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制备四氯化钛过程中加碳氯化反应热力学

Thermodynamics on the reaction of carbochlorination of titania for getting titanium tetrachloride

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【作者】 王玉明刘瑞丰周荣会邵宝顺魏青松袁章福徐聪

【Author】 WANG YuMing, LIU RuiFeng, ZHOU RongHui, SHAO BaoShun, WEI QingSong, YUAN ZhangFu and XU Chong (Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100080, China; Tianjin Chemical Plant, Tianjin, 300480, China; Graduate School of the Chinese Academy of Sciences, Beijing, 100039, China)

【机构】 中国科学院过程工程研究所天津化工厂中国科学院过程工程研究所 北京100080 中国科学院研究生院北京100039天津300480100080

【摘要】 反应热力学对研究二氧化钛加碳氯化反应具有指导作用。运用HSC软件通过计算对二氧化钛加碳氯化的CO/CO2比值、配碳比等进行了讨论,结果表明低温下加碳氯化反应的相关产物为CO2,而高温下为CO。产物TiCl4含量在整个温度范围内保持稳定。当配碳比较高时,碳的反应不完全,存在过量;较低时,不利于TiO2的完全反应。通过对工业TiCl4生产CO/CO2 比值研究,发现CO/CO2比值不完全与平衡态下的CO/CO2比值一致。同时对低价钛氧化物的生成进行了探讨,计算表明在温度低于1 100℃时不会生成低价钛氧化物。通过以上研究为进一步优化加碳氯化反应提供了依据。

【Abstract】 Thermodynamics provides reasonable direction for researching on the reaction of carbochlorination of titania. Several influencing factors of carbochlorination of titania in chloride process are discussed by computation with HSC, a computational chemistry software, which include CO/CO2 ratio, carbon added ratio and so on. The thermodynamic equilibrium calculation of the reaction system shows that main resultant connected with carbon is CO2 at low temperature but CO is at high temperature. Concentration of product TiCl4 is constant in whole domain of temperature. When carbon added ratio is a little higher than needed, the reaction of carbon isn’t full, therefore the quantities of carbon is excessive, when that is a little lower, it is disadvantage for the reaction of TiO2. CO/CO2 ratio of industrial production of TiCl4 is talked over particularly, it is found that CO/CO2 ratio of industrial production of TiCl4 is’t in accord with that of equation state. Presence of low valent titanium oxides is also discussed by computation, it is unbelieved that presence of low valent titanium oxides is possible since chlorination of low valent titanium oxides is easier than that of TiO2 when temperature is lower than 1 100 ℃. The research results give reasonable scientific basis for improving suitable conditions of the carbochlorination reduction.

【基金】 国家自然科学基金资助项目(20306030)
  • 【文献出处】 计算机与应用化学 ,Computers and Applied Chemistry , 编辑部邮箱 ,2006年03期
  • 【分类号】TF823
  • 【被引频次】12
  • 【下载频次】334
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