节点文献

Thermal Decomposition of Potassium Titanium Hexacyanoferrate(Ⅱ) Loaded with Cesium in a Fixed Bed Calciner

  • 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】 冯孝贵景山吴秋林陈靖宋崇立

【Author】 FENG Xiaogui *, JING Shan , WU Qiulin , CHEN Jing and SONG Chongli Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 102201, China

【机构】 Institute of Nuclear and New Energy Technology Tsinghua UniversityInstitute of Nuclear and New Energy Technology Tsinghua UniversityBeijing 102201 China

【摘要】 The thermal decomposition of potassium titanium hexacyanoferrate(Ⅱ) (KTiFC) loaded with cesium (referred to as Used Exchanger, or UE) was studied at different flow rate of air in a fixed bed calciner. The calcina- tion process consisted of four stages: ambient temperature—180℃ (stage Ⅰ), 180—250℃ (stage Ⅱ), 250—400 ℃ (stage Ⅲ), and constant 400℃ (stage Ⅳ). The most intense reaction occurred in stage Ⅱ. The rate of thermal decomposition was controlled, depending on the O2 flux, by O2 or CN concentration in different stages. Results from differential thermal analysis (DTA) showed that the calcination reaction of the anhydrous UE was exothermic, with an approximate heat output of 4.6kJ·g-1, which was so large to cause the possible agglomeration of calcined residues. The agglomeration could be avoided by enhancing heat transfer and controlling the O2 flux. It was found that there was no cyanides in the calcined residues and no CN-bearing gases such as HCN and (CN)2 in the off-gas. It seemed that the catalytic oxidation furnace behind the fixed bed calciner could be cancelled.

【Abstract】 The thermal decomposition of potassium titanium hexacyanoferrate(Ⅱ) (KTiFC) loaded with cesium (referred to as Used Exchanger, or UE) was studied at different flow rate of air in a fixed bed calciner. The calcina- tion process consisted of four stages: ambient temperature—180℃ (stage Ⅰ), 180—250℃ (stage Ⅱ), 250—400 ℃ (stage Ⅲ), and constant 400℃ (stage Ⅳ). The most intense reaction occurred in stage Ⅱ. The rate of thermal decomposition was controlled, depending on the O2 flux, by O2 or CN concentration in different stages. Results from differential thermal analysis (DTA) showed that the calcination reaction of the anhydrous UE was exothermic, with an approximate heat output of 4.6kJ·g-1, which was so large to cause the possible agglomeration of calcined residues. The agglomeration could be avoided by enhancing heat transfer and controlling the O2 flux. It was found that there was no cyanides in the calcined residues and no CN-bearing gases such as HCN and (CN)2 in the off-gas. It seemed that the catalytic oxidation furnace behind the fixed bed calciner could be cancelled.

  • 【文献出处】 Chinese Journal of Chemical Engineering ,中国化学工程学报(英文版) , 编辑部邮箱 ,2007年02期
  • 【分类号】O611.3
  • 【下载频次】47
节点文献中: 

本文链接的文献网络图示:

本文的引文网络