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用于高效去除水中金属离子的反硫化多孔共聚物整体材料

Inversely Vulcanized Porous Copolymer Monolith for Efficient Removal of Metal Ions from Water.

作者信息

Alex Aby, Kalita Uddhab, Bhowmik Tridip, Singha Nikhil K, Choudhury Soumyadip

机构信息

Rubber Technology Centre, Indian Institute of Technology Kharagpur, Kharagpur, India 721302.

School of Environmental Science and Engineering, Indian Institute of Technology Kharagpur, Kharagpur, India 721302.

出版信息

ACS Appl Mater Interfaces. 2025 May 21;17(20):30029-30043. doi: 10.1021/acsami.5c01090. Epub 2025 May 6.

Abstract

Heavy metal pollution poses a significant threat to the environment and human health. Developing efficient adsorbent materials for removing these contaminants from water is crucial. Sulfur-based polymers derived from inverse vulcanization were found to be promising candidates for the adsorption of several heavy metals from water. In this work, polysulfides bearing β-diketone functional groups are synthesized for the first time through the inverse vulcanization between acetoacetoxyethyl methacrylate (AAEMA) and sulfur. Successful copolymerization and the incorporation of the acetoacetate moiety into the polymer chain are confirmed by NMR, FT-IR, Raman, XPS, XRD, DSC, and TGA analyses. A porous variant of the adsorbent is made using a facile template-assisted method exploring NaCl as a porogen. The porous polymer is analyzed using X-ray micro-CT and SEM to get insights into the internal porous architecture as well as the surface porosity of the adsorbent. Energy-dispersive X-ray (EDAX) and CHNS(O) analyses of the adsorbent reveal a sulfur-rich surface with uniformly distributed oxygen and carbon. Heavy metal adsorption studies of the synthesized polymer are conducted in a multielement solution containing different types of metal ions. The porous adsorbent exhibited remarkable heavy metal chelation properties, with a removal efficiency of 100% for Hg and 72-96% removal for Cr, Pb, Co, Fe, Ni, Ag, and Cu. The synergistic interplay between the thiol functional groups, polysulfide loops, and the strong binding affinity of the β-diketone moiety and hydroxyl group coupled with the polymer's well-defined porous structure collectively enhances its adsorption capacity toward heavy metal ions. A prototype of an identical porous adsorbent in monolithic form has been constructed. The porous monolith retains all the benefits of porous adsorbent in particulate form while allowing the separation of the adsorbent from the treated water by simply lifting it as a single unit, eliminating the necessity for filtration as is necessary with particulate adsorbents.

摘要

重金属污染对环境和人类健康构成重大威胁。开发高效的吸附材料以从水中去除这些污染物至关重要。通过反向硫化得到的硫基聚合物被发现是从水中吸附多种重金属的有前途的候选材料。在这项工作中,首次通过甲基丙烯酸乙酰乙酰氧基乙酯(AAEMA)与硫之间的反向硫化合成了带有β-二酮官能团的多硫化物。通过NMR、FT-IR、拉曼、XPS、XRD、DSC和TGA分析证实了成功的共聚以及乙酰乙酸酯部分并入聚合物链中。使用简便的模板辅助方法以NaCl作为致孔剂制备了吸附剂的多孔变体。使用X射线微CT和SEM对多孔聚合物进行分析,以深入了解吸附剂的内部多孔结构以及表面孔隙率。吸附剂的能量色散X射线(EDAX)和CHNS(O)分析表明其表面富含硫,氧和碳均匀分布。在含有不同类型金属离子的多元素溶液中对合成聚合物进行重金属吸附研究。该多孔吸附剂表现出显著的重金属螯合性能,对Hg的去除效率为100%,对Cr、Pb、Co、Fe、Ni、Ag和Cu 的去除率为72 - 96%。硫醇官能团、多硫化物环之间的协同相互作用,以及β-二酮部分和羟基的强结合亲和力,再加上聚合物明确的多孔结构,共同提高了其对重金属离子的吸附能力。构建了整体形式的相同多孔吸附剂的原型。该多孔整体保留了颗粒形式多孔吸附剂的所有优点,同时通过简单地将其作为一个单元提起就可以将吸附剂与处理后的水分离,消除了颗粒吸附剂所需的过滤必要性。

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