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首页> 外文期刊>Journal of industrial and engineering chemistry >Recovery of tungsten from spent selective catalytic reduction catalysts by pressure leaching
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Recovery of tungsten from spent selective catalytic reduction catalysts by pressure leaching

机译:通过压力浸提从废选择性催化还原催化剂中回收钨

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The recovery and purification of vanadium (V) and tungsten (W) from honeycomb-type spent selective catalytic reduction (SCR) catalyst was investigated using an autoclave through a pressure leaching process. Spent SCR catalyst mainly consists of TiO2 and other oxides (7.73% WO3, 1.23% V2O5, etc.). The reaction temperature, NaOH concentration, time, additive concentration, and liquid-solid (L/S) ratio were varied during the leaching process. The optimal reaction conditions were identified for recovery of V and W. The addition of NaOH to Na2CO3 improved the amount of V and W recovered because of the enhancing effect of NaOH in Na2CO3. As the concentration of CaCl2 was increased during the precipitation process in order to separate the recovered V and W, the precipitation percentages of V and W increased, respectively. However, the use of Ca(OH)(2) as the additive reduced the precipitation percentage of W. Therefore, despite full precipitation of V (98.6%), only 7.73% of W was precipitated when 3 equivalents of Ca(OH)(2) was reacted with spent SCR catalyst for 30 min. The remaining Win the leaching solution was reacted with NH4OH to form ammonium tungstate, which was converted to ammonium paratungstate through evaporation. Consequently, V and W could be recovered and separated successfully through the process in this study. (C) 2015 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:使用高压釜通过压力浸出工艺研究了从蜂窝型废选择性催化还原(SCR)催化剂中回收和纯化钒(V)和钨(W)。废SCR催化剂主要由TiO2和其他氧化物(7.73%WO3、1.23%V2O5等)组成。在浸出过程中,反应温度,NaOH浓度,时间,添加剂浓度和液固(L / S)比均发生变化。确定了回收V和W的最佳反应条件。由于NaOH在Na2CO3中的增强作用,向Na2CO3中添加NaOH可以提高回收的V和W量。随着沉淀过程中CaCl2浓度的增加以分离回收的V和W,V和W的沉淀百分比分别增加。但是,使用Ca(OH)(2)作为添加剂会降低W的沉淀百分比。因此,尽管V完全沉淀(98.6%),当3当量的Ca(OH)( 2)与废SCR催化剂反应30分钟。将剩余的Win浸出溶液与NH4OH反应生成钨酸铵,然后通过蒸发将其转化为仲钨酸铵。因此,通过本研究的过程,可以成功地分离出V和W。 (C)2015韩国工业和工程化学学会。由Elsevier B.V.发布。保留所有权利。

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