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Method for preparing and comprehensively utilizing aluminum oxide by pelletizing, chloridizing and electrolyzing bauxite

A technology of bauxite and alumina, applied in the direction of rare earth metal compounds, chemical instruments and methods, rare earth metal chlorides, etc., can solve the problems of long process, high energy consumption, and inability to comprehensively utilize, so as to reduce the processing links, The effect of high product purity and improved resource utilization

Active Publication Date: 2017-10-10
NORTHEASTERN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0009] The object of the present invention is to provide a method for preparing alumina by chlorination and electrolysis of bauxite balls and its comprehensive utilization in view of the technical problems of long process, high energy consumption and inability to comprehensively utilize existing technologies. The purpose is to make bauxite into pellets through batching; the pellets can be chlorinated and separated to obtain anhydrous aluminum chloride, anhydrous ferric chloride, silicon tetrachloride, titanium tetrachloride, scandium chloride, chloride Gallium products; convert anhydrous aluminum chloride and ferric chloride into corresponding chloride solutions and directly electrolyze to obtain aluminum hydroxide, ferric hydroxide products, hydrogen products and chlorine gas; chlorine gas generated by electrolysis returns to the chlorination section; hydrogen oxidation Aluminum can be roasted to obtain metallurgical grade alumina or chemical alumina; ferric hydroxide can be calcined to obtain iron red or other iron-containing products; silicon tetrachloride can be further purified and reduced with high-purity zinc to prepare polysilicon, and the by-product zinc chloride can be electrolyzed Zinc and chlorine gas can be obtained, zinc cyclically reduces silicon tetrachloride, and chlorine gas returns to the chlorination section to realize the recycling of zinc and chlorine gas; titanium tetrachloride can be used as raw material for sponge titanium after being refined; scandium is enriched in chlorination slag, Can be used as scandium extraction raw material

Method used

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  • Method for preparing and comprehensively utilizing aluminum oxide by pelletizing, chloridizing and electrolyzing bauxite

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0068] A method for preparing alumina and its comprehensive utilization by chlorination and electrolysis of bauxite pellets, the process flow chart is as follows figure 1 As shown, it specifically includes the following steps:

[0069] (1) Ingredients:

[0070] According to mass ratio, bauxite: coking coal: kaolin=1: 0.2: 0.01 batching, mix uniformly, form mixed material, add the water glass of 1.0% of mixed material gross mass and 2.0% of mixed material gross mass in mixed material water;

[0071] (2) Ball making:

[0072] Mix the mixed material, binder and water evenly, pelletize to obtain pellets with a particle size of 5mm, and air-dry the pellets naturally for 10 hours;

[0073] (3) Pellet chlorination and separation:

[0074] The pellets are chlorinated by microwave heating to form a mixture of anhydrous aluminum chloride, anhydrous ferric chloride, silicon tetrachloride, titanium tetrachloride, scandium chloride and gallium chloride. The materials have different bo...

Embodiment 2

[0092] A method for preparing alumina and its comprehensive utilization by chlorination and electrolysis of bauxite pellets, the process flow chart is as follows figure 1 As shown, it specifically includes the following steps:

[0093] (1) Ingredients:

[0094] According to mass ratio, bauxite: coking coal: kaolin=1: 0.3: 0.03 batching, mix uniformly, form mixed material, add the water glass of 1.6% of mixed material gross mass and 3.8% of mixed material gross mass in mixed material water;

[0095] (2) Ball making:

[0096] Mix the mixed material, binder and water evenly, pelletize to obtain pellets with a particle size of 16mm, and air-dry the pellets naturally for 18 hours;

[0097] (3) Pellet chlorination and separation:

[0098] The pellets are chlorinated by microwave heating to form a mixture of anhydrous aluminum chloride, anhydrous ferric chloride, silicon tetrachloride, titanium tetrachloride, scandium chloride and gallium chloride. The materials have different b...

Embodiment 3

[0116] A method for preparing alumina and its comprehensive utilization by chlorination and electrolysis of bauxite pellets, the process flow chart is as follows figure 1 As shown, it specifically includes the following steps:

[0117] (1) Ingredients:

[0118] According to mass ratio, bauxite monohydrate: coking coal: kaolin=1: 0.2: 0.05 batching, mix uniformly, form mixed material, add the water glass of 1.5% of mixed material gross mass and 3.5% of mixed material gross mass in mixed material water;

[0119] (2) Ball making:

[0120] Mix the mixed material, binder and water evenly, make pellets to obtain pellets with a particle size of 15mm, and air-dry the pellets naturally for 16 hours;

[0121] (3) Pellet chlorination and separation:

[0122] The pellets are chlorinated by microwave heating to form a mixture of anhydrous aluminum chloride, anhydrous ferric chloride, silicon tetrachloride, titanium tetrachloride, scandium chloride and gallium chloride. The materials h...

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Abstract

The invention relates to a method for preparing and comprehensively utilizing aluminum oxide by pelletizing, chloridizing and electrolyzing bauxite. The method comprises the following steps: mixing bauxite, a carbon source and kaolin at a ratio; adding a binder and water, pelletizing and airing; chloridizing, separating and purifying, thereby obtaining anhydrous aluminum chloride, anhydrous ferric chloride, silicon tetrachloride, titanium tetrachloride, scandium chloride and gallium trichloride; converting anhydrous aluminum chloride and anhydrous ferric chloride into a corresponding chloride solution; controlling voltage and current density to electrolyze, thereby obtaining aluminum hydroxide, ferric hydroxide, hydrogen and chlorine; returning the chlorine to a chloridizing section; roasting aluminum hydroxide, thereby obtaining metallurgical / chemical aluminum oxide; roasting ferric hydroxide, thereby obtaining iron oxide red or other iron-containing products; purifying silicon tetrachloride; refining titanium tetrachloride, thereby obtaining a titanium sponge raw material; and enriching scandium chloride to serve as a scandium raw material. The method provided by the invention is low in cost, the raw materials are low-cost and are easily obtained, the complete chlorination is realized through pelletizing and chloridizing, the operation process is simple, the degree of automation is high, the product purity is high, and the raw materials, such as, chlorine and zinc, can be reused.

Description

Technical field: [0001] The invention belongs to the technical field of bauxite utilization, and in particular relates to a method for comprehensive utilization of bauxite balls by chlorination and electrolysis. Background technique: [0002] The vast majority of bauxite in my country (>95%) is diaspore type bauxite, and only the bauxite in some areas such as Hainan is gibbsite type, but it has not been used in industry so far. my country's bauxite is characterized by high aluminum, high silicon and low iron (a small number of exceptions), that is, high alumina content and high silicon oxide content, but relatively low aluminum silicon (mostly between 4-7), aluminum silicon High-quality bauxite resources with a ratio of more than 9 only account for 18.5% of the total reserves. The weighted average aluminum-silicon ratio of bauxite in more than 40 typical mining areas across the country is only about 6. Except for a few mining areas such as Guangxi, the iron oxide content...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01F7/02C01B33/033C01G9/04C01G49/06C01G15/00C01F17/00C22B34/12C22B58/00C22B59/00C25B1/26C30B35/00
CPCC01B33/033C01F7/02C01F17/271C01G9/04C01G15/00C01G49/06C22B34/1245C22B58/00C22B59/00C25B1/26C30B35/007Y02P10/20
Inventor 张廷安豆志河吕国志刘燕王龙赵秋月牛丽萍傅大学张伟光
Owner NORTHEASTERN UNIV
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