State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China.
State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China; Department of Chemistry, Stony Brook University, Stony Brook, NY 11794-3400, USA.
Int J Biol Macromol. 2024 Jun;269(Pt 2):131852. doi: 10.1016/j.ijbiomac.2024.131852. Epub 2024 Apr 26.
Particulates and organic toxins, such as microplastics and dye molecules, are contaminants in industrial wastewater that must be purified due to environmental and sustainability concerns. Carboxylated cellulose acetate (CTA-COOH) nanofibrous membranes were fabricated using electrospinning followed by an innovative one-step surface hydrolysis/oxidation replacing the conventional two-step reactions. This approach offers a new pathway for the modification strategy of cellulose-based membranes. The CTA-COOH membrane was utilized for the removal of particulates and cationic dyes through filtration and adsorption, respectively. The filtration performance of the CTA-COOH nanofibrous membrane was carried out; high separation efficiency and low pressure drop were achieved, in addition to the high filtration selectivity against 0.6-μm and 0.8-μm nanoparticles. A cationic Bismarck Brown Y, was employed to challenge the adsorption capability of the CTA-COOH nanofibrous membrane, where the maximum adsorption capacity of the membrane for BBY was 158.73 mg/g. The self-standing CTA-COOH membrane could be used to conduct adsorption-desorption for 17 cycles with the regeneration rate as high as 97.0 %. The CTA-COOH nanofibrous membrane has excellent mechanical properties and was employed to manufacture a spiral wound adsorption cartridge, which exhibited remarkable separation efficiency in terms of treated water volume, which was 5.96 L, and retention rate, which was 100 %.
颗粒物质和有机毒素,如微塑料和染料分子,是工业废水中的污染物,由于环境和可持续性的考虑,必须对其进行净化。羧基化醋酸纤维素(CTA-COOH)纳米纤维膜是通过静电纺丝制备的,然后采用创新的一步表面水解/氧化取代传统的两步反应。这种方法为纤维素基膜的改性策略提供了一条新途径。通过过滤和吸附,分别利用 CTA-COOH 膜去除颗粒物质和阳离子染料。对 CTA-COOH 纳米纤维膜的过滤性能进行了研究;实现了高分离效率和低压降,此外对 0.6-μm 和 0.8-μm 纳米颗粒具有高过滤选择性。采用阳离子 Bismarck Brown Y(BBY)来挑战 CTA-COOH 纳米纤维膜的吸附能力,膜对 BBY 的最大吸附容量为 158.73mg/g。自支撑的 CTA-COOH 膜可用于进行 17 次吸附-解吸循环,再生率高达 97.0%。CTA-COOH 纳米纤维膜具有优异的机械性能,并用于制造螺旋缠绕吸附筒,在处理水体积为 5.96L 和保留率为 100%的情况下,表现出显著的分离效率。