School of Chemistry & Chemical Engineering, Guangxi University, Nanning, 530004, China.
School of Chemistry & Chemical Engineering, Guangxi University, Nanning, 530004, China.
J Environ Manage. 2020 Feb 15;256:109969. doi: 10.1016/j.jenvman.2019.109969. Epub 2019 Dec 13.
This study reports a new inorganic-organic composite membrane fabricated by an electrostatic self-assembling method. The low-cost and eco-friendly porous geopolymer (PG) was chosen as a support, on which chitosan (CS), a "green" biomaterial, was used to form an active layer. With optimum dosage of CS (2.0 mL of 1.0% CS solution), the obtained CS/PG membrane exhibited a high porosity of 50.97% with an average pore diameter of 13.93 nm as well as a high water flux of 1663.82 ± 22.46 L/m·h·bar. The effects of initial concentration, pH, flow rate and temperature of the feed solution on crystal violet (CV) removal by the CS/PG were evaluated in a continuous mode. The results indicated ~95% CV could be removed from water during continuous treating of 14 h. The effectiveness in CV removal by the CS/PG membrane was attributed to the synergistic effect of rejection and adsorption. Furthermore, the composite membrane could be easily regenerated for prolonged use. Overall, this work opens a new possibility of building cost-saving and eco-friendly composite membranes for practical applications in water purification.
本研究报告了一种通过静电自组装方法制备的新型无机-有机复合膜。选择低成本、环保的多孔地质聚合物(PG)作为支撑体,在其上形成活性层的是壳聚糖(CS),一种“绿色”生物材料。在 CS 的最佳用量(2.0 毫升 1.0%CS 溶液)下,所得到的 CS/PG 膜具有 50.97%的高孔隙率,平均孔径为 13.93nm,水通量为 1663.82±22.46L/m·h·bar。在连续模式下,评估了初始浓度、pH 值、进料溶液流速和温度对 CS/PG 去除结晶紫(CV)的影响。结果表明,在连续处理 14 小时期间,约 95%的 CV 可以从水中去除。CS/PG 膜去除 CV 的有效性归因于排斥和吸附的协同作用。此外,该复合膜易于再生,可延长使用寿命。总的来说,这项工作为在实际的水净化应用中构建节省成本和环保的复合膜开辟了新的可能性。