Process for producing cobaltic-cobaltous oxide

A technology of cobalt tetroxide and production process, which is applied in the direction of cobalt oxide/cobalt hydroxide, etc., which can solve the problems of large environmental pollution, inaccurate control, and increased production costs, and achieve low production costs, low environmental pollution, and low consumption.

Inactive Publication Date: 2009-08-19
南通新玮镍钴科技发展有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Many manufacturers use cobalt salts purchased directly from other manufacturers as raw materials in the production of cobalt tetroxide. Because they are not produced by themselves, the specific conditions of the cobalt salts are not accurately grasped, which will also affect the performance of the produced cobalt tetroxide.
In addition, many manufacturers use oxalic acid to prepare cobalt oxalate salt and then calcine it to make tricobalt tetroxide. The oxalic acid used in this method is expensive, which increases the production cost and causes great environmental pollution.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 2

[0024] Cobalt tetroxide production technology, as follows:

[0025] 1. Selective leaching step of hydrocobalt ore: After the hydrocobalt ore is ball-milled to achieve a particle size of less than 150 mesh, it is put into concentrated sulfuric acid or concentrated hydrochloric acid or a mixed solution of the two, and the reducing agent ferrous chloride and Crystalline water sodium sulfite mixture, the reduction reaction was carried out for 5 hours under the conditions of solution pH value 1.0 and reaction temperature 60°C; sampling and testing, when the cobalt content in the slag was less than 0.5%, and the ferrous ion in the solution was less than 2.0g / L, stop adding the reduction reaction agent, add sodium chlorate 0.5 times the mass of ferrous ions, and oxidize the remaining ferrous iron into ferric iron; add soda ash to the solution, adjust the pH of the solution to 2.5-4.5, and react for 2-3 hours to make Valence iron is precipitated in the form of ferric hydroxide, and th...

Embodiment 3

[0031] Cobalt tetroxide production technology, as follows:

[0032] 1. Selective leaching step of hydrocobalt ore: After the hydrocobalt ore is ball-milled and pulped to meet the particle size requirement of less than 150 mesh, it is put into concentrated sulfuric acid or concentrated hydrochloric acid or a mixed solution of the two, and the reducing agent ferrous sulfate and chlorine are added For the mixture of ferrous chloride, the reduction reaction was carried out for 9 hours under the conditions of solution pH value 2.0 and reaction temperature 90°C; sampling and testing, when the cobalt content in the slag was less than 0.5%, and the ferrous ion in the solution was less than 2.0g / L, stop adding As a reducing agent, add hydrogen peroxide that is 0.5 times the mass of divalent iron ions, and oxidize the remaining ferrous iron into ferric iron; add soda ash to the solution, adjust the pH of the solution to 4.5, and react for 3 hours to make ferric iron oxidize with hydroxid...

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Abstract

The invention relates to a process for producing cobaltosic oxide. The process steps comprise that: boodtite powder is crushed and selectively leached out valuable metals such as cobalt and the like under the acid condition, after removing impurities and recovering the valuable metals such as copper, nickel, manganese, a solution of cobalt salt, of which the cobalt concentration is more than 100g / L, is obtained; and the solution of cobalt salt is diluted by deionized water to be between 88 and 92g / L, and the solution of cobalt salt and a solution of sodium hydroxide are continuously added in a reaction kettle at the same time, the pH value is controlled to be between 10 and 11, the compressed air is pumped in, the obtained suspension of cobaltous hydroxide is overflowed from the reaction kettle, filtered and washed by deionized water, and the washed cobaltous hydroxide is dried or placed in a calcinator with adjustable gas atmosphere, calcined at a temperature of between 400 and 1,300 DEG C for 6 to 20 hours, and crushed and graded to obtain the cobaltosic oxide. The process has the advantages of short flow and low consumption, and the reducer used in the reductive leaching process of the boodtite is a byproduct of ferrous salt generated in the whole technological process, thereby saving a large amount of sodium sulfite.

Description

technical field [0001] The invention relates to a production process for producing tricobalt tetroxide by using hydrocobalt ore as a raw material, and belongs to the field of chemical industry. Background technique [0002] In recent years, with the rapid development of electronic products, lithium-ion batteries have been widely used in all aspects of life. The rapid expansion of lithium-ion batteries has accelerated the market's consumption of lithium cobalt oxide, the positive electrode material of lithium-ion batteries. The properties of cobalt tetroxide, one of the raw materials for preparing lithium cobaltate, directly affect the performance of the produced lithium-ion battery. Many manufacturers use cobalt salts purchased directly from other manufacturers as raw materials in the production of cobalt tetroxide. Because they are not produced by themselves, they are not sure about the specific conditions of the cobalt salts, which will also affect the performance of the p...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01G51/04
Inventor 朱恒新梁永顺吴建中王绪英张海春刘真国刘晓庆杜志君盛伟斌
Owner 南通新玮镍钴科技发展有限公司
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