首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Zinc recovery from waste zinc ash - A new 'green' route for the preparation of Zn-Al layered double hydroxide used for molybdate retention
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Zinc recovery from waste zinc ash - A new 'green' route for the preparation of Zn-Al layered double hydroxide used for molybdate retention

机译:废锌灰锌回收 - 一种新的“绿色”途径,用于制备用于钼酸盐保留的Zn-Al层双氢氧化物

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The aim of this paper is to study the synthesis of a Zn-Al layered double hydroxide using a waste as an alternative source of zinc, namely the zinc ash resulted from hot dip galvanizing process. The zinc ash was treated with hydrochloric acid to obtain zinc chloride solution, which was subjected to a purification process. The layered double hydroxide was synthesized by a co-precipitation method at low oversaturation. The as-obtained (LDH) and calcined at 450 degrees C (CLDH) adsorbents were used in the removal process of molybdate from water. Both materials were subjected to structural and morphological characterization. The as-synthesized product has characteristics close to those of the material obtained from analytical grade reagents. The kinetic study of the adsorption showed that the process followed accurately a pseudo-second order kinetics (correlation coefficients > 0.99). The results concerning the process equilibrium showed that CLDH exhibited higher efficiency (maximum adsorption capacity of 39.8 mg/g) in the adsorption of Mo(VI) from aqueous solutions than LDH (13.7 mg/g), which is in accordance with their specific surface area. The mechanism of molybdate uptake follows inner-sphere surface complexation. These materials obtained from a secondary resource are quite efficient in the removal process of molybdate anions from aqueous solutions, as compared to other adsorbents obtained from expensive analytical grade reagents reported in the literature. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文的目的是使用废物作为锌的替代来源来研究Zn-Al层层双氢氧化物的合成,即由热浸镀锌过程产生的锌灰。用盐酸处理锌灰分,得到氯化锌溶液,其进行纯化过程。通过在低过饱和下通过共沉淀法合成层状双氢氧化物。在450℃(CLDH)吸附剂处和在450℃(CLDH)吸附剂中煅烧的AS获得(LDH)用于从水中的去除方法中使用。两种材料都经受结构和形态学特性。优选的产品具有接近于分析级试剂获得的材料的特性。吸附的动力学研究表明,该过程紧随其准确地是伪二阶动力学(相关系数> 0.99)。关于该过程平衡的结果表明,CLDH在与LDH(13.7mg / g)的水溶液中吸附的Mo(VI)吸附的效率(最大吸附容量为39.8mg / g),这是根据其比表面的区域。钼酸盐摄取的机制遵循内球表面络合。与水溶液中钼酸盐阴离子的去除过程中获得的二次资源获得的这些材料相比,与在文献中报道的昂贵的分析级试剂中获得的其他吸附剂相比。 (c)2019 Elsevier B.v.保留所有权利。

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