Method for producing valuable metal
US-2024387894-A1 · Nov 21, 2024 · US
US10287651B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10287651-B2 |
| Application number | US-201514794015-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 8, 2015 |
| Priority date | Sep 4, 2014 |
| Publication date | May 14, 2019 |
| Grant date | May 14, 2019 |
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Official abstract text for this publication.
Disclosed is a thermal reduction apparatus. The thermal reduction apparatus according to the exemplary embodiment includes: a preheating unit which preheats a to-be-reduced material and loads the to-be-reduced material into a reducing unit; the reducing unit which is connected to the preheating unit and in which a thermal reduction reaction of the to-be-reduced material occurs; a cooling unit which is connected to the reducing unit and from which the to-be-reduced material flowing into the cooling unit is unloaded to the outside; a gate device which is installed between the preheating unit and the reducing unit; a gate device which is installed between the reducing unit and the cooling unit; a condensing device which is connected to the reducing unit and condenses a metal vapor; a first blocking unit which is installed in the reducing unit; and a second blocking unit which is installed in the reducing unit so as to be spaced apart from the first blocking unit.
Opening claim text (preview).
What is claimed is: 1. A thermal reduction apparatus comprising: a preheating unit which preheats a to-be-reduced material; a reducing unit which is connected to the preheating unit and in which a thermal reduction reaction of the to-be-reduced material occurs and comprising: a reducing unit body which defines an internal space; a first blocking membrane which is installed in the reducing unit body; and a second blocking membrane which is installed in the reducing unit so as to be spaced apart from the first blocking membrane, and the internal space of the reducing unit body is sequentially divided in a movement direction of the to-be-reduced material into a first space, a second space formed between the first blocking membrane and the second blocking membrane, and a third space; a cooling unit which is connected to the reducing unit and from which the to-be-reduced material is unloaded to the outside; a first gate valve which is installed between the preheating unit and the reducing unit; a second gate valve which is installed between the reducing unit and the cooling unit; a condenser which is connected to the reducing unit and condenses a metal vapor; and a loader which is installed at a lateral side of the preheating unit and includes a first drive cylinder which moves the to-be-reduced material from the preheating unit to the first space of the reducing unit body; a moving unit including a second drive cylinder and a third drive cylinder, wherein the second drive cylinder is installed at a tip of the first space of the reducing unit body and pushes the to-be-reduced material to move to the first space by the loader toward the second space of the reducing unit body while being extended toward the second space, and the third drive cylinder is installed at a tip of the third space of the reducing unit body and draws the to-be-reduced material in the second space toward the third space while being extended toward the second space. 2. The thermal reduction apparatus of claim 1 , wherein the preheating unit includes: a preheating unit body which has a first opening through which the to-be-reduced material is loaded, and a second opening through which the to-be-reduced material, which is primarily preheated, is unloaded; a first door which is openably and closably coupled to the first opening; a vacuum device which is installed while penetrating one surface of the preheating unit body; and a temperature adjusting device which is installed in the preheating unit body and preheats the to-be-reduced material. 3. The thermal reduction apparatus of claim 1 , wherein the cooling unit includes: a cooling unit body into which the to-be-reduced material passing through the reducing unit flows; a second door which is openably and closably coupled to the cooling unit body; and at least one vacuum device which is installed while penetrating one surface of the cooling unit body. 4. The thermal reduction apparatus of claim 1 , wherein the preheating unit is disposed at a lateral side of the reducing unit with respect to the movement direction of the to-be-reduced material. 5. The thermal reduction apparatus of claim 1 , further comprising a drawer which is installed at a lateral side of the third space of the reducing unit body and moves the to-be-reduced material moved to the third space toward the cooling unit. 6. The thermal reduction apparatus of claim 1 , wherein the cooling unit is disposed at a lateral side of the reducing unit with respect to the movement direction of the to-be-reduced material, and the drawer moves the to-be-reduced material to the cooling unit through a lateral side of the third space of the reducing unit body.
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