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使用碳酸钠进行碱熔以提取钒和钨,用于从废SCR催化剂制备合成钛酸钠。

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

作者信息

Choi In-Hyeok, Moon Gyeonghye, Lee Jin-Young, Jyothi Rajesh Kumar

机构信息

Convergence Research Center for Development of Mineral Resources (DMR), Korea Institute of Geoscience and Mineral Resources (KIGAM), Daejeon, 34132, South Korea.

R&D Center, HANNAE FOR T (Metal Recycling Company), 22, Sandan 3-ro 5-gil, Seongmun-myeon, Dangjin-si, Chungcheongnam-do, 31702, South Korea.

出版信息

Sci Rep. 2019 Aug 23;9(1):12316. doi: 10.1038/s41598-019-48767-0.

Abstract

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 TiO manufacturing by hydrometallurgical processing was investigated. Based on the NaO-TiO phase diagram and experimentally obtained results, appropriate alkali-fusion temperature and molar ratio (MO/NaO + MO) 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 TiO was obtained under the following alkali fusion conditions: Temperature, 950 °C; reaction time, 20 min; molar ratio, 0.5. When the molar ratio (MO/NaO + MO) was less than 0.5, complete liquidized product (eutectic melt of the feedstock and NaCO) 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 TiO by hydrometallurgical route.

摘要

研究了采用碱熔法从废弃SCR催化剂中提取钒和钨,并同时制备合成钛酸钠,目的是为通过湿法冶金工艺制备TiO提供原料。基于NaO-TiO相图和实验结果,确定了合适的碱熔温度和摩尔比(MO/NaO + MO),以制备可溶性钒盐、钨盐和钛酸钠。结果表明,在以下碱熔条件下,钒和钨的萃取效率>99%,并获得了作为制备TiO原料的钛酸钠:温度950 °C;反应时间20分钟;摩尔比0.5。当摩尔比(MO/NaO + MO)小于0.5时,在给定条件下可获得完全液化产物(原料与NaCO的共晶熔体)。与传统碱焙烧相比,该方法有利于快速合成用于钒和钨浸出的水溶性化合物,并用作通过湿法冶金路线制备TiO的原料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2976/6707245/1a191e3f9607/41598_2019_48767_Fig1_HTML.jpg

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