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Synthesis of Vanadium Carbide by Mechanical Activation Assisted Carbothermic Reduction

机译:机械活化辅助碳热碳化碳化钒的合成

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摘要

Vanadium carbide is known, for its hardness and other unique properties, as a refractory material. The synthesis of vanadium carbide is always associated with the utilization of expensive active metals, such as aluminum, calcium and magnesium, as a reducing agent to extract the vanadium metal from its corresponding oxide, followed by carbidization. The carbidization of reduced vanadium requires a complicated process and elevated temperature. Mechanical activation to synthesize vanadium carbide from its corresponding oxide and carbon source represents a promising, straightforward and less energy-intensive route. In the present study, vanadium carbide is synthesized by the carbothermic reduction of a mechanically activated mixture of V2O5 and carbon black as reducing agents without any additives. The reduction process is monitored by means of thermogravimetric analysis. The reduction products are characterized by X-ray diffraction and field emission scanning electron microscope. It is found that V8C7 with an average crystallite size of 88 nm can be synthesized from a V2O5-C mixture after milling for 15 h and further heating at 1050 °C for 1 h in an inert atmosphere.
机译:作为耐火材料,已知碳化钒是已知其硬度和其他独特性的。碳化钒的合成总是与利用昂贵的活性金属,例如铝,钙和镁,作为还原剂,以从其相应的氧化物中提取钒金属,然后进行碳化。降低钒的碳化需要复杂的过程和升高的温度。从其相应的氧化物和碳源合成碳化钒的机械活化代表了有希望的直接和更少的能量密集途径。在本研究中,通过碳热的碳化物减少碳化钒的碳化钒,将V2O5和炭黑的机械活化混合物作为还原剂,没有任何添加剂。通过热重分析监测还原过程。还原产物的特征在于X射线衍射和场发射扫描电子显微镜。发现平均微晶尺寸为88nm的V8C7可以在研磨15小时后从V2O5-C混合物中合成,并在1050℃下进一步加热1小时,在惰性气氛中。

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