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RE2O3-NH4HF2系合成稀土氟化物的反应规律
引用本文:郝占忠,张建良,王斌. RE2O3-NH4HF2系合成稀土氟化物的反应规律[J]. 北京科技大学学报, 2007, 29(3): 272-277
作者姓名:郝占忠  张建良  王斌
作者单位:1. 北京科技大学冶金与生态工程学院,北京,100083;包头师范学院,包头,014030
2. 北京科技大学冶金与生态工程学院,北京,100083
摘    要:在RE2O3-NH4HF2系中,以稀土氧化物和氟化氢铵为原料,分别在常压和真空状态下,研究了该体系的各步反应,提出了新的合成REF3反应规律.粉状La2O3,Gd2O3与NH4HF2在低温下开始反应,产物为RENH4F4(RE=La,Gd),NH4F,NH3和H2O,高温下RENH4F4分解为REF3和NH4F,伴有NH4F的挥发和分解;整个过程包括合成、分解和脱铵三个步骤;真空可以降低反应的起止温度.制备稀土氟化物应采用"常压低温合成一真空高温分解、脱铵"工艺.

关 键 词:稀土氟化物  氟化氢铵  合成  反应  低温合成  稀土氟化物  反应规律  systems  rare earth fluorides  synthesis  工艺  高温分解  温度  过程  体系  研究  状态  真空  原料  氟化氢铵  稀土氧化物
修稿时间:2005-12-31

Principles of reactions in the synthesis of rare earth fluorides in RE2O3-NH4HF2 systems
HAO Zhanzhong,ZHANG Jianliang,WANG Bin. Principles of reactions in the synthesis of rare earth fluorides in RE2O3-NH4HF2 systems[J]. Journal of University of Science and Technology Beijing, 2007, 29(3): 272-277
Authors:HAO Zhanzhong  ZHANG Jianliang  WANG Bin
Affiliation:1 Metallurgical and Ecological Engineering School, University of Science and Technology Beijing, Beijing 100083, China; 2 Baotou Teachers College, Baotou 014030, China
Abstract:Rare earth fluorides were synthesized with RE2O3 and NH4HF2 under atmospheric pressure and vacuum in RE2O3-NH4HF2 systems, the reactions in the systems were studied, and a new mechanism for the synthesis of REF3 was proposed. Powder La2O3, Gd2O3 started to react with NH4HF2 at low temperature, and the products were RENH4F4 (RE=La, Gd), NH4F, NH3 and H2O. RENH4F4 was decomposed to REF3 and NH4F at high temperature, accompanied with the volatilization and decomposition of NH4F. The whole process could be divided into three steps of synthesis, decomposition and deammoniation. The initial and final temperatures of the reactions were reduced under vacuum. The combination process of synthesis under atmospheric pressure at low temperature and decomposition and deammoniation under vacuum at high temperature should be applied to the preparation of rare earth fluorides.
Keywords:rare earth fluorides  NH_4HF_2  synthesis  reaction
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