School of Resources and Environmental Engineering, State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, East China University of Science and Technology, Shanghai 200237, China.
School of Resources and Environmental Engineering, State Environmental Protection Key Laboratory of Environmental Risk Assessment and Control on Chemical Process, East China University of Science and Technology, Shanghai 200237, China; Shanghai Institute of Pollution Control and Ecological Security, Shanghai 200092, China.
J Environ Sci (China). 2022 Sep;119:33-43. doi: 10.1016/j.jes.2021.08.032. Epub 2022 Jan 14.
The stronger coordination ability of mercury ions with organic ligands than the metal ions in metal organic framework (MOFs) provides an accessible way to separate mercury ions from solution using specific MOFs. In this study, a Co-based MOF (ZIF-67, Co(mIM)) was synthesized. It did not introduce specific functional groups, such as -SH and -NH, into its structure through complicated steps. It separate Hg from wastewater with a new strategy, which utilized the stronger coordination ability of Hg with the nitrogen atom on the imidazole ring of the organic ligand than the Co ions. Hg replaced Co nodes from ZIF-67 and formed a more stable precipitate with mIM. The experimental results showed that this new strategy was efficient. ZIF-67 exhibited Hg adsorption capacity of 1740 mg/g, much higher than the known MOFs sorbents. mIMs is the reaction center and ZIF-67 can improve its utilization. The sample color faded from purple to white due to the loss of cobalt ion. It is a great feature of ZIF-67 that allows users to judge whether the sorbent is deactivated intuitively. ZIF-67 can be sustainable recycled by adding organic ligands to the solution after treatment due to its simple synthesis method at room temperature. It's a high-efficient and sustainable sorbent for Hg separation from wastewater.
汞离子与有机配体的较强配位能力优于金属有机骨架(MOFs)中的金属离子,为使用特定的 MOFs 从溶液中分离汞离子提供了一种可行的方法。在这项研究中,合成了一种基于钴的 MOF(ZIF-67,Co(mIM))。它没有通过复杂的步骤将 -SH 和 -NH 等特定官能团引入其结构中。它采用了一种新策略,利用汞与有机配体中咪唑环上的氮原子的较强配位能力,而不是与 Co 离子的配位能力,从废水中分离汞。Hg 取代 ZIF-67 中的 Co 节点,并与 mIM 形成更稳定的沉淀物。实验结果表明,这种新策略是有效的。ZIF-67 表现出 1740mg/g 的 Hg 吸附容量,远高于已知的 MOFs 吸附剂。mIMs 是反应中心,ZIF-67 可以提高其利用率。由于钴离子的损失,样品颜色从紫色变为白色。这是 ZIF-67 的一个很大的特点,允许用户直观地判断吸附剂是否失活。由于其在室温下简单的合成方法,ZIF-67 可以在处理后将有机配体添加到溶液中进行可持续回收。它是一种高效、可持续的从废水中分离汞的吸附剂。