas and a high-pressure oxygen-enriched liquefied air; distilling the high-pressure oxygen-enriched liquefied air at a low temperature in the low-pressure column, and separating the high-pressure oxygen-enriched liquefied air into low-pressure nitrogen gas, low-pressure liquefied oxygen, and argon-enriched liquefied oxygen; and introducing medium-pressure liquefied oxygen which has been generated by pressurizing the low-pressure liquefied oxygen into the second indirect heat-exchanger to indirectly heat-exchange between the high-pressure nitrogen gas and the medium-pressure liquefied oxygen to liquefy the high-pressure nitrogen gas to generate high-pressure liquefied nitrogen, and to vaporize the medium-pressure liquefied oxygen to generate medium-pressure oxygen gas, and after depressing the medium-pressure oxygen gas, introducing it into the gas phase of the low-pressure column. 8. The air separation method according to claim 6 , wherein after obtaining a required amount of the argon-enriched liquefied oxygen, the air separation method comprises a steady operation comprising: high-pressure separation by distilling the high-pressure raw material air at a low temperature and separating it into the high-pressure nitrogen gas and the high-pressure oxygen-enriched liquefied air; low-pressure separation by distilling the high-pressure oxygen-enriched liquefied air at low temperature and separating it into the low-pressure nitrogen gas, the low-pressure liquefied oxygen, and the argon-enriched liquefied oxygen; argon separation by pressurizing the argon-enriched liquefied oxygen to a pressure higher than the pressure in the low-pressure separation, then distilling the argon-enriched liquefied oxygen at low temperature, and separating it into the argon gas and the medium-pressure liquefied oxygen; a first indirect heat-exchange by indirectly heat-exchanging the argon gas and the low-pressure liquefied oxygen to liquefy the argon gas to generate liquefied argon, and to vaporize the low-pressure liquefied oxygen to generate low-pressure oxygen gas; and a second indirect heat-exchange by indirectly heat-exchanging the high-pressure nitrogen gas and the medium-pressure liquefied oxygen to liquefy the high-pressure nitrogen gas to generate high-pressure liquefied nitrogen, and to vaporize the medium-pressure liquefied oxygen to generate a medium-pressure oxygen gas. 9. The air separatio

Assignees

Inventors

Classifications

  • Argon · CPC title

  • Oxygen or special cases, e.g. isotope-mixtures or low purity O2 · CPC title

  • Nitrogen or special cases, e.g. multiple or low purity N2 · CPC title

  • Recovery of liquid products · CPC title

  • Air or oxygen enriched air, i.e. generally less than 30mol% of O2 · CPC title

Patent family

Related publications grouped by family.

External sources

Frequently asked questions

Answers are generated from the same data shown on this page.

What does patent US12123647B2 cover?
An air separation device for distilling air at a low temperature, includes a high-pressure column to separate high-pressure raw material air into high-pressure nitrogen gas and high-pressure oxygen-enriched liquefied air; a low-pressure column to separate the high-pressure oxygen-enriched liquefied air into low-pressure nitrogen gas, low-pressure liquefied oxygen, and argon-enriched liquefied o…
Who is the assignee on this patent?
Taiyo Nippon Sanso Corp
What technology area does this patent fall under?
Primary CPC classification F25J3/04478. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Oct 22 2024 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 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).