Nie Jing, Feng Dan, Shang Jiangwei, Nasen Bate, Jiang Tong, Liu Yumeng, Hou Siyi
Key Laboratory of Pollutant Chemistry and Environmental Treatment, College of Resources and Environment, Yili Normal University, Yining, 835000, China.
College of Chemistry and Chemical Engineering, Yili Normal University, Yining, 835000, China.
Sci Rep. 2023 Sep 18;13(1):15443. doi: 10.1038/s41598-023-42409-2.
Here, we propose a green and sustainable 3D porous aerogel based on citrus peel (CP), chitosan (CS), and bentonite (BT). This aerogel is prepared through a simple sol-gel and freeze-drying process and is designed for efficient capture of Cu(II) ions from water matrices. CCBA-2, with its abundance of active binding sites, exhibits an impressive Cu(II) adsorption yield of 861.58 mg/g. The adsorption isotherm and kinetics follow the Freundlich and pseudo-second-order models, respectively. In the presence of coexisting mixed-metal ions, CCBA-2 demonstrates a significantly higher selectivity coefficient (K = 1138.5) for removing Cu(II) ions compared to other toxic metal ions. Furthermore, the adsorption of Cu(II) ions by CCBA-2 is not significantly affected by coexisting cations/anions, ionic strength, organic matter, or different water matrices. Dynamic fixed-bed column experiments show that the adsorption capacity of Cu(II) ions reaches 377.4 mg/g, and the Yoon-Nelson model accurately describes the adsorption process and breakthrough curve. Through experiments, FTIR, and XPS analyses, we propose a reasonable binding mechanism between CCBA-2 and metal cations, involving electrostatic attraction and chemical chelation between Cu(II) and the functional groups of the aerogel. CCBA-2 saturated with Cu(II) ions can be successfully regenerated by elution with 1 M HNO, with only a slight decrease in adsorption efficiency (5.3%) after 5 adsorption-desorption cycles. Therefore, CCBA-2 offers a cost-effective and environmentally friendly material that can be considered as a viable alternative for the green and efficient removal of toxic Cu(II) ions from wastewater.
在此,我们提出了一种基于柑橘皮(CP)、壳聚糖(CS)和膨润土(BT)的绿色可持续3D多孔气凝胶。这种气凝胶通过简单的溶胶 - 凝胶和冷冻干燥过程制备而成,旨在从水基质中高效捕获Cu(II)离子。CCBA - 2具有丰富的活性结合位点,表现出令人印象深刻的861.58 mg/g的Cu(II)吸附量。吸附等温线和动力学分别遵循Freundlich模型和准二级模型。在共存混合金属离子的情况下,与其他有毒金属离子相比,CCBA - 2对去除Cu(II)离子表现出显著更高的选择性系数(K = 1138.5)。此外,CCBA - 2对Cu(II)离子的吸附不受共存阳离子/阴离子、离子强度、有机物或不同水基质的显著影响。动态固定床柱实验表明,Cu(II)离子的吸附容量达到377.4 mg/g,Yoon - Nelson模型准确描述了吸附过程和穿透曲线。通过实验、傅里叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)分析,我们提出了CCBA - 2与金属阳离子之间合理的结合机制,涉及Cu(II)与气凝胶官能团之间的静电吸引和化学螯合。用1 M HNO洗脱可成功再生饱和了Cu(II)离子的CCBA - 2,在5次吸附 - 解吸循环后吸附效率仅略有下降(5.3%)。因此,CCBA - 2提供了一种经济高效且环境友好的材料,可被视为从废水中绿色高效去除有毒Cu(II)离子的可行替代品。