节点文献

撞击流管式反应制备超细氧化锆粉体

Preparation of Ultrafine Powder of ZrO2 with Impinging-Tubular Reactor

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 王星明段华英张碧田张明贤龚述荣潘得明王力军

【Author】 Wang Xingming , Duan Huaying,Zhang Bitian, Zhang Mingxian, Gong Shurong, Pan Deming, Wang Lijun (Beijing General Research Institute for Non Ferrous Metals, Beijing 100088, China)

【机构】 北京有色金属研究总院北京有色金属研究总院 北京100088北京100088北京100088

【摘要】 我国氧化锆粉体产业目前基本上“精进粗出” ,迫切需要开发氧化锆粉体制备新工艺 ,特别是具有高附加值的纳米氧化锆粉体制备技术。液相反应沉淀法具有成本低、易于工业化等优点而成为研究的热点。本文采用撞击流管式反应新工艺 ,撞击流接触反应强化了过程的微观混合 ,实现了均匀成核 ,使得成核过程易于控制 ,而管式反应器的独特设计克服了返混 ,因而使得反应沉淀过程易于控制 ,粒子分布窄。用该工艺结合醇热处理表面改性制备的超细氧化锆粉体 ,平均粒径约为 14nm ,粒度分布窄并无硬团聚发生。该方法过程简单 ,易于工业化大生产。

【Abstract】 Zirconia industry in our country is under developing. During the past decades, a great number of low end ZrO 2 powder were exported, but on the contrary, many high grade ZrO 2 powder were imported simultaneously. For that cause, new technology to prepare ZrO 2 powder with high extra economic value, especially ZrO 2 nano-powder with controlled particle size and its distribution, is needed to develop urgently. Method of reaction precipitation is becoming the focus of the study because of its low cost and easy industrialization. In this paper, a new technology of tubular reaction with impinging inlet was investigated. Reaction precipitation occurred when reactants contacted each other by impinging, through which micromixing was greatly intensified to ensure a homogeneous environment. In this case, the nucleation can be controlled effectively. Moreover, tubular reactor provided a homogeneous environment for growth of nuclei because back mixing was avoided as possible. So, both nucleation and growth progress can be controlled. Combination with surface modification via alcohol-thermal treating, final ZrO 2 nano powder with 14 nm of mean particle size and very narrow size distribution and no agglomeration is achieved. All the processes are operated easily, and have a good prospect of industrialization.

【基金】 北京市教委基金;北京市自然基金资助项目 ( 2 0 2 2 2 0 6)
  • 【文献出处】 稀有金属 ,Chinese Journal of Rare Metals , 编辑部邮箱 ,2003年01期
  • 【分类号】TQ134.12
  • 【被引频次】13
  • 【下载频次】196
节点文献中: 

本文链接的文献网络图示:

本文的引文网络