Burratti Luca, Bertelà Federica, Sisani Michele, Di Guida Irene, Battocchio Chiara, Iucci Giovanna, Prosposito Paolo, Venditti Iole
Department of Sciences, Roma Tre University of Rome, Via della Vasca Navale 79, 00146 Rome, Italy.
Prolabin & Tefarm S.r.l., 06134 Perugia, Italy.
Polymers (Basel). 2024 Apr 10;16(8):1034. doi: 10.3390/polym16081034.
Nowadays, due to water pollution, more and more living beings are exposed to dangerous compounds, which can lead to them contracting diseases. The removal of contaminants (including heavy metals) from water is, therefore, a necessary aspect to guarantee the well-being of living beings. Among the most used techniques, the employment of adsorbent materials is certainly advantageous, as they are easy to synthesize and are cheap. In this work, poly(ethylene glycol) diacrylate (PEGDA) hydrogels doped with silver nanoparticles (AgNPs) for removing Hg(II) ions from water are presented. AgNPs were embedded in PEGDA-based matrices by using a photo-polymerizable solution. By exploiting a custom-made 3D printer, the filters were synthesized. The kinetics of interaction was studied, revealing that the adsorption equilibrium is achieved in 8 h. Subsequently, the adsorption isotherms of PEGDA doped with AgNPs towards Hg(II) ions were studied at different temperatures (4 °C, 25 °C, and 50 °C). In all cases, the best isotherm model was the Langmuir one (revealing that the chemisorption is the driving process and the most favorable one), with maximum adsorption capacities equal to 0.55, 0.57, and 0.61 mg/g, respectively. Finally, the removal efficiency was evaluated for the three temperatures, obtaining for 4 °C, 25 °C, and 50 °C the values 94%, 94%, and 86%, respectively.
如今,由于水污染,越来越多的生物接触到危险化合物,这可能导致它们患病。因此,从水中去除污染物(包括重金属)是保障生物福祉的一个必要方面。在最常用的技术中,使用吸附材料肯定具有优势,因为它们易于合成且成本低廉。在这项工作中,展示了掺杂有银纳米颗粒(AgNPs)的聚(乙二醇)二丙烯酸酯(PEGDA)水凝胶用于从水中去除汞离子(Hg(II))。通过使用可光聚合溶液将AgNPs嵌入基于PEGDA的基质中。利用定制的3D打印机合成了过滤器。研究了相互作用动力学,结果表明吸附平衡在8小时内达到。随后,研究了在不同温度(4°C、25°C和50°C)下掺杂有AgNPs的PEGDA对Hg(II)离子的吸附等温线。在所有情况下,最佳等温线模型是朗缪尔模型(表明化学吸附是主导过程且是最有利的过程),最大吸附容量分别等于0.55、0.57和0.61 mg/g。最后,评估了这三个温度下的去除效率,在4°C、25°C和50°C时分别得到94%、94%和86%的值。