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Study on reduction of MoS_2 powders with activated carbon to produce Mo_2C under vacuum conditions 被引量:4

Study on reduction of MoS_2 powders with activated carbon to produce Mo_2C under vacuum conditions
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摘要 A method of preparing Mo2C via vacuum carbothermic reduction of MoS2 in the temperature range of 1350–1550°C was proposed. The effects of MoS2-to-C molar ratio(a, a = 1:1, 1:1.5, and 1:2.5) and reaction temperature(1350 to 1550°C) on the reaction were studied in detail. The phase transition, morphological evolution, and residual sulfur content of the products were analyzed by X-ray diffraction, field-emission scanning electron microscopy, and carbon–sulfur analysis, respectively. The results showed that the complete decomposition of MoS2 under vacuum is difficult, whereas activated carbon can react with MoS2 under vacuum to generate Mo2C. Meanwhile, higher temperatures and the addition of more carbon accelerated the rate of carbothermic reduction reaction and further decreased the residual sulfur content. From the experimental results, the optimum molar ratio α was concluded to be 1:1.5. A method of preparing Mo2C via vacuum carbothermic reduction of MoS2 in the temperature range of 1350–1550°C was proposed. The effects of MoS2-to-C molar ratio(a, a = 1:1, 1:1.5, and 1:2.5) and reaction temperature(1350 to 1550°C) on the reaction were studied in detail. The phase transition, morphological evolution, and residual sulfur content of the products were analyzed by X-ray diffraction, field-emission scanning electron microscopy, and carbon–sulfur analysis, respectively. The results showed that the complete decomposition of MoS2 under vacuum is difficult, whereas activated carbon can react with MoS2 under vacuum to generate Mo2C. Meanwhile, higher temperatures and the addition of more carbon accelerated the rate of carbothermic reduction reaction and further decreased the residual sulfur content. From the experimental results, the optimum molar ratio α was concluded to be 1:1.5.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第4期405-412,共8页 矿物冶金与材料学报(英文版)
基金 financially supported by the National Natural Science Foundation of China (No. 51725401)
关键词 vacuum treatment carbon thermoreduction molybdenum minerals molybdenum carbide microstructure vacuum treatment carbon thermoreduction molybdenum minerals molybdenum carbide microstructure
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  • 1Jianbing Cheng, Yufang Wu, Qixun Yu 1) Department of Mechanical Engineering, Beijing Technology and Business University, Beijing 100037, China 2) College of Mechanical Engineering and Automation, Beijing Institute of Technology Beijing 100081, China.Cutting Performance and Mechanism of RE Carbide Tools[J].Rare Metals,2001,20(3):197-201. 被引量:2

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