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用钛粉通过精制己烷合成碳化钽。

Synthesis of Tantalum Carbide Using Purified Hexane by Titanium Powder.

作者信息

Hwang Seon-Min, Hong Ji-Won, Park Yong-Ho, Lee Dong-Won

机构信息

Department of Materials Science and Engineering, Pusan National University, 2 Busandaehak-ro 63 Beon-gil, Busan 46241, Korea.

Titanium Department, Korea Institute of Materials Science (KIMS), 797 Changwon-daero, Changwon 51508, Korea.

出版信息

Materials (Basel). 2022 Oct 26;15(21):7510. doi: 10.3390/ma15217510.

Abstract

Hexane is a safe, efficient, and cost-effective alternative to other commercial hydrocarbons for gaseous carburization; however, commercial hexane is not sufficiently pure. Titanium powder can remove oxygen-containing impurities from commercial hexane; however, research on the use of titanium powder remains limited. We investigated the purification of hexane using titanium, copper, and aluminum powders and used the purified hexane for the gaseous carburization of tantalum. Ti exhibited lower activation energy for oxidation (1.55 kJ/mol) than Cu (91.09 kJ/mol) and Al (150.25 kJ/mol) and a significantly higher oxidation rate (0.0269 g/h) in hexane at room temperature than Cu (0.0018 g/h) and Al (0.0001 g/h). The carbon content in tantalum carburized using the purified hexane was comparable to that carburized using unpurified hexane (approximately 6.22%); however, its oxygen content was significantly lower (1.39%), which indicates that the produced tantalum carbide has a higher purity. X-ray diffraction results revealed that the oxidation products of tantalum, such as TaO, TaO, TaO, and TaO, were absent in the sample carburized using the purified hexane. Therefore, Ti powder can effectively remove oxygen-containing impurities from commercial hexane and facilitate its use as an effective carburizing medium for the synthesis of high-purity tantalum carbide.

摘要

对于气体渗碳而言,己烷是一种安全、高效且经济高效的替代其他商业碳氢化合物的物质;然而,商业己烷纯度不够。钛粉可去除商业己烷中的含氧杂质;然而,关于使用钛粉的研究仍然有限。我们研究了使用钛粉、铜粉和铝粉对己烷进行提纯,并将提纯后的己烷用于钽的气体渗碳。在室温下,钛在己烷中氧化的活化能(1.55 kJ/mol)低于铜(91.09 kJ/mol)和铝(150.25 kJ/mol),且氧化速率(0.0269 g/h)显著高于铜(0.0018 g/h)和铝(0.0001 g/h)。使用提纯后的己烷渗碳的钽中的碳含量与使用未提纯己烷渗碳的钽中的碳含量相当(约6.22%);然而,其氧含量显著更低(1.39%),这表明所生成的碳化钽纯度更高。X射线衍射结果显示,在使用提纯后的己烷渗碳的样品中不存在钽的氧化产物,如TaO、TaO、TaO和TaO。因此,钛粉可有效去除商业己烷中的含氧杂质,并有助于其用作合成高纯度碳化钽的有效渗碳介质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7fe/9657022/6e845751b121/materials-15-07510-g001.jpg

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