Abdulaziz Fahad, Alanazi Abdulaziz
Department of Chemistry, College of Science, University of Ha'il, Ha'il 81451, Saudi Arabia.
Department of Chemistry, College of Science and Humanities in Al-Kharj, Prince Sattam bin Abdulaziz University, Al-Kharj 11942, Saudi Arabia.
Int J Biol Macromol. 2024 Dec;282(Pt 4):137004. doi: 10.1016/j.ijbiomac.2024.137004. Epub 2024 Nov 2.
The study investigates the fabrication of an innovative nanocomposite composed of carboxymethyl chitosan (CMCs) combined with different amounts of iron (III) oxide (Fe₂O₃) to boost dye degradation and antibacterial effectiveness. A top-down ball milling technique formed the nanocomposites and was extensively investigated for their structural, morphological, and functional features. The mean particle size of the 0.3Fe₂O₃/CMCs and 0.6Fe₂O₃/CMCs nanocomposites was 83.74 nm and 124.5 nm, respectively, with small polydispersity index (PdI) values suggesting satisfactory homogeneity. The adsorption effectiveness of Reactive Blue 19 (RB 19) dye was evaluated under different circumstances, with the 0.6Fe₂O₃/CMCs nanocomposite exhibiting the maximum adsorption capacity of 140 mg/g at an ideal pH of 5. Kinetic analyses indicated that the adsorption process adhered to a pseudo-second-order kinetic model. The nanocomposites had significant bactericidal performance, with the 0.6Fe₂O₃/CMCs nanocomposite exhibiting the most extensive inhibition zones, particularly against E. coli (28.4 mm) and Pseudomonas aeruginosa (23.2 mm). Furthermore, the reusability of the 0.6Fe₂O₃/CMCs nanocomposite was validated by five adsorption-desorption cycles, retaining over 90 % efficiency. The results underscore the efficacy of Fe₂O₃/CMCs nanocomposites as viable materials for wastewater treatment and antibacterial purposes, offering a promising approach for environmental remediation.
该研究调查了一种由羧甲基壳聚糖(CMCs)与不同含量的氧化铁(Fe₂O₃)组合而成的创新型纳米复合材料的制备,以提高染料降解和抗菌效果。采用自上而下的球磨技术制备了纳米复合材料,并对其结构、形态和功能特性进行了广泛研究。0.3Fe₂O₃/CMCs和0.6Fe₂O₃/CMCs纳米复合材料的平均粒径分别为83.74纳米和124.5纳米,小的多分散指数(PdI)值表明具有令人满意的均匀性。在不同条件下评估了活性蓝19(RB 19)染料的吸附效果,0.6Fe₂O₃/CMCs纳米复合材料在理想pH值为5时表现出最大吸附容量140毫克/克。动力学分析表明,吸附过程符合准二级动力学模型。纳米复合材料具有显著的杀菌性能,0.6Fe₂O₃/CMCs纳米复合材料表现出最宽的抑菌圈,尤其是对大肠杆菌(28.4毫米)和铜绿假单胞菌(23.2毫米)。此外,0.6Fe₂O₃/CMCs纳米复合材料的可重复使用性通过五个吸附-解吸循环得到验证,效率保持在90%以上。结果强调了Fe₂O₃/CMCs纳米复合材料作为废水处理和抗菌用途可行材料的有效性,为环境修复提供了一种有前景的方法。