Sezen Serap, Thakur Vijay Kumar, Ozmen Mehmet Murat
Department of Bioengineering, Yildiz Technical University, Istanbul 34210, Turkey.
Biorefining and Advanced Materials Research Centre, SRUC, Edinburgh EH9 3JG, UK.
Gels. 2021 Oct 22;7(4):178. doi: 10.3390/gels7040178.
Currently, macroporous hydrogels have been receiving attention in wastewater treatment due to their unique structures. As a natural polymer, alginate is used to remove cationic dyes due to its sustainable features such as abundance, low cost, processability, and being environmentally friendly. Herein, alginate/montmorillonite composite macroporous hydrogels (cryogels) with high porosity, mechanical elasticity, and high adsorption yield for methylene blue (MB) were generated by the one-step cryogelation technique. These cryogels were synthesized by adding montmorillonite into gel precursor, followed by chemical cross-linking employing carbodiimide chemistry in a frozen state. The as-prepared adsorbents were analyzed by FT-IR, SEM, gel fraction, swelling, uniaxial compression, and MB adsorption tests. The results indicated that alginate/montmorillonite cryogels exhibited high gelation yield (up to 80%), colossal water uptake capacity, elasticity, and effective dye adsorption capacity (93.7%). Maximum adsorption capacity against MB was 559.94 mg g by linear regression of Langmuir model onto experimental data. The Pseudo-Second-Order model was fitted better onto kinetic data compared to the Pseudo-First-Order model. Improved porosity and mechanical elasticity yielding enhanced dye removal capacity make them highly potential alternative adsorbents compared to available alginate/montmorillonite materials for MB removal.
目前,大孔水凝胶因其独特的结构而在废水处理中受到关注。作为一种天然聚合物,海藻酸盐因其丰富、低成本、可加工性和环境友好等可持续特性而被用于去除阳离子染料。在此,通过一步冷冻凝胶化技术制备了具有高孔隙率、机械弹性和对亚甲基蓝(MB)高吸附率的海藻酸盐/蒙脱石复合大孔水凝胶(冷冻凝胶)。这些冷冻凝胶是通过将蒙脱石加入凝胶前驱体中,然后在冷冻状态下采用碳二亚胺化学进行化学交联合成的。通过傅里叶变换红外光谱(FT-IR)、扫描电子显微镜(SEM)、凝胶分数、溶胀、单轴压缩和MB吸附试验对所制备的吸附剂进行了分析。结果表明,海藻酸盐/蒙脱石冷冻凝胶表现出高凝胶化产率(高达80%)、巨大的吸水能力、弹性和有效的染料吸附能力(93.7%)。通过将朗缪尔模型线性回归到实验数据上,对MB的最大吸附容量为559.94 mg/g。与伪一级模型相比,伪二级模型对动力学数据的拟合更好。与现有的用于去除MB的海藻酸盐/蒙脱石材料相比,孔隙率和机械弹性的改善提高了染料去除能力,使其成为极具潜力的替代吸附剂。