2009Acta Scientiarum Naturalium Universitatis SunyatseniRequires access

Thermodynamic analysis of production of high purity titanium by thermal decomposition of titanium iodide

陈肖虎, Wang Shi Hua, 刘义敏, 方敏

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Abstract

高纯净钛被钛碘化物的热分解准备。可行合成线路和最佳 decompositon temperaure 被热力学的分析在钛碘化物和成核生长理论的热分解的过程获得。为钛碘化物的形成的温度在 800900 K,大量钛碘化物蒸汽能在被获得的范围。钛碘化物的分解温度在 1 3001 500 K,赞成分解率能在被完成的范围。实验结果证明生产的钛的纯净是超过 99.995% 。

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What this paper is about

高纯净钛被钛碘化物的热分解准备。可行合成线路和最佳 decompositon temperaure 被热力学的分析在钛碘化物和成核生长理论的热分解的过程获得。为钛碘化物的形成的温度在 800900 K,大量钛碘化物蒸汽能在被获得的范围。钛碘化物的分解温度在 1 3001 500 K,赞成分解率能在被完成的范围。实验结果证明生产的钛的纯净是超过 99.995% 。

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Available abstract

高纯净钛被钛碘化物的热分解准备。可行合成线路和最佳 decompositon temperaure 被热力学的分析在钛碘化物和成核生长理论的热分解的过程获得。为钛碘化物的形成的温度在 800900 K,大量钛碘化物蒸汽能在被获得的范围。钛碘化物的分解温度在 1 3001 500 K,赞成分解率能在被完成的范围。实验结果证明生产的钛的纯净是超过 99.995% 。

Key concepts: Titanium, Thermal decomposition, Materials science, Metallurgy, Decomposition, Chemistry, Organic chemistry

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