Separation method and separation device

US10245550B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10245550-B2
Application numberUS-201414895412-A
CountryUS
Kind codeB2
Filing dateJul 14, 2014
Priority dateJul 26, 2013
Publication dateApr 2, 2019
Grant dateApr 2, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A separation method including: an absorption process absorbing a desired component in a starting material gas into an absorption liquid by bringing the starting material gas and the absorption liquid into contact with each other inside an absorption unit; a regeneration process releasing the desired component from the absorption liquid and regenerating the absorption liquid by heating the absorption liquid, which absorbed the desired component in the absorption process, in a regeneration unit; a post-regeneration separation process separating the mixed fluid, which is the gas of the desired component released in the regeneration process and the regenerated absorption liquid, into the desired component gas and the absorption liquid; and a compression process compressing the starting material gas prior to the absorption process and the regeneration process.

First claim

Opening claim text (preview).

The invention claimed is: 1. A separation device for separating a desired component from a starting material gas, which is a mixed gas containing the desired component as an object to be separated, the separation device comprising: an absorber for absorbing the desired component in the starting material gas into an absorption liquid by bringing the introduced starting material gas and the absorption liquid into contact with each other; a regenerator for releasing the desired component from the absorption liquid having absorbed the desired component in the absorber and regenerating the absorption liquid; a regeneration-side separator, connected to the regenerator so that a mixed fluid consisting of the desired component gas released in the regenerator and a regenerated absorbing liquid is introduced from the regenerator to the regeneration-side separator, for separating the introduced mix fluid into the desired component gas and the absorption liquid; a compressor for compressing the starting material gas to generate compression heat in the starting material gas, wherein: the regenerator comprises: a regeneration unit, connected to the absorber so that the absorption liquid having absorbed the desired component in the absorber is introduced from the absorber to the regeneration unit, for releasing the desired component from the introduced absorption liquid and regenerating the absorption liquid; and a temperature controlling unit for the regenerator, connected to the compressor so that the starting material gas compressed in the compressor is introduced from the compressor to the temperature controlling unit for the regenerator, for heating the absorption liquid introduced into the regeneration unit by performing heat exchange between the introduced starting material gas and the absorption liquid introduced into the regeneration unit, and; the absorber is connected to the temperature controlling unit for the regenerator so that the starting material gas, which has been compressed by the compressor and undergone heat exchange with the absorption liquid in the temperature controlling unit for the regenerator, is introduced into the absorber; and an expander equipped with an expander rotor for generating energy by a rotation of the expander rotor; the expander is connected to the regeneration-side separator so that the desired component gas separated in the regeneration-side separator is introduced from the regeneration-side separator to the expander; the expander rotor rotates by an expansion force of the desired component gas introduced into the expander; and the compressor is connected to the expander so that energy generated in the expander is transmitted to the compressor, to compress the starting material gas by the energy transmitted from the expander. 2. The separation device according to claim 1 , wherein: the separation device further comprises an expander equipped with an expander rotor for generating energy by a rotation of the expander rotor; the expander is connected to the absorber so that the starting material gas from which the desired component has been absorbed in the absorption liquid in the absorber is introduced into the expander; the expander rotor rotates by an expansion force of the starting material gas introduced into the expander; and the compressor, connected to the expander so that energy generated in the expander is transmitted to the compressor, compresses the starting material gas by the energy transmitted from the expander. 3. The separation device according to claim 1 , wherein: the expander comprises a generator for generating power by a rotation force of the expander rotor; and the compressor, electrically connected to the generator, is driven by the power generated in the generator. 4. The separation device according to claim 1 , wherein the absorber comprises: an absorption unit for absorbing the desired component in the starting material gas into the absorption liquid by bringing the starting material gas and the absorption liquid, both introduced into the absorber, into contact with each other; and a temperature controlling unit for the absorber, connected to the expander so that the expanded desired component gas discharged from the expander is introduced to the temperature controlling unit for the absorber, for performing heat exchange between the desired component gas introduced from the expander, and the starting material gas and the absorption liquid introduced into the absorption unit, and removing absorption heat generated by absorption of the desired component from the starting material gas to the absorption liquid. 5. A separation device for separating a desired component from a starting material gas, which is a mixed gas containing the desired component as an object to be separated, the separation device comprising: an absorber for absorbing the desired component in the starting material gas into an absorption liquid by bringing the introduced starting material gas and the absorption liquid into contact with each other; a regenerator for releasing the desired component from the absorption liquid having absorbed the desired component in the absorber and regenerating the absorption liquid; a regeneration-side separator, connected to the regenerator so that a mixed fluid consisting of the desired component gas released in the regenerator and a regenerated absorbing liquid is introduced from the regenerator to the regeneration-side separator, for separating the introduced mix fluid into the desired component gas and the absorption liquid; and a compressor for compressing the starting material gas to generate compression heat in the starting material gas, wherein: the regenerator comprises: a regeneration unit, connected to the absorber so that the absorption liquid having absorbed the desired component in the absorber is introduced from the absorber to the regeneration unit, for releasing the desired component from the introduced absorption liquid and regenerating the absorption liquid; and a temperature controlling unit for the regenerator, connected to the compressor so that the starting material gas compressed in the compressor is introduced from the compressor to the temperature controlling unit for the regenerator, for heating the absorption liquid introduced into the regeneration unit by performing heat exchange between the introduced starting material gas and the absorption liquid introduced into the regeneration unit, and; the absorber is connected to the temperature controlling unit for the regenerator so that the starting material gas, which has been compressed by the compressor and undergone heat exchange with the absorption liquid in the temperature controlling unit for the regenerator, is introduced into the absorber, wherein the absorber comprises a laminate, on which an absorption passage layer in which a plurality of absorption passages formed as microchannels are arranged for absorbing the desired component in the starting material gas into the absorption liquid while the introduced starting material gas and the absorption liquid are circulated in a mutually contacted state and a temperature controlling passage layer in which a plurality of temperature controlling passages for the absorber formed as microchannels are arranged for circulating a fluid of which temperature is lower than that of the starting material gas and the absorption liquid circulating in the absorption passages and performing heat exchange between the fluid and the starting material gas and the absorption liquid circulating in the absorption passages, thereby removing the absorption heat generated by the absorption of the desired component from the starting material gas to the absorption liquid in the absorption passages, are laminated. 6. A separatio

Assignees

Inventors

Classifications

  • Removing carbon dioxide · CPC title

  • Regeneration of liquid absorbents · CPC title

  • Absorbing units; Liquid distributors therefor (B01D3/16, B01D3/26, B01D3/30 take precedence; packing elements B01J19/30, B01J19/32) · CPC title

  • Cross-Sectional Technologies · mapped topic

  • of CO2 · CPC title

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What does patent US10245550B2 cover?
A separation method including: an absorption process absorbing a desired component in a starting material gas into an absorption liquid by bringing the starting material gas and the absorption liquid into contact with each other inside an absorption unit; a regeneration process releasing the desired component from the absorption liquid and regenerating the absorption liquid by heating the absor…
Who is the assignee on this patent?
Kobe Steel Ltd
What technology area does this patent fall under?
Primary CPC classification B01D53/1425. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Apr 02 2019 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).