Blast furnace operation method

US9938593B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9938593-B2
Application numberUS-201414781693-A
CountryUS
Kind codeB2
Filing dateMar 27, 2014
Priority dateApr 3, 2013
Publication dateApr 10, 2018
Grant dateApr 10, 2018

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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 method is provided for operating a blast furnace by blowing at least a solid reducing material and a combustible gas into the furnace through tuyeres with a lance inserted into a blowpipe, wherein a tube-bundle type lance obtained by bundling a plurality of blowing tubes is used and when only a solid reducing material or two kinds of a solid reducing material and a combustible gas or three kinds of a solid reducing material, a combustible gas and a gaseous reducing material is simultaneously blown into an inside of the blast furnace through a tube for blowing the solid reducing material, a tube for blowing the combustible gas and a tube for blowing the gaseous reducing material in the tube-bundle type lance, two or more tube-bundle type lances are inserted into the blowpipe to approximate their front ends to each other and blowing is performed so that the respective blowout streams interfere with each other in the blowpipe.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method of operating a blast furnace by blowing at least a solid reducing material and a combustible gas into the furnace through tuyeres with a lance inserted into a blowpipe, wherein a tube-bundle lance obtained by bundling a plurality of blowing tubes is used and when only a solid reducing material or two kinds of a solid reducing material and a combustible gas or three kinds of a solid reducing material, a combustible gas and a gaseous reducing material is simultaneously blown into an inside of the blast furnace as blowout streams through a tube for blowing the solid reducing material, a tube for blowing the combustible gas and a tube for blowing the gaseous reducing material in the tube-bundle lance, two or more tube-bundle lances are inserted into the blowpipe to approximate their front ends to each other and blowing is performed so that the respective blowout streams interfere with each other in the blowpipe. 2. The method of operating a blast furnace according to claim 1 , wherein the tube-bundle lance is constructed by bundling three parallel blowing tubes and housing them into an outer tube of the lance. 3. The method of operating a blast furnace according to claim 1 , wherein the tube-bundle lance is constructed by passing a tube for blowing the solid reducing material through a central portion of the lance and alternately winding both of a spiral tube for blowing the combustible gas and a spiral tube for blowing the gaseous reducing material around the solid reducing material blowing tube to integrally unite them. 4. The method of operating a blast furnace according to claim 1 , wherein when at least solid reducing material and combustible gas are simultaneously blown through the respective tubes of the two tube-bundle lances, a blowing stream of the solid reducing material is flown outside a blowing stream of the combustible gas passing through a central portion of the blowpipe. 5. The method of operating a blast furnace according to claim 1 , wherein when at least solid reducing material and combustible gas are simultaneously blown through the respective lances of the two tube-bundle lances, blowing is performed by arranging the lances so that two blowing streams of the solid reducing material blown from the respective tube-bundle lances do not collide with each other, while the blowing streams of the solid reducing material collide with a blowing stream of the combustible gas. 6. The method of operating a blast furnace according to claim 1 , wherein when at least solid reducing material and combustible gas are simultaneously blown through the respective lances of the two tube-bundle lances, the blowing streams of the solid reducing material blown from the respective tube-bundle lances do not collide with each other, while they converge and collide with blowing streams of the combustible gas blown from the respective tube-bundle lances to thereby separate the two blowing streams of the solid reducing material. 7. The method of operating a blast furnace according to claim 1 , wherein when at least solid reducing material and combustible gas are simultaneously blown through the respective lances of the two tube-bundle lances, blowing streams of the solid reducing material blown from the respective tube-bundle lances collide with each other, while blowing streams of the gaseous reducing material and the combustible gas not converging nor colliding with the blowing stream of the solid reducing material are blown so as to introduce into the outside of the blowing stream of the solid reducing material in the central portion of the blowpipe. 8. The method of operating a blast furnace according to claim 2 , wherein when at least solid reducing material and combustible gas are simultaneously blown through the respective tubes of the two tube-bundle lances, a blowing stream of the solid reducing material is flown outside a blowing stream of the combustible gas passing through a central portion of the blowpipe. 9. The method of operating a blast furnace according to claim 2 , wherein when at least solid reducing material and combustible gas are simultaneously blown through the respective lances of the two tube-bundle lances, blowing is performed by arranging the lances so that two blowing streams of the solid reducing material blown from the respective tube-bundle lances do not collide with each other, while the blowing streams of the solid reducing material collide with a blowing stream of the combustible gas. 10. The method of operating a blast furnace according to claim 2 , wherein when at least solid reducing material and combustible gas are simultaneously blown through the respective lances of the two tube-bundle lances, the blowing streams of the solid reducing material blown from the respective tube-bundle lances do not collide with each other, while they converge and collide with blowing streams of the combustible gas blown from the respective tube-bundle lances to thereby separate the two blowing streams of the solid reducing material. 11. The method of operating a blast furnace according to claim 2 , wherein when at least solid reducing material and combustible gas are simultaneously blown through the respective lances of the two tube-bundle lances, blowing streams of the solid reducing material blown from the respective tube-bundle lances collide with each other, while blowing streams of the gaseous reducing material and the combustible gas not converging nor colliding with the blowing stream of the solid reducing material are blown so as to introduce into the outside of the blowing stream of the solid reducing material in the central portion of the blowpipe.

Assignees

Inventors

Classifications

  • Blowpipe assembly · CPC title

  • Carbon-containing material · CPC title

  • C21B5/003Primary

    Injection of pulverulent coal · CPC title

  • Introducing a fluid jet or current into the charge (F27D3/18 takes precedence) · CPC title

  • C21B5/001Primary

    Injecting additional fuel or reducing agents · CPC title

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What does patent US9938593B2 cover?
A method is provided for operating a blast furnace by blowing at least a solid reducing material and a combustible gas into the furnace through tuyeres with a lance inserted into a blowpipe, wherein a tube-bundle type lance obtained by bundling a plurality of blowing tubes is used and when only a solid reducing material or two kinds of a solid reducing material and a combustible gas or three ki…
Who is the assignee on this patent?
Jfe Steel Corp
What technology area does this patent fall under?
Primary CPC classification C21B5/003. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Apr 10 2018 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 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).