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首页> 外文期刊>CERAMICS INTERNATIONAL >Synthesis of zirconium nitride from zircon sand by transferred arc plasma assisted carbothermal reduction and nitridation process
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Synthesis of zirconium nitride from zircon sand by transferred arc plasma assisted carbothermal reduction and nitridation process

机译:通过转移弧等离子体辅助碳温凝固碳温抑制氮化锆氮化锆的合成

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摘要

This paper reports the experimental results on synthesis of zirconium nitride from zircon sand through transferred arc plasma processing via carbothermal reduction and nitridation reaction. A mixture of zircon sand and carbon was processed in a transferred arc set-up in a stream of nitrogen gas. The influence of the amount of carbon and processing parameters such as input power and processing time on zirconium nitride phase formation and product morphologies were investigated by means of XRD and SEM-EDS respectively. Thermodynamic calculations were performed using free energy minimization technique to predict the conditions under which zirconium nitride is formed when zircon is processed in nitrogen atmosphere. Conversion diagrams were constructed for the ZrSiO4-C-N-2 system with different mole ratios of carbon. The experimental results show that the optimum mole ratio of carbon to zircon to convert zircon to zirconium nitride by this process is 1:4. Further, the results show that the plasma input power has a greater influence on the formation of zirconium nitride rather than the processing time. Experimental observations show that the optimum processing parameters for effective formation of zirconium nitride from zircon are 10 kW of plasma input power and 5 min of processing time under nitrogen environment.
机译:本文报道了通过通过碳热还原和氮化反应的转移电弧等离子体处理来报告对锆砂氮化锆合成的实验结果。将锆砂和碳的混合物在氮气流中的转移的电弧设置中加工。通过XRD和SEMEDS研究了碳和加工参数如输入功率和处理时间的影响,例如输入功率和处理时间和产物形态学。使用自由能量最小化技术进行热力学计算,以预测当在氮气氛中加工锆加工时形成氮化锆的条件。为具有不同摩尔碳比的ZrsiO4-C-N-2系统构建转换图。实验结果表明,通过该方法将碳与锆锆转化为氮化锆的最佳摩尔比为1:4。此外,结果表明,等离子体输入功率对氮化锆的形成而不是处理时间的影响更大。实验观察结果表明,用于从锆石的氮化锆的有效形成的最佳加工参数是10kW的等离子体输入功率和5分钟的氮环境处理时间。

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