IP Library Granted Patent US 7,850,902
Granted Patent B2
US 7,850,902 · App. 12/158,886 · Granted Dec 14, 2010

Apparatus for manufacturing molten irons

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Quick Facts
Patent No.
US 7,850,902
App. No.
12/158,886
Granted
Dec 14, 2010
Kind
B2
Abstract

A method for manufacturing molten iron that improves charging and discharge of the fine iron ore, and an apparatus for manufacturing molten iron using the same. The apparatus for manufacturing molten iron includes i) at least one fluidized-bed reduction reactor that reduces fine iron ore and converts the fine iron ore into reduced iron, ii) a fine iron ore charging bin that supplies the fine iron ore to the fluidized-bed reduction reactor, iii) a fine iron ore charging line that directly connects the fine iron ore charging bin to each of the fluidized-bed reduction reactors, and directly charges the fine iron ore into each of the fluidized-bed reduction reactor, iv) a melter-gasifier into which lumped carbonaceous materials and the reduced iron are charged and oxygen is injected, the melter-gasifier manufacturing molten iron, and v) a reducing gas supply line that supplies a reducing gas discharged from the melter-gasifier to the fluidized-bed reduction reactor.

Claims (34)

1. An apparatus for manufacturing molten iron, the apparatus comprising:

at least one fluidized-bed reduction reactor that reduces fine iron ore and converts the fine iron ore into reduced iron;

a fine iron ore charging bin that supplies the fine iron ore to the fluidized-bed reduction reactor;

a fine iron ore charging line that directly connects the fine iron ore charging bin to the at least one fluidized-bed reduction reactor, and directly charges the fine iron ore into the at least one fluidized-bed reduction reactor;

a melter-gasifier into which lumped carbonaceous materials and the reduced iron are charged and oxygen is injected, the melter-gasifier manufacturing molten iron; and

a reducing gas supply line that supplies a reducing gas discharged from the melter-gasifier to the fluidized-bed reduction reactor,

wherein the fine iron ore charging line comprises:

a sub-fine iron ore charging line that is connected to the fine iron ore charging bin; and

a branch fine iron ore charging line that is branched from the sub-fine iron ore charging line and is connected to each of the fluidized-bed reduction reactor.

2. The apparatus of claim 1 , further comprising a quencher that is connected to the fine iron ore charging bin through the sub-fine iron ore charging line.

3. The apparatus of claim 2 , wherein a plurality of junctions are formed where the sub-fine iron ore charging line meets the branch fine iron ore charging line, and a charging valve is installed between neighboring junctions, between the fine iron ore charging bin and the junction that is most adjacent thereto, and between the quencher and the junction that is most adjacent thereto.

4. The apparatus of claim 1 , wherein a charging valve is installed in the branch fine iron ore charging line.

5. The apparatus of claim 1 , further comprising a main fine iron ore charging line that connects the fine iron ore charging bin to the fluidized-bed reduction reactor that is most adjacent to the fluidized-bed reduction reactor and connects neighboring fluidized-bed reduction reactors to each other.

6. The apparatus of claim 5 , wherein a sub-fine iron ore charging line is connected to the fluidized-bed reduction reactor at a height that is the same as the height where the main fine iron ore charging line is connected to the fluidized-bed reduction reactor.

7. The apparatus of claim 6 , wherein the sub-fine iron ore charging line that is connected to the fluidized-bed reduction reactor makes a predetermined angle with the main fine iron ore charging line where the main fine iron ore charging line is connected to the fluidized-bed reduction reactor.

8. The apparatus of claim 7 , wherein the predetermined angle is in a range from 30 degrees to 150 degrees.

9. An apparatus for manufacturing molten iron, the apparatus comprising:

at least one fluidized-bed reduction reactor in which a fluidized bed is formed, the fluidized-bed reduction reactor reducing fine iron ore and converting the fine iron ore into reduced iron;

a fine iron ore discharging line that connects to the at least one fluidized-bed reduction reactor at a middle or an upper portion of the fluidized bed and discharges fine iron ore from the fluidized-bed reduction reactor;

a melter-gasifier into which lumped carbonaceous materials and the reduced iron are charged and oxygen is injected, the melter-gasifier manufacturing molten iron;

a reducing gas supply line that supplies a reducing gas discharged from the melter-gasifier to the fluidized-bed reduction reactor; and

a quencher that is connected to each of the fluidized-bed reduction reactors through the fine iron ore discharging line.

10. The apparatus of claim 9 , further comprising another fine iron ore discharging line that is directly installed on a distribution plate in each of the fluidized-bed reduction reactors, and

wherein the fine iron ore discharging line is connected to the other fine iron ore discharging line.

11. The apparatus of claim 10 , further comprising a fine iron ore charging line that connects the fluidized-bed reduction reactors to each other and discharges the fine iron ore, and

wherein the fine iron ore discharging line is connected to each of the fluidized-bed reduction reactors at a location where the fine iron ore discharging line is higher than a lower end of a dipleg portion of a cyclone installed in each of the fluidized-bed reduction reactors and is lower than the fine iron ore charging line.

12. An apparatus for manufacturing molten iron, the apparatus comprising:

at least one fluidized-bed reduction reactor in which a fluidized bed is formed, the fluidized-bed reduction reactor reducing fine iron ore and converting the fine iron ore into reduced iron;

a fine iron ore charging bin that supplies fine iron ore to the fluidized-bed reduction reactor;

a fine iron ore charging line that directly connects the charging bin to the at least one fluidized-bed reduction reactor, and directly charges the fine iron ore into the at least one fluidized-bed reduction reactor;

a fine iron ore discharging line that is connected to the at least one fluidized-bed reduction reactor at a middle or an upper portion of the fluidized bed and discharges fine iron ore from the at least one fluidized-bed reduction reactor;

a melter-gasifier into which lumped carbonaceous materials and the reduced iron are charged and oxygen is injected, the melter-gasifier manufacturing molten iron;

a reducing gas supply line that supplies a reducing gas discharged from the melter-gasifier to the fluidized-bed reduction reactor; and

a quencher that is connected to the fine iron ore charging line and the fine iron ore discharging line.

Assignments (5)
CHANGE OF NAME Recorded Mar 17, 2023
From: SIEMENS VAI METALS TECHNOLOGIES GMBH & CO.
To: PRIMETALS TECHNOLOGIES AUSTRIA GMBH
Reel/Frame 063021/0868 →
CHANGE OF NAME Recorded Sep 28, 2022
From: POSCO
To: POSCO HOLDINGS INC.
Reel/Frame 061562/0041 →
CHANGE OF NAME Recorded Jul 24, 2008
From: VOEST-ALPINE INDUSTRIEANLAGENBAU GMBH & CO.
To: SIEMENS VAI METALS TECHNOLOGIES GMBH & CO.
Reel/Frame 021287/0361 →
CORRECTIVE ASSIGNMENT TO CORRECT THE FIRST ASSIGNEE'S ADDRESS PREVIOUSLY RECORDED ON REEL 021136 FRAME 0754. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT OF ASSIGNORS' INTEREST. Recorded Jul 24, 2008
From: JEONG, SUN-KWANG; SHIN, MYOUNG-KYUN; CHO, MIN-YOUNG
To: POSCO; VOEST-ALPINE INDUSTRIEANLAGENBAU GMBH & CO.
Reel/Frame 021292/0724 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2008
From: JEONG, SUN-KWANG; SHIN, MYOUNG-KYUN; CHO, MIN-YOUNG
To: POSCO; VOEST-ALPINE INDUSTRIEANLAGENBAU GMBH & CO.
Reel/Frame 021136/0754 →