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由氟化锂和五氯化磷制备五氟化磷的动力学研究 被引量:2

Research on kinetics for preparation of phosphorus pentafluoride with lithium fluoride and phosphorus pentachloride
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摘要 在150-195℃下,研究了氟化锂和五氯化磷制备五氟化磷的反应过程,并应用缩芯模型处理数据,确定了反应的动力学模型:反应初期(0-0.5 h),该反应受化学反应控制,动力学方程为ks=22.2 exp[-34 490/(RgT)];反应后期(1-3 h),该反应主要受内扩散控制,动力学方程为De=4.357×10^-7exp[-29 980/(RgT)]。该研究旨在揭示氟化锂和五氯化磷制备五氟化磷反应过程的相关规律,为工业生产五氟化磷提供必要的基础数据。 Reaction process for the preparation of phosphorus pentafluoride with phosphorus pentachloride and lithium fluoride was studied at 150 - 195 ℃. Shrinking core model was used to simulate the data and the kinetic model of the reac- tion was obtained : the earlier period from start to 0.5 h was controlled by chemical reaction, the kinetic equation was : ks = 22.2exp[ -34 490/ (RgT) ] ;the later period from 1 h to 3 h is controlled by diffusion control,the dynamic equation was: De =4.357 x 10-7exp[ -29 980/ (RsT) ]. This study aims to reveal the related laws of the reaction between phosphorus pentachloride and lithium fluoride to prepare phosphorus pentafluoride and provides necessary data for the industrial production of phosphorus pentafluoride.
出处 《无机盐工业》 CAS 北大核心 2011年第6期30-32,42,共4页 Inorganic Chemicals Industry
基金 四川省科技支撑计划项目(2008GZ0025)
关键词 五氟化磷 缩芯模型 动力学 phosphorus pentafluoride shrinking core model kinetics
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  • 1滕祥国,戴纪翠,马培华.锂离子二次电池电解质材料LiPF_6的制备及表征[J].无机化学学报,2004,20(9):1109-1111. 被引量:9
  • 2李凌云,张志业,陈欣.六氟磷酸锂的制备工艺新进展[J].化学工业与工程,2005,22(3):224-228. 被引量:15
  • 3GUOBing-Kun(郭炳馄) XUHui(徐徽) WANGXianYou(王先友) XIAOLi-Xin(肖立新).Li-ion Battereis(锂离子电池)[M].Changsha:Middle South University Press,2002.p227.
  • 4WANG Wei(王伟)Youji Fu Gongye(Organic Fluorine Industry),1998,4,19.
  • 5SUNBao-Yuan(孙宝远) ZHAOXi-Ming(赵锡铭) QIUMing-Liang(仇明亮) WANGDe-Gui(王德贵) JINZhen-Min(靳振民) SNANGXiu-Lan(尚秀兰).[P].C. N. Patent No·1317445A..
  • 6GUOXin-Feng(郭西凤) ZHAOQing-Yun(赵庆云) FENGRui(冯锐).[P].C.N.Patent No·1339401A..
  • 7YANGRui-Fu(杨瑞甫) ZHANGBao-Chuan(张宝川).[P].C. N.Patent No·1433960A..
  • 8Lucas H. J., Ewing F. J. J. Am. Chem. Soc., 1927,49,1270.
  • 9Wiesboeck R. A., Ga. A. U. S. Patent No. 3,654,330.
  • 10Affspruno H. E., Archer V. S. Anal. Chem., 1963,35,1913.

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