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响应面法优化碳热还原合成LiFePO4/C的工艺参数(英文)
引用本文:杨克迪,谭芳香,王凡,龙云飞,文衍宣. 响应面法优化碳热还原合成LiFePO4/C的工艺参数(英文)[J]. 中国化学工程学报, 2012, 20(4): 793-802. DOI: 10.1016/S1004-9541(11)60250-4
作者姓名:杨克迪  谭芳香  王凡  龙云飞  文衍宣
作者单位:School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, China
基金项目:Supported by the National Natural Science Foundation of China (50474092);GXNSFA (2011GXNSFA018015)
摘    要:A statistically based optimization strategy is used to optimize the carbothermal reduction technology for the synthesis of LiFePO4/C using LiOH,FePO4 and sucrose as raw materials.The experimental data for fitting the response are collected by the central composite rotatable design(CCD).A second order model for the discharge ca-pacity of LiFePO4/C is expressed as a function of sintering temperature,sintering time and carbon content.The ef-fects of individual variables and their interactions are studied by a statistical analysis(ANOVA).The results show that the linear effects and the quadratic effects of sintering temperature,carbon content and the interactions among these variables are statistically significant,while those effects of sintering time are insignificant.Response surface plots for spatial representation of the model illustrate that the discharge capacity depends on sintering temperature and carbon content more than sintering time.The model obtained gives the optimized reaction parameters of sinter-ing temperature at 652.0 ℃,carbon content of 34.33 g?mol-1 and 8.48 h sintering time,corresponding to a dis-charge capacity of 150.8 mA·h·g-1.The confirmatory test with these optimum parameters gives the discharge ca-pacity of 147.2 and 105.1 mA·h·g-1 at 0.5 and 5 C,respectively.

关 键 词:lithium ion battery  cathode material  lithium iron phosphate  carbothermal reduction technology  response surface methodology  
收稿时间:2011-02-19

Response Surface Optimization for Process Parameters of LiFePO4/C Preparation by Carbothermal Reduction Technology
YANG Kedi,TAN Fangxiang,WANG Fan,LONG Yunfei and WEN Yanxuan. Response Surface Optimization for Process Parameters of LiFePO4/C Preparation by Carbothermal Reduction Technology[J]. Chinese Journal of Chemical Engineering, 2012, 20(4): 793-802. DOI: 10.1016/S1004-9541(11)60250-4
Authors:YANG Kedi  TAN Fangxiang  WANG Fan  LONG Yunfei  WEN Yanxuan
Affiliation:School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, China
Abstract:A statistically based optimization strategy is used to optimize the carbothermal reduction technology for the synthesis of LiFePO4/C using LiOH,FePO4 and sucrose as raw materials.The experimental data for fitting the response are collected by the central composite rotatable design(CCD).A second order model for the discharge capacity of LiFePO4/C is expressed as a function of sintering temperature,sintering time and carbon content.The effects of individual variables and their interactions are studied by a statistical analysis(ANOVA).The results show that the linear effects and the quadratic effects of sintering temperature,carbon content and the interactions among these variables are statistically significant,while those effects of sintering time are insignificant.Response surface plots for spatial representation of the model illustrate that the discharge capacity depends on sintering temperature and carbon content more than sintering time.The model obtained gives the optimized reaction parameters of sinter-ing temperature at 652.0℃,carbon content of 34.33 g·mol-1 and 8.48 h sintering time,corresponding to a dis-charge capacity of 150.8 mA·h·g-1.The confirmatory test with these optimum parameters gives the discharge capacity of 147.2 and 105.1 mA·h·g-1 at 0.5 and 5 C,respectively.
Keywords:lithium ion battery  cathode material  lithium iron phosphate  carbothermal reduction technology  re-sponse surface methodology
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