Method for preparing spinel-type complex oxide through co-precipitation, homogenization and spray drying

A composite oxide, spinel type technology, applied in ferrous oxides, chemical instruments and methods, zinc oxide/zinc hydroxide and other directions, can solve the problem of unsuitable large-scale industrial production, material loss product yield Low, uneven product components and other problems, to shorten the production cycle, simplify the production process, shorten the roasting time effect

Active Publication Date: 2016-03-23
SOUTHWEST RES & DESIGN INST OF CHEM IND
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Problems solved by technology

[0003] In the above method, when the spinel is prepared by the mechanical mixing method, because the raw materials are difficult to mix uniformly, the phases cannot be fully contacted to cause a solid solution reaction, so the product components are not uniform, the purity is not high, and the particle size is large. At the same time The calcination temperature is high; in the co-precipitation method, the component segregation phenomenon is easy to occur when the material is conventionally dried, which will also cause the product composition to be uneven and the purity is not high. This method also has the problem of high calcination temperature; the sol-gel method forms A uniform and stable gel takes a long time, the formed colloid is not easy to wash, and the calcination tempe

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  • Method for preparing spinel-type complex oxide through co-precipitation, homogenization and spray drying
  • Method for preparing spinel-type complex oxide through co-precipitation, homogenization and spray drying
  • Method for preparing spinel-type complex oxide through co-precipitation, homogenization and spray drying

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Embodiment

[0026] When preparing spinel-type composite oxides by co-precipitation-homogeneity-spray drying, the salt solution of metal A and metal B with a ratio of substance amount of 2:1 and alkaline solution are mixed at a certain precipitation temperature and pH value Co-precipitation reaction is carried out under , stirring speed and aging time, and the obtained material is washed with a certain temperature and an appropriate amount of deionized water, beaten and filtered several times. After the impurity content reaches the standard, the slurry is added to the homogenizer with a certain gap. Refining the slurry for a certain number of times, then spray-drying it under a suitable air inlet temperature and nozzle size, and finally roasting it under a suitable atmosphere and temperature for a period of time to obtain a spinel-type composite oxide.

[0027] The preparation process of Examples 1-17 of the present invention is the same as above, and the specific process conditions of the ...

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Abstract

The invention belongs to the field of chemical engineering and relates to a preparation method of a spinel type material, in particular to a method for preparing a spinel-type complex oxide through co-precipitation, homogenization and spray drying. According to the method, a mixed solution of two metallic nitrates and an alkaline solution are combined and added to a precipitation tank for a reaction, an obtained material is washed by deionized water, filtered, subjected to beating and refined by a homogenizer and then is sent to a spray drying machine, the dried material is subjected to calcination, and the spinel-type complex oxide powder is obtained. The method has the advantages of low calcination temperature, short time and low energy consumption, and a product has low loss, high purity and small particle size.

Description

technical field [0001] The invention belongs to the field of chemical industry, and relates to a method for preparing spinel-type materials, in particular to a method for preparing spinel-type composite oxides through co-precipitation-homogenization-spray drying. Background technique [0002] The general chemical formula of spinel composite oxide is AB 2 o 4 , where A is mostly a divalent cation, B is mostly a trivalent cation, and A and B can be the same. Spinel-type composite oxides are widely used as catalytic, refractory, and energy conversion and storage materials due to their excellent high temperature stability and mechanical strength. The traditional methods for preparing such materials mainly include: (1) mechanical mixing methods, such as : South China University of Technology discloses a lithium-ion battery anode material LiMn 2 o 4 The high-temperature solid-phase method (CN103904321A) requires the lithium source and the manganese source to undergo two contin...

Claims

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Application Information

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IPC IPC(8): C01G1/02C01F7/02C01G53/04C01G9/02C01G51/04C01G3/02C01G45/02C01G49/08C01G15/00
CPCC01F7/02C01G1/02C01G3/02C01G9/02C01G15/00C01G45/02C01G49/08C01G51/04C01G53/04C01P2002/72
Inventor 程金燮胡志彪王科邹鑫徐晓峰李倩黄宏吴熙宇
Owner SOUTHWEST RES & DESIGN INST OF CHEM IND
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