Venkateswarlu Sada, Yoon Minyoung
Department of Nanochemistry, College of Bionano, Gachon University, Sungnam, 13120, Republic of Korea.
Dalton Trans. 2015 Nov 14;44(42):18427-37. doi: 10.1039/c5dt03155a. Epub 2015 Oct 5.
Mercury is considered one of the most notorious global pollutants due to its high toxicity and widespread use in industry. Although many materials have been developed for the removal of mercury for water purification, most of these materials are difficult to reuse, which may lead to an increase in the mercury handling expense. Therefore, new sustainable materials that can be easily recycled and are highly efficient for the removal of mercury are required. Herein, we report the surfactant-free green synthesis of Fe3O4 magnetic nanoparticles (MNPs) using a watermelon (Citrullus lanatus) rind extract. The Fe3O4 MNPs were further functionalized with 3,4-dihydroxyphenethylcarbamodithioate (DHPCT) and applied to the removal of Hg(ii). Evaluation of the mercury removal efficiency and the amount adsorbed by DHPCT@Fe3O4 MNPs demonstrated a high Hg(ii) removal efficiency (98%) with a maximum Hg(ii) adsorption capacity of 52.1 mg g(-1). Systematic studies of the adsorption mechanism and selectivity suggest that the soft ligand (DHPCT) can preferentially coordinate with the soft metal ion (Hg(ii)) resulting in selective mercury removal. The developed DHPCT@Fe3O4 MNPs were readily recycled several times using an external magnet by exploiting their ferromagnetic character, without a significant decline in the Hg(ii) removal efficiency. This study provides a new insight into the preparation of a highly efficient adsorbent for Hg(ii) removal by an eco-friendly method.
由于汞的高毒性及其在工业中的广泛使用,它被认为是最臭名昭著的全球污染物之一。尽管已经开发了许多用于水净化中汞去除的材料,但这些材料大多难以重复使用,这可能会导致汞处理费用增加。因此,需要新型可持续材料,它们既能轻松回收又对汞的去除高效。在此,我们报道了使用西瓜(西瓜属)皮提取物无表面活性剂绿色合成Fe3O4磁性纳米颗粒(MNPs)。Fe3O4 MNPs进一步用3,4 - 二羟基苯乙基氨基二硫代酸盐(DHPCT)功能化,并应用于Hg(ii)的去除。对DHPCT@Fe3O4 MNPs的汞去除效率和吸附量的评估表明,其对Hg(ii)的去除效率高(98%),最大Hg(ii)吸附容量为52.1 mg g(-1)。对吸附机理和选择性的系统研究表明,软配体(DHPCT)可优先与软金属离子(Hg(ii))配位,从而实现汞的选择性去除。所开发的DHPCT@Fe3O4 MNPs利用其铁磁特性,通过外部磁铁可轻松多次回收,且Hg(ii)去除效率无显著下降。本研究为通过环保方法制备高效Hg(ii)去除吸附剂提供了新的见解。