Sc2O3-stabilized ZrO2-based electrolyte powder and preparation method thereof, and Sc2O3-stabilized ZrO2 electrolyte ceramic wafer prepared from powder

An electrolyte powder, sc2o3 technology, applied in the direction of solid electrolyte fuel cells, final product manufacturing, sustainable manufacturing/processing, etc., can solve problems such as difficult industrialized mass production, expensive raw materials, unsuitable for industrialized production, etc., and achieve process continuous efficiency High, guaranteed purity, low price effect

Active Publication Date: 2014-03-19
HUNAN RARE EARTH METAL MATERIAL RES INST
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] (1) An Shengli and others used zirconium n-propoxide (C 12 h 28 o 4 Zr) and Sc 2 o 3 As a raw material, scandium oxide stabilized zirconia (9mol%Sc 2 o 3 ; ScSZ) powder, but the zirconium raw material it uses is expensive, not suitable for industrialized production
[0005] (2) The patent CN201010151728.6 of Jiangxi Fanmeiya Material Co., Ltd. introduces the preparation of scandia-stabilized zirconia powder by atmospheric pressure hydrolysis reaction and low-pressure hydrothermal reaction, but the process is relatively complicated, and the process requires high equipment and is difficult. Realize industrial production
[0006] Although many improved methods for yttria-stabilized zirconia materials (YSZ) have been proposed in the prior art, the existing ScSZ powder preparation methods, such as the sol-gel method, require expensive raw materials, hydrolysis-hydrothermal The method has relatively high requirements on equipment, and the co-precipitation method is prone to hard agglomeration, etc., and it is difficult to realize industrialized large-scale production, which seriously hinders the development of the SOFC industry.

Method used

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  • Sc2O3-stabilized ZrO2-based electrolyte powder and preparation method thereof, and Sc2O3-stabilized ZrO2 electrolyte ceramic wafer prepared from powder
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  • Sc2O3-stabilized ZrO2-based electrolyte powder and preparation method thereof, and Sc2O3-stabilized ZrO2 electrolyte ceramic wafer prepared from powder

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preparation example Construction

[0034] Simultaneously, the present invention provides a kind of Sc 2 o 3 Stabilized ZrO 2 A method for preparing a base electrolyte powder, the preparation method comprising the following steps: configuring a reaction solution: combining zirconyl nitrate, Sc 2 o 3 , optional CeO 2 and optional auxiliary materials are added to the nitric acid solution, and mixed to obtain the precursor mother liquid nitric acid solution. Co-precipitation treatment: adding the ammonium bicarbonate-ammonia water buffer system solution into the nitric acid solution of the precursor mother liquor, stirring and reacting, and co-precipitating to obtain a colloidal solution of the precursor. Spray treatment: spray the precursor colloidal solution as a spray liquid to form precursor powder. Heat treatment: heat treatment of the precursor powder to obtain the Sc 2 o 3 Stabilized ZrO 2 base electrolyte powder.

[0035] Sc provided by the present invention 2 o 3 Stabilized ZrO 2 The preparatio...

Embodiment 1

[0044] sc 2 o 3 Stabilized ZrO 2 Preparation method of base electrolyte powder:

[0045] (1) Configure the reaction solution: dissolve zirconyl nitrate in water to obtain a zirconyl nitrate solution; 2 o 3 (Feeding amount is Sc 2 o 3 Stabilized ZrO 2 9mol% of the total molar weight of the base electrolyte powder), CeO 2 (Feeding amount is Sc 2 o 3 Stabilized ZrO 2 1wt.% of the total mass of base electrolyte powder) was dissolved in hot nitric acid solution at a temperature of 90°C, heated and stirred to form a nitric acid mixed solution; the nitric acid mixed solution was added to the zirconium oxynitrate solution, and polyethylene glycol 2000 and polyethylene glycol 20000 (the weight ratio of the two is 1:1, and the total amount is 1wt.% of the total weight of the precursor mother liquor nitric acid solution) and (NH 4 ) 2 SO 4 (The dosage is 2% of the molar concentration of the total metal ions in the nitric acid solution of the precursor mother liquor) was adde...

Embodiment 2

[0053] sc 2 o 3 Stabilized ZrO 2 The preparation method of base electrolyte powder: with embodiment 1, wherein, does not add CeO 2 .

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Abstract

The invention discloses Sc2O3-stabilized ZrO2-based electrolyte powder and a preparation method thereof, and a Sc2O3-stabilized ZrO2 electrolyte ceramic wafer prepared from the powder. The Sc2O3-stabilized ZrO2-based electrolyte powder is characterized in that zirconyl nitrate, Sc2O3, optional CeO2, nitric acid, and optional auxiliary materials are used as the raw materials, an ammonium bicarbonate-ammonia buffer system is used as a precipitant, and the coprecipitation, mist spray and heat treating method is carried out to prepare the powder of which a bulk phase is a cubic phase. Such Sc2O3-stabilized ZrO2-based electrolyte powder has the advantage that the raw materials are low in price and nontoxic; the Sc2O3-stabilized ZrO2-based electrolyte powder can be prepared into a high-strength dense electrolyte ceramic wafer which has relatively high ionic conductivity stability and the like. Simultaneously, according to the preparation method of the Sc2O3-stabilized ZrO2-based electrolyte powder, follow-up complex processes such as filtering, washing and drying in the coprecipitation method are avoided, the agglomeration is reduced, the product purity is ensured, the process is simple, the process is continuous and efficient in process, and large industrial production is facilitated.

Description

technical field [0001] The invention belongs to the field of solid oxide fuel cell electrolyte preparation and relates to a Sc 2 o 3 Stabilized ZrO 2 Base electrolyte powder, its preparation method and Sc 2 o 3 Stabilized ZrO 2 Electrolyte ceramic sheet. Background technique [0002] As an efficient and clean new energy source, solid oxide fuel cell (SOFC for short) has broad application prospects. Foreign countries such as the American venture company Bloom Energy have disclosed their SOFC products in 2010, while in China, due to the late start and foreign technology blockade, SOFC research is still in the development stage. SOFC includes electrolyte, anode, cathode, connector material and sealing material, among which the electrolyte material is the core component, and its performance (conductivity, stability, thermal expansion, densification temperature, etc.) directly affects the operating temperature and power conversion efficiency of SOFC , so the following cond...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01M8/12
CPCY02E60/521Y02E60/525Y02E60/50Y02P70/50
Inventor 吴文花王志坚樊玉川刘吉波苏正夫黄蓉邬晔
Owner HUNAN RARE EARTH METAL MATERIAL RES INST
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