Department of Biological Systems Engineering, University of Wisconsin-Madison, 460 Henry Mall, Madison, WI, 53706, USA.
Department of Biological Systems Engineering, University of Wisconsin-Madison, 460 Henry Mall, Madison, WI, 53706, USA.
Environ Pollut. 2021 Oct 1;286:117324. doi: 10.1016/j.envpol.2021.117324. Epub 2021 May 7.
Developing low-cost and high-performance biosorbent for water purification continues drawing more and more attention. In this study, cellulose-chitosan composite hydrogels were fabricated via a co-dissolution and regeneration process using a molten salt hydrate (a 60 wt% aqueous solution of LiBr) as a solvent. The addition of chitosan not only introduced functionality for metal adsorption but also increased the specific surface area and improved the mechanical strength of the composite hydrogel, compared to pure cellulose hydrogel. Batch adsorption experiments indicated that the composite hydrogel with 37% cellulose and 63% chitosan exhibited an adsorption capacity of 94.3 mg/g (1.49 mmol/g) toward Cu at 23 °C, pH 5, and initial metal concentration of 1500 mg/L, which was 10 times greater than the adsorption capacity of pure cellulose hydrogel. Competitive adsorption from a mixed metals solution revealed that the cellulose-chitosan composite hydrogel exhibited selective adsorption of the metals in the order of Cu > Zn > Co. This study successfully demonstrated an innovative method to fabricate biosorbents from abundant and renewable natural polymers (cellulose and chitosan) for removing metal ions from water.
开发用于水净化的低成本、高性能生物吸附剂继续引起越来越多的关注。在这项研究中,通过共溶解和再生工艺使用熔融盐水合物(60wt%的 LiBr 水溶液)作为溶剂制备了纤维素-壳聚糖复合水凝胶。与纯纤维素水凝胶相比,壳聚糖的添加不仅为金属吸附引入了功能,而且还增加了复合水凝胶的比表面积并提高了其机械强度。批量吸附实验表明,在 23°C、pH 值为 5 和初始金属浓度为 1500mg/L 的条件下,纤维素含量为 37%、壳聚糖含量为 63%的复合水凝胶对 Cu 的吸附容量为 94.3mg/g(1.49mmol/g),是纯纤维素水凝胶吸附容量的 10 倍。从混合金属溶液中进行的竞争吸附表明,纤维素-壳聚糖复合水凝胶对金属的吸附具有选择性,顺序为 Cu>Zn>Co。本研究成功地展示了一种从丰富且可再生的天然聚合物(纤维素和壳聚糖)制备生物吸附剂的创新方法,用于从水中去除金属离子。