Method for Manufacturing Reduced Iron

US2018010202A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2018010202-A1
Application numberUS-201715700212-A
CountryUS
Kind codeA1
Filing dateSep 11, 2017
Priority dateSep 17, 2009
Publication dateJan 11, 2018
Grant date

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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.

Provided is a method for manufacturing reduced iron which includes the steps of: i) drying ores in an ore drier; ii) supplying the dried ores to at least one reduction reactor; iii) reducing the ores in the at least one reduction reactor and manufacturing reduced iron; iv) discharging exhaust gas by which the ores are reduced in the reduction reactor; v) branching the exhaust gas and providing the branched exhaust gas as ore feeding gas; and vi) exchanging heat between the exhaust gas and the ore feeding gas and transferring the sensible heat of the exhaust gas to the ore feeding gas. In the supplying the dried ores to the at least one reduction reactor, the dried ores are supplied to the at least one reduction reactor by using the ore feeding gas.

First claim

Opening claim text (preview).

What is claimed is: 1 . A method for manufacturing reduced iron, comprising: drying ores in an ore drier; supplying the dried ores to at least one reduction reactor; reducing the ores in the at least one reduction reactor and manufacturing reduced iron; discharging exhaust gas by which the ores are reduced in the reduction reactor; branching the exhaust gas and providing the branched exhaust gas as ore feeding gas; and exchanging heat between the exhaust gas and the ore feeding gas and transferring the sensible heat of the exhaust gas to the ore feeding gas, wherein in the supplying of the dried ores to the at least one reduction reactor, the dried ores are supplied to the at least one reduction reactor by using the ore feeding gas. 2 . The method for manufacturing reduced iron of claim 1 , wherein in the supplying of the dried ores to the at least one reduction reactor, a direction in which the dried ores are supplied to the reduction reactor coincides with a direction in which the ore feeding gas flows and the dried ores are supplied to the reduction reactor in a linear flow. 3 . The method for manufacturing reduced iron of claim 2 , wherein the supplying of the dried ores to the at least one reduction reactor comprises: supplying the dried ores along a first direction; and supplying the dried ores along a second direction crossing the first direction and raising the dried ores along the second direction. 4 . The method for manufacturing reduced iron of claim 3 , wherein in the supplying of the dried ores along the first direction, an amount of moisture in the dried ores supplied along the first direction is more than 0 and not more than 7 wt %. 5 . The method for manufacturing reduced iron of claim 3 , wherein the supplying of the dried ores to the at least one reduction reactor further comprises supplying the dried ores to the reduction reactor radially while lowering the dried ores along a plurality of third directions crossing the second direction. 6 . The method for manufacturing reduced iron of claim 5 , wherein the supplying of the dried ores to the at least one reduction reactor further comprises flowing the dried ores in an air-tight space between the second direction and the third direction. 7 . The method for manufacturing reduced iron of claim 1 , wherein in the branching of the exhaust gas and providing the branched exhaust gas as the ore feeding gas, the exhaust gas is compressed before being branched. 8 . The method for manufacturing reduced iron of claim 1 , wherein in the branching of the exhaust gas and providing the branched exhaust gas as the ore feeding gas, after dust contained in the exhaust gas is collected in a dry fashion, the exhaust gas is branched. 9 . The method for manufacturing reduced iron of claim 1 , wherein in the transferring of the sensible heat of the exhaust gas to the ore feeding gas, the flow direction of the exhaust gas is opposite to the flow direction of the ore feeding gas in the heat exchanger. 10 . The method for manufacturing reduced iron of claim 1 , wherein in the supplying of the dried ores to the at least one reduction reactor, the temperature of the ore feeding gas is 150° C. to 300° C.

Assignees

Inventors

Classifications

  • Gas purification of exhaust gases to be recirculated or used in other metallurgical processes · CPC title

  • In fluidised bed furnaces or apparatus containing a dispersion of the material · CPC title

  • Interaction of exhaust gases produced during the manufacture of iron or steel with other processes · CPC title

  • Injection of partially reduced ore into a molten bath · CPC title

  • Heat exchange · CPC title

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What does patent US2018010202A1 cover?
Provided is a method for manufacturing reduced iron which includes the steps of: i) drying ores in an ore drier; ii) supplying the dried ores to at least one reduction reactor; iii) reducing the ores in the at least one reduction reactor and manufacturing reduced iron; iv) discharging exhaust gas by which the ores are reduced in the reduction reactor; v) branching the exhaust gas and providing …
Who is the assignee on this patent?
Posco
What technology area does this patent fall under?
Primary CPC classification C21B13/0033. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Thu Jan 11 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).