Influence of non-vacuum electric arc synthesis energy on the product of tungsten ore concentrate processing

Alexander Ya. Pak, A. Kokorina, Yuliya L. Shanenkova, I. Shanenkov
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Abstract

Relevance. Caused by the problem of developing methods for obtaining tungsten carbide, especially from tungsten-containing waste. As a solution, a non-vacuum electric arc method is proposed. It is easy to operate and cheap compared to a direct analogue (arc discharge method in inert gas atmosphere). The resulting product can be used as a catalyst carrier in hydrogen production reactions. Aim. To determine the current and the energy entered in the system, necessary to obtain a product with a largest proportion of the hexagonal phase of tungsten carbide WC from tungsten ore concentrate by a non-vacuum electric arc method and investigate a sample with the largest proportion of tungsten carbide phase. Object. Electric arc synthesis in open air from tungsten ore concentrate. Methods. Grinding in a SAMPLE SPEX 8000M ball mill, magnetic separation, non-vacuum electric arc method of synthesis, X-ray phase analysis on a Shimadzu XRD 7000s X-ray diffractometer (λ=1.54060 Å), scanning electron microscopy combined with X-ray fluorescence energy-dispersive analysis based on a TESCAN VEGA 3 microscope SBU with OXFORD X-Max prefix, transmission electron microscopy combined with energy dispersive spectroscopy and selected area electron diffraction based on the JEM-2100F microscope, scanning electron-ion microscopy based on the QUANTA 200 3D microscope. Results. The authors have built the dependence of the phase composition of the product of non-vacuum electric arc synthesis at current strengths from 50 to 220 A. Mass fraction of each of the identified phases in the synthesis product was determined using the reference intensity ratio. The current and the energy entered in the system, which provide the largest proportion of tungsten carbide WC in the synthesis product, are determined. The authors studied the product containing the largest proportion of tungsten carbide WC using scanning and transmission electron microscopy methods.
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非真空电弧合成能对钨精矿加工产品的影响
相关性。由于开发获取碳化钨的方法,特别是从含钨废料中获取碳化钨的方法存在问题。作为解决方案,提出了一种非真空电弧法。与直接类似方法(惰性气体环境中的电弧放电法)相比,该方法操作简单,成本低廉。所得产品可用作制氢反应中的催化剂载体。目的确定通过非真空电弧法从钨精矿中获得碳化钨 WC 六方相比例最大的产品所需的电流和进入系统的能量,并研究碳化钨相比例最大的样品。目标。从钨精矿中露天电弧合成。方法。在 SAMPLE SPEX 8000M 球磨机中研磨、磁选、非真空电弧法合成、在 Shimadzu XRD 7000s X 射线衍射仪上进行 X 射线相分析(λ=1.54060 Å)上进行的 X 射线相分析;基于带 OXFORD X-Max 前缀的 TESCAN VEGA 3 显微镜 SBU 的扫描电子显微镜与 X 射线荧光能量色散分析相结合;基于 JEM-2100F 显微镜的透射电子显微镜与能量色散光谱和选区电子衍射相结合;基于 QUANTA 200 3D 显微镜的扫描电子离子显微镜。结果。作者建立了电流强度为 50 至 220 A 的非真空电弧合成产物相组成的依赖关系。确定了合成产物中碳化钨碳化钨比例最大的电流和输入系统的能量。作者使用扫描和透射电子显微镜方法研究了碳化钨碳化钨比例最大的产品。
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