Abdulhameed Ahmed Saud, Al Omari Rima Heider, Abualhaija Mahmoud, Algburi Sameer
Department of Pharmaceutical Chemistry, College of Pharmacy, University of Anbar, Ramadi, Iraq; College of Engineering, University of Warith Al-Anbiyaa, Karbala, Iraq.
Medical Lab Sciences Department, Faculty of Allied Medical Sciences, Al-Ahliyya Amman University, Amman, Jordan.
Int J Biol Macromol. 2024 Dec;283(Pt 3):137645. doi: 10.1016/j.ijbiomac.2024.137645. Epub 2024 Nov 19.
A novel bionanocomposite of grafted chitosan-phthalic anhydride/CoO nanoparticles (CHT-PHT/CoO) was synthesized and used for the elimination of brilliant green (BG) dye from aquatic systems. The CHT-PHT/CoO material underwent several instrumental characterizations including, XRD, BET, FTIR, FESEM-EDX, and pH examinations. The impact of the key uptake factors, namely A: CHT-PHT/CoO dose, B: starting solution pH, and C: contact duration, on the effectiveness of BG removal, was mathematically optimized using the response surface methodology (RSM). The ideal conditions of the maximum BG elimination (96.05 %) according to the desirability function are as follows: A: CHT-PHT/CoO dose (0.044 g); B: pH ∼ 10; and C: contact duration (34.6 min). The analysis of adsorption kinetics and equilibrium demonstrates a strong fit to the pseudo-first-order model, and the Freundlich isotherm model confirms the occurrence of multilayer adsorption. The highest adsorption capacity of CHT-PHT/CoO for BG was determined to be 425.09 mg/g at a temperature of 25 °C. This study highlights the development of a practical bionanocomposite adsorbent that has a favorable ability to absorb organic dyes from wastewater. The current work offers a sustainable and efficient method of reducing the environmental impact of industrial dye pollutants by utilizing the distinctive properties of CHT-PHT/CoO bionanocomposite.
合成了一种新型的接枝壳聚糖-邻苯二甲酸酐/氧化钴纳米颗粒生物纳米复合材料(CHT-PHT/CoO),并将其用于去除水体中的亮绿(BG)染料。对CHT-PHT/CoO材料进行了多种仪器表征,包括X射线衍射(XRD)、比表面积分析(BET)、傅里叶变换红外光谱(FTIR)、场发射扫描电子显微镜-能谱分析(FESEM-EDX)和pH值检测。利用响应面法(RSM)对关键吸附因素,即A:CHT-PHT/CoO剂量、B:初始溶液pH值和C:接触时间,对BG去除效果的影响进行了数学优化。根据期望函数,实现最大BG去除率(96.05%)的理想条件如下:A:CHT-PHT/CoO剂量(0.044 g);B:pH值约为10;C:接触时间(34.6分钟)。吸附动力学和平衡分析表明,该吸附过程与伪一级模型拟合良好,Freundlich等温线模型证实了多层吸附的发生。在25℃下,CHT-PHT/CoO对BG的最高吸附容量为425.09 mg/g。本研究突出了一种实用的生物纳米复合吸附剂的开发,该吸附剂具有从废水中吸附有机染料的良好能力。当前的工作提供了一种可持续且高效的方法,通过利用CHT-PHT/CoO生物纳米复合材料的独特性能来降低工业染料污染物对环境的影响。