Onchi Alejandro, Corona-García Carlos, Santiago Arlette A, Abatal Mohamed, Soto Tania E, Alfonso Ismeli, Vargas Joel
Instituto de Investigaciones en Materiales, Unidad Morelia, Universidad Nacional Autónoma de México, Antigua Carretera a Pátzcuaro No. 8701, Col. Ex Hacienda de San José de la Huerta, C.P. 58190 Morelia, Michoacán, Mexico.
Escuela Nacional de Estudios Superiores, Unidad Morelia, Universidad Nacional Autónoma de México, Antigua Carretera a Pátzcuaro No. 8701, Col. Ex Hacienda de San José de la Huerta, C.P. 58190 Morelia, Michoacán, Mexico.
Polymers (Basel). 2022 Jun 9;14(12):2344. doi: 10.3390/polym14122344.
The contamination of water resources with heavy metals is a very serious concern that demands prompt and effective attention due to the serious health risks caused by these contaminants. The synthesis and ring-opening metathesis polymerization (ROMP) of norbornene dicarboximides bearing thiol pendant groups, specifically, -4-thiophenyl--norbornene-5,6-dicarboximide (), -4-(methylthio)phenyl--norbornene-5,6-dicarboximide () and -4-(trifluoromethylthio)phenyl--norbornene-5,6-dicarboximide (), as well as their assessment for the removal of heavy metals from aqueous systems, is addressed in this work. The polymers were characterized by NMR, SEM and TGA, among others. Single and multicomponent aqueous solutions of Pb, Cd and Ni were employed to perform both kinetic and isothermal adsorption studies taking into account several experimental parameters, for instance, the initial metal concentration, the contact time and the mass of the polymer. In general, the adsorption kinetic data fit the pseudo-second-order model more efficiently, while the adsorption isotherms fit the Freundlich and Langmuir models. The maximum metal uptakes were 53.7 mg/g for Pb, 43.8 mg/g for Cd and 29.1 mg/g for Ni in the SH-bearing polymer , 46.4 mg/g for Pb, 32.9 mg/g for Cd and 27.1 mg/g for Ni in the SCH-bearing polymer and 40.3 mg/g for Pb, 35.9 mg/g for Cd and 27.8 mg/g for Ni in the SCF-bearing polymer , correspondingly. The better performance of polymer for the metal uptake was ascribed to the lower steric hindrance and higher hydrophilicity imparted by -SH groups to the polymer. The results show that these thiol-functionalized polymers are effective adsorbents of heavy metal ions from aqueous media.
由于重金属对水资源的污染会带来严重的健康风险,因此这一问题备受关注,亟待迅速且有效地加以解决。本文主要探讨了带有硫醇侧基的降冰片烯二羧酸酰亚胺的合成及其开环易位聚合反应(ROMP),具体包括-4-硫苯基-降冰片烯-5,6-二羧酸酰亚胺()、-4-(甲硫基)苯基-降冰片烯-5,6-二羧酸酰亚胺()和-4-(三氟甲硫基)苯基-降冰片烯-5,6-二羧酸酰亚胺(),并对它们从水体系中去除重金属的性能进行了评估。通过核磁共振(NMR)、扫描电子显微镜(SEM)和热重分析(TGA)等手段对聚合物进行了表征。采用铅(Pb)、镉(Cd)和镍(Ni)的单组分及多组分水溶液,考虑了初始金属浓度、接触时间和聚合物质量等多个实验参数,进行了动力学和等温吸附研究。总体而言,吸附动力学数据更符合准二级模型,吸附等温线符合Freundlich和Langmuir模型。在含SH聚合物中,对Pb、Cd和Ni的最大金属吸附量分别为53.7 mg/g、43.8 mg/g和29.1 mg/g;在含SCH聚合物中分别为46.4 mg/g、32.9 mg/g和27.1 mg/g;在含SCF聚合物中分别为40.3 mg/g、35.9 mg/g和27.8 mg/g。聚合物对金属的更好吸附性能归因于-SH基团赋予聚合物较低的空间位阻和较高的亲水性。结果表明这些硫醇官能化聚合物是从水介质中吸附重金属离子的有效吸附剂。