Blachnio Magdalena, Zienkiewicz-Strzalka Malgorzata
Faculty of Chemistry, Maria Curie-Sklodowska University, M. Curie-Sklodowska Sq. 3, 20-031 Lublin, Poland.
Gels. 2024 Feb 21;10(3):159. doi: 10.3390/gels10030159.
In this work, novel chitosan-silica hydrogels were synthesized and investigated by various complementary techniques. The hydrogels were obtained via the immobilization of chitosan (Ch) on the surface of mesoporous cellular foams (MCFs). The latter silica materials were obtained by a sol-gel process, varying the composition of the reaction mixture (copolymer Pluronic 9400 or Pluronic 10500) and the ageing temperature conditions (80 °C or 100 °C). The role of the silica phase in the hydrogels was the formation of a scaffold for the biopolymeric chitosan component and providing chemical, mechanical, and thermal stability. In turn, the chitosan phase enabled the binding of anionic pollutions from aqueous solutions based on electrostatic interaction mechanisms and hydrogen bonds. To provide information on structural, morphological, and surface properties of the chitosan-silica hydrogels, analyses such as the low-temperature adsorption/desorption of nitrogen, small-angle X-ray scattering (SAXS), scanning electron microscopy (SEM), atomic force microscopy (AFM), and Fourier-transform infrared spectroscopy (FTIR) were performed. Moreover, the verification of the utility of the chitosan-silica hydrogels as adsorbents for water and wastewater treatment was carried out based on kinetic and equilibrium studies of the Acid Red 88 (AR88) adsorption. Adsorption data were analyzed by applying various equations and discussed in terms of the adsorption on heterogeneous solid-surfaces theory. The adsorption mechanism for the AR88 dye-chitosan-silica hydrogel systems was proposed.
在本研究中,通过各种互补技术合成并研究了新型壳聚糖 - 二氧化硅水凝胶。这些水凝胶是通过将壳聚糖(Ch)固定在介孔泡沫材料(MCFs)表面而获得的。后者的二氧化硅材料通过溶胶 - 凝胶法制备,改变反应混合物的组成(共聚物普朗尼克9400或普朗尼克10500)以及老化温度条件(80°C或100°C)。水凝胶中二氧化硅相的作用是为生物聚合物壳聚糖组分形成支架,并提供化学、机械和热稳定性。反过来,壳聚糖相能够基于静电相互作用机制和氢键结合水溶液中的阴离子污染物。为了提供有关壳聚糖 - 二氧化硅水凝胶的结构、形态和表面性质的信息,进行了诸如氮气低温吸附/脱附、小角X射线散射(SAXS)、扫描电子显微镜(SEM)、原子力显微镜(AFM)和傅里叶变换红外光谱(FTIR)等分析。此外,基于酸性红88(AR88)吸附的动力学和平衡研究,对壳聚糖 - 二氧化硅水凝胶作为水和废水处理吸附剂的实用性进行了验证。通过应用各种方程对吸附数据进行分析,并根据非均相固体表面吸附理论进行讨论。提出了AR88染料 - 壳聚糖 - 二氧化硅水凝胶体系的吸附机制。