Highly efficient recovery of Zn2+/Cu2+ from water by using hydrotalcite as crystal seeds

水滑石 共沉淀 层状双氢氧化物 化学 金属 二价 废水 晶种 无机化学 晶体结构 摩尔比 核化学 催化作用 环境工程 单晶 有机化学 氢氧化物 结晶学 工程类
作者
Minwang Laipan,Min Zhang,Ziyu Wang,Runliang Zhu,Luyi Sun
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:914: 169954-169954
标识
DOI:10.1016/j.scitotenv.2024.169954
摘要

The efficient and waste-free recovery of heavy metals is critical for heavy metal wastewater treatment. In this work, we explored how heavy metals can be recovered as valuable chemicals in the presence of crystal seeds. Hydrotalcite (one kind of layered double hydroxides (LDHs)) was used as crystal seeds to recover Zn2+ in the presence of Al3+ from water (i.e., seed-Zn2+-Al3+ system), which was compared with the monometallic heterogeneous system (seed-Zn2+) and direct coprecipitation (Zn2+-Al3+) system. Our results demonstrated that the seed-Zn2+-Al3+ system possessed a recovery rate of 2.6–2.8 times and a recovery kinetic rate of 2.7–5.9 times higher than those of the other two systems. Differing from the latter two systems, hydrotalcite seeds could induce Zn2+ and Al3+ to form ZnAl-LDH in seed-Zn2+-Al3+. Interestingly, the ZnAl-LDH presents a compositional divalent/trivalent cation molar ratio of ca. 3, which is comparable with the value in the hydrotalcite. It was demonstrated that the hydrotalcite seeds could act as a template to significantly induce the formation of ZnAl-LDH complying with the seed's structure and compositional ratio. Similar induction effect of seeds as the Zn2+ system was further verified in Cu2+ systems. This work provides a novel strategy for efficient recovery of heavy metals with product selectivity.
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