含钛精矿微波辅助复合等离子体法制备碳化钛的研究

IF 0.7 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
D. I. Balakhonov, S. V. Nikolenko, L. A. Konevtsov
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引用次数: 0

摘要

本文报道了用等离子体合成法从矿物精矿中制备碳化钛,而无需化学分离主要氧化成分TiO2。合成产物的化学和物相分析数据用于讨论在等离子体处理浓缩物和增碳剂的起始混合物期间发生的化学反应。我们描述了一个矿精矿中混合化合物的分解和碳化钛合成的模型。作为局部电源,我们使用了一个由间接电弧等离子体源和微波发生器组成的实验装置。等离子体射流的比焓可达~3 kJ/g,速度可达10 m/s,外加微波场可提高等离子体能量和工艺温度。用这种方法制备了高纯度的化学计量碳化钛。等离子体处理已被证明是一种很有前途的方法,可以从含钛矿物精矿制备碳化钛纳米颗粒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Characterization of Titanium Carbide Prepared from Titanium-Containing Concentrate in a Microwave-Assisted Combined Plasma System

Characterization of Titanium Carbide Prepared from Titanium-Containing Concentrate in a Microwave-Assisted Combined Plasma System

In this paper, we report the preparation of titanium carbide from mineral concentrate by plasma synthesis, without chemical isolation of TiO2, a major oxide component. Chemical and phase analysis data for synthesis products are used to discuss chemical reactions occurring during plasma treatment of a starting mixture of the concentrate and a carburizer. We describe a model for the destructuring of mixed compounds in the mineral concentrate and synthesis of titanium carbide. As a local power source, we use an experimental setup comprising an indirect electric arc plasma source and microwave generator. The specific enthalpy of the plasma jet reaches ~3 kJ/g at a weight-average velocity of up to 10 m/s, and additional exposure to a microwave field makes it possible to raise the plasma energy and process temperature. In this manner, high-purity stoichiometric titanium carbide has been prepared. Plasma processing has been demonstrated to be a promising approach for the preparation of titanium carbide nanoparticles from titanium-containing mineral concentrates.

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来源期刊
Inorganic Materials
Inorganic Materials 工程技术-材料科学:综合
CiteScore
1.40
自引率
25.00%
发文量
80
审稿时长
3-6 weeks
期刊介绍: Inorganic Materials is a journal that publishes reviews and original articles devoted to chemistry, physics, and applications of various inorganic materials including high-purity substances and materials. The journal discusses phase equilibria, including P–T–X diagrams, and the fundamentals of inorganic materials science, which determines preparatory conditions for compounds of various compositions with specified deviations from stoichiometry. Inorganic Materials is a multidisciplinary journal covering all classes of inorganic materials. The journal welcomes manuscripts from all countries in the English or Russian language.
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