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Alkali fusion using sodium carbonate for extraction of vanadium and tungsten for the preparation of synthetic sodium titanate from spent SCR catalyst

机译:碱融合,使用碳酸钠用于萃取钒和钨的制备废酸催化剂的合成钛酸钠

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Alkali fusion method to extract vanadium and tungsten from spent SCR catalyst and to simultaneously prepare synthetic sodium titanate for the purpose of preparation of feedstock for TiOsub2/sub manufacturing by hydrometallurgical processing was investigated. Based on the Nasub2/subO-TiOsub2/sub phase diagram and experimentally obtained results, appropriate alkali-fusion temperature and molar ratio (MOsubx/sub/Nasub2/subO?+?MOsubx/sub) were determined to prepare soluble vanadium, tungsten salts, and sodium titanate. As results, the extraction efficiency of vanadium and tungsten was 99% and sodium titanate as feedstock for making TiOsub2/sub was obtained under the following alkali fusion conditions: Temperature, 950?°C; reaction time, 20?min; molar ratio, 0.5. When the molar ratio (MOsubx/sub/Nasub2/subO?+?MOsubx/sub) was less than 0.5, complete liquidized product (eutectic melt of the feedstock and Nasub2/subCOsub3/sub) was obtained at the given conditions. This method, compared to conventional alkali roasting, is advantageous for rapid synthesis of water-soluble compounds for leaching of vanadium and tungsten, and for use as feedstock for the preparation of TiOsub2/sub by hydrometallurgical route.
机译:研究了从废SC催化剂中提取钒和钨的碱融合方法,并同时制备用于制备TiO 2 制造的原料的合成钛酸钠,通过氢化冶金加工进行氢化冶金加工。基于Na 2 O-TiO 2 相图和实验获得的结果,得到了适当的碱融合温度和摩尔比(Mo x / na确定<亚> 2 O?+ΔMO<亚> x 以制备可溶性钒,钨盐和钛酸钠。结果,钒和钨的提取效率> 99%,钛酸钠作为原料制备TiO 2 在以下碱融合条件下获得:温度,950Ω°C;反应时间,20?min;摩尔比,0.5。当摩尔比(Mo x / na 2 o?+Δmo x )小于0.5,完全液化产品(共晶熔体)在给定的条件下获得原料和Na 2 Co> 3 )。与常规碱焙烧相比,该方法是有利于快速合成用于钒和钨的浸出的水溶性化合物,并用作制备TiO 2 的原料。

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