Method and apparatus for converting carbon-based feedstocks into usable products using rotary generated thermal energy
US-2024343978-A1 · Oct 17, 2024 · US
US2020024685A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2020024685-A1 |
| Application number | US-201816484618-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jan 31, 2018 |
| Priority date | Feb 9, 2017 |
| Publication date | Jan 23, 2020 |
| Grant date | — |
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Provided is a smelting method in which, for example, a metal oxide such as a nickel oxide ore including nickel oxide is used as a source material and is reduced with a carbonaceous reducing agent to obtain a reduced product, with which method efficient processing can be achieved. This metal oxide smelting method is, for example, a nickel oxide ore smelting method. Specifically, the method includes a reduction process step S3 that has: a drying step S31 in which a mixture that was obtained by mixing a metal oxide and a carbonaceous reducing agent is dried; a preheating step S32 in which the dried mixture is preheated; a reduction step S33 in which the preheated mixture is reduced using a rotary hearth furnace 1, a hearth of which rotates; and a cooling step S35 in which the obtained reduced product is cooled.
Opening claim text (preview).
1 . A metal oxide smelting method comprising a reduction treatment step including: a drying step in which a mixture obtained by mixing a metal oxide and a carbonaceous reducing agent is dried; a preheating step in which the dried mixture is preheated; a reduction step in which the preheated mixture is reduced using a rotary hearth furnace, a hearth of which rotates; and a cooling step in which the obtained reduced product is cooled. 2 . The metal oxide smelting method according to claim 1 , wherein the reduced product obtained through the reduction step is subjected to a temperature maintenance step in which the reduced product is maintained at a prescribed temperature in the rotary hearth furnace, and after maintained for a prescribed time, the reduced product is supplied to the cooling step. 3 . The metal oxide smelting method according to claim 2 , wherein the rotary hearth furnace has a structure capable of partitioning the respective steps, and a treatment in the reduction step and a treatment in the temperature maintenance step are performed using the same rotary hearth furnace. 4 . The metal oxide smelting method according to claims 2 , wherein the reduced product is maintained at a temperature of 1300° C. or higher and 1500° C. or lower in the temperature maintenance step. 5 . The metal oxide smelting method according to claim 1 , wherein in the reduction step, reduction is performed while a reducing temperature is set to 1200° C. or higher and 1450° C. or lower. 6 . The metal oxide smelting method according to claim 1 , wherein the mixture to be dried in the drying step is obtained through a mixing treatment step in which at least a metal oxide and a carbonaceous reducing agent are mixed to obtain a mixture, and a pretreatment step in which a treatment of forming the obtained mixture into a lump product or a treatment of filling the mixture in a prescribed container is performed. 7 . The metal oxide smelting method according to claim 1 , further comprising a separating step in which the reduced product cooled in the cooling step in the reduction treatment step is separated into a metal and slag and the metal is recovered. 8 . The metal oxide smelting method according to claim 1 , wherein the metal oxide is nickel oxide ore. 9 . The metal oxide smelting method according to claim 1 , wherein the reduced product contains ferronickel. 10 . The metal oxide smelting method according to claims 3 , wherein the reduced product is maintained at a temperature of 1300° C. or higher and 1500° C. or lower in the temperature maintenance step. 11 . The metal oxide smelting method according to claim 2 , wherein in the reduction step, reduction is performed while a reducing temperature is set to 1200° C. or higher and 1450° C. or lower. 12 . The metal oxide smelting method according to claim 3 , wherein in the reduction step, reduction is performed while a reducing temperature is set to 1200° C. or higher and 1450° C. or lower. 13 . The metal oxide smelting method according to claim 2 , wherein the mixture to be dried in the drying step is obtained through a mixing treatment step in which at least a metal oxide and a carbonaceous reducing agent are mixed to obtain a mixture, and a pretreatment step in which a treatment of forming the obtained mixture into a lump product or a treatment of filling the mixture in a prescribed container is performed. 14 . The metal oxide smelting method according to claim 3 , wherein the mixture to be dried in the drying step is obtained through a mixing treatment step in which at least a metal oxide and a carbonaceous reducing agent are mixed to obtain a mixture, and a pretreatment step in which a treatment of forming the obtained mixture into a lump product or a treatment of filling the mixture in a prescribed container is performed. 15 . The metal oxide smelting method according to claim 2 , further comprising a separating step in which the reduced product cooled in the cooling step in the reduction treatment step is separated into a metal and slag and the metal is recovered. 16 . The metal oxide smelting method according to claim 3 , further comprising a separating step in which the reduced product cooled in the cooling step in the reduction treatment step is separated into a metal and slag and the metal is recovered. 17 . The metal oxide smelting method according to claim 2 , wherein the metal oxide is nickel oxide ore. 18 . The metal oxide smelting method according to claim 3 , wherein the metal oxide is nickel oxide ore. 19 . The metal oxide smelting method according to claim 2 , wherein the reduced product contains ferronickel. 20 . The metal oxide smelting method according to claim 3 , wherein the reduced product contains ferronickel.
with formation of ferro-nickel or ferro-cobalt · CPC title
organic · CPC title
by reduction in solid state, e.g. by segregation processes · CPC title
with carbonaceous material for the production of coked agglomerates · CPC title
in rotary furnaces · CPC title
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