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碳化钛粉末的微波辅助绿色合成

The Microwave-Assisted Green Synthesis of TiC Powders.

作者信息

Wang Hui, Zhu Wencheng, Liu Yanchun, Zeng Lingke, Sun Luyi

机构信息

College of Materials Science & Engineering, South China University of Technology, Guangzhou 510640, China.

Department of Chemical & Biomolecular Engineering and Polymer Program, Institute of Materials Science, University of Connecticut, Storrs, CT 06269, USA.

出版信息

Materials (Basel). 2016 Nov 8;9(11):904. doi: 10.3390/ma9110904.

Abstract

Titanium carbide (TiC) is an important engineering material and has found widespread applications. Currently, TiC is typically synthesized through carbothermal reduction, requiring a high temperature (ca. 1700-2300 °C) and long reaction time (ca. 10-20 h), which is not eco-friendly. During a conventional reaction path, anatase TiO₂ (A-TiO₂) was first converted to rutile TiO₂ (R-TiO₂), which was subsequently reduced to TiC. Herein, we explored the synthesis of TiC powders with the assistance of microwave heating. In particular, we achieved the conversion of A-TiO₂, which was more reactive than R-TiO₂ for the carbothermal reduction, to TiC, which was directly due to quick microwave heating. As such, the carbothermal reduction started at a much lower temperature of ca. 1200 °C and finished within 30 min when reacting at 1400 °C, leading to significant energy saving. This study shows that microwave-assisted synthesis can be an effective and green process for preparing TiC powders, which is promising for future large-scale production. The influence of the reaction temperature, the reaction duration, and the carbon content on the synthesis of TiC powders was investigated.

摘要

碳化钛(TiC)是一种重要的工程材料,已得到广泛应用。目前,TiC通常通过碳热还原法合成,需要高温(约1700 - 2300°C)和较长的反应时间(约10 - 20小时),这并不环保。在传统反应路径中,锐钛矿型TiO₂(A-TiO₂)首先转化为金红石型TiO₂(R-TiO₂),随后再还原为TiC。在此,我们探索了在微波加热辅助下合成TiC粉末。特别地,我们实现了将比R-TiO₂在碳热还原中更具反应活性的A-TiO₂转化为TiC,这直接归因于快速的微波加热。因此,碳热还原在约1200°C的低得多的温度下开始,在1400°C反应时30分钟内完成,从而显著节能。本研究表明,微波辅助合成可以是制备TiC粉末的一种有效且绿色的工艺,对未来大规模生产具有前景。研究了反应温度、反应持续时间和碳含量对TiC粉末合成的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05a4/5457278/8b4b71933e10/materials-09-00904-g001.jpg

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