Department of Catalysis and Chemical Engineering, Institute of Chemistry, Technology and Metallurgy, National Institute of Republic of Serbia, University of Belgrade, Njegoševa 12, 11000 Belgrade, Serbia.
Faculty of Technology and Metallurgy, University of Belgrade, Karnegijeva 4, 11000 Belgrade, Serbia.
Int J Mol Sci. 2024 Jul 19;25(14):7896. doi: 10.3390/ijms25147896.
The presented study was focused on the simple, eco-friendly synthesis of composite hydrogels of crosslinked carboxymethyl cellulose (CMC)/alginate (SA) with encapsulated g-CN nanoparticles. The structural, textural, morphological, optical, and mechanical properties were determined using different methods. The encapsulation of g-CN into CMC/SA copolymer resulted in the formation of composite hydrogels with a coherent structure, enhanced porosity, excellent photostability, and good adhesion. The ability of composite hydrogels to eliminate structurally different dyes with the same or opposite charge properties (cationic Methylene Blue and anionic Orange G and Remazol Brilliant Blue R) in both single- and binary-dye systems was examined through adsorption and photocatalytic reactions. The interactions between the dyes and g-CN and the negatively charged CMC/SA copolymers had a notable influence on both the adsorption capacity and photodegradation efficiency of the prepared composites. Scavenger studies and leaching tests were conducted to gain insights into the primary reactive species and to assess the stability and long-term performance of the g-CN/CMC/SA beads. The commendable photocatalytic activity and excellent recyclability, coupled with the elimination of costly catalyst separation requirements, render the g-CN/CMC/SA composite hydrogels cost-effective and environmentally friendly materials, and strongly support their selection for tackling environmental pollution issues.
本研究专注于通过简单、环保的方法合成交联羧甲基纤维素(CMC)/海藻酸钠(SA)复合水凝胶,其中包埋了 g-CN 纳米粒子。使用不同的方法确定了结构、纹理、形态、光学和机械性能。g-CN 被包埋到 CMC/SA 共聚物中,形成了具有连贯结构、增强的多孔性、优异的光稳定性和良好的附着力的复合水凝胶。通过吸附和光催化反应,研究了复合水凝胶在单一和二元染料系统中去除具有相同或相反电荷性质(阳离子亚甲蓝和阴离子橙 G 和雷玛唑亮蓝 R)的结构不同染料的能力。染料与 g-CN 和带负电荷的 CMC/SA 共聚物之间的相互作用对制备的复合材料的吸附容量和光降解效率有显著影响。进行了清除剂研究和浸出试验,以深入了解主要的反应性物质,并评估 g-CN/CMC/SA 珠的稳定性和长期性能。g-CN/CMC/SA 复合水凝胶具有令人赞赏的光催化活性和出色的可回收性,结合无需昂贵催化剂分离的要求,使其成为具有成本效益和环保的材料,强烈支持将其用于解决环境污染问题。