Instituto de Física del Sur, IFISUR (UNS-CONICET), Bahía Blanca, Argentina.
Departamento de Química, Universidad Nacional del Sur, Bahía Blanca, Argentina.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2023;58(4):369-381. doi: 10.1080/10934529.2023.2188847. Epub 2023 Mar 22.
This work investigated the synthesis and characterization of alginate/starch porous materials and their application as copper ions adsorbents from aqueous media. Initially, pregel aqueous solutions with different biopolymer concentrations (1, 3, and 5% w/w) and alginate contents (25, 50, and 75% w/w) were prepared. Hydrogel formation was performed by internal and external gelation methods. Finally, the drying step was done via CO leading to aerogels and via freeze-drying leading to cryogels. Process parameters influence on the final properties of materials was evaluated by BET isotherms, SEM, EDS, and TGA. Regardless the gelation method applied, interesting materials with meso- and macro-pore structure were prepared from pregel mixtures with 3% w/w biopolymer concentration and an alginate content of only 25% w/w. Low alginate content reduces the final cost of the materials. Concerning copper removal, the adsorption data were well fitted to the pseudo-second order kinetic model for aerogels and cryogels, showing aerogels the highest adsorption capacity (40 mg/g) and removal efficiency (∼ 92%). Materials demonstrated excellent reusability throughout five consecutive adsorption/desorption cycles. Hence, environmentally friendly materials with a high practical value as low-cost bioadsorbents were synthesized, having great performance in the removal of copper ions from aqueous solution.
这项工作研究了海藻酸钠/淀粉多孔材料的合成和表征及其作为铜离子吸附剂在水介质中的应用。首先,制备了不同生物聚合物浓度(1%、3%和 5%w/w)和海藻酸钠含量(25%、50%和 75%w/w)的预凝胶水溶液。通过内凝胶和外凝胶法进行水凝胶的形成。最后,通过 CO 进行干燥,得到气凝胶;通过冷冻干燥得到冷冻凝胶。通过 BET 等温线、SEM、EDS 和 TGA 评估了工艺参数对材料最终性能的影响。无论应用何种凝胶化方法,都可以从生物聚合物浓度为 3%w/w、海藻酸钠含量仅为 25%w/w 的预凝胶混合物中制备出具有中孔和大孔结构的有趣材料。低海藻酸钠含量降低了材料的最终成本。关于铜的去除,吸附数据很好地符合气凝胶和冷冻凝胶的伪二级动力学模型,表明气凝胶具有最高的吸附容量(40mg/g)和去除效率(约 92%)。在五个连续的吸附/解吸循环中,材料表现出良好的可重复使用性。因此,合成了具有高实用价值的环保材料,作为低成本生物吸附剂,在去除水溶液中的铜离子方面表现出优异的性能。