Tshikovhi Azwifunimunwe, Mishra Shivani B, Mishra Ajay K, Mochane Mokgaotsa J, Motaung Tshwafo E
Department of Chemistry, College of Science, Engineering and Technology, University of South Africa, Johannesburg 1709, South Africa.
Academy of Nanotechnology and Waste Water Innovations, Johannesburg 2007, South Africa.
Polymers (Basel). 2025 Apr 4;17(7):985. doi: 10.3390/polym17070985.
The highly efficient removal of mercury metal ions at a higher pH (basic media) is barely reported in the literature. In this study, we developed a novel adsorbent by blending chitosan with guar gum, designed to effectively remove mercury ions from basic media by stabilizing them with a gold (Au⁺) solution. The FTIR confirmed the compatibility of chitosan and guar gum through hydrogen bonding. The morphology of the blend exhibited an amorphous and porous structure. A mesoporous structure with a surface area, volume, and diameter of 11.843 (m/g), 0.184 (cm/g), and 17.072 nm, respectively, was confirmed by BET. The adsorption behavior was analyzed using isotherms and kinetics models, which best fitted with the pseudo-second-order kinetic model and Freundlich adsorption isotherm model, respectively. The adsorbent was shown to be an excellent candidate for the removal of mercury ions in water, with an adsorption efficiency of 92% at pH 12 in 60 min and a maximum adsorption capacity of 370.37 (mg/g).
文献中鲜有关于在较高pH值(碱性介质)下高效去除汞金属离子的报道。在本研究中,我们通过将壳聚糖与瓜尔胶混合开发了一种新型吸附剂,旨在通过用金(Au⁺)溶液稳定汞离子来有效去除碱性介质中的汞离子。傅里叶变换红外光谱(FTIR)通过氢键证实了壳聚糖与瓜尔胶的相容性。该混合物的形态呈现出无定形和多孔结构。通过比表面积分析仪(BET)证实了其具有介孔结构,表面积、孔体积和孔径分别为11.843(m²/g)、0.184(cm³/g)和17.072 nm。使用等温线和动力学模型分析了吸附行为,结果表明其分别最符合准二级动力学模型和弗伦德里希吸附等温线模型。该吸附剂被证明是去除水中汞离子的极佳候选材料,在pH值为12时,60分钟内的吸附效率为92%,最大吸附容量为370.37(mg/g)。