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Antimony Removal from Water by a Chitosan-Iron(III)[ChiFer(III)] Biocomposite

机译:壳聚糖-铁(III)[ChiFer(III)]生物复合材料去除水中的锑

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摘要

The presence of antimony(III) in water represents a worldwide concern, mainly due to its high toxicity and carcinogenicity potential. It can be separated from water by the use of sustainable biopolymers such as chitosan or its derivatives. The present study applied chitosan modified with iron(III) beads to Sb(III) removal from aqueous solutions. The resulting material performed with a high adsorption capacity of 98.68 mg/g. Material characterization consisted of Raman spectroscopy (RS), X-ray diffraction (XRD), scanning electron microscope observations (SEM-EDX), Fourier transform infrared spectroscopy (FTIR) and point of zero charge (pHpzc). The adsorption study included pH study, effect of initial concentration, kinetics, ion effect, and reusability assessment. The RS, XRD, and FTIR results indicated that the main functional groups in the composite were related to hydroxyl and amino groups, and iron oxyhydroxide species of α-FeO(OH). The pHpzc was found to be 7.41. The best adsorption efficiency was set at pH 6. The equilibrium isotherms were better fitted with a non-linear Langmuir model, and the kinetics data were fitted with a pseudo-second order rate equation. The incorporation of iron into the chitosan matrix improved the Sb(III) uptake by 47.9%, compared with neat chitosan (CS). The material did not exhibit an impact in its performance in the presence of other ions, and it could be reused for up to three adsorption–desorption cycles.
机译:水中锑(III)的存在代表着全世界的关注,这主要是由于其高毒性和致癌性。通过使用可持续的生物聚合物,例如壳聚糖或其衍生物,可以将其与水分离。本研究将用铁(III)珠修饰的壳聚糖应用于从水溶液中去除Sb(III)。所得材料表现出98.68 mg / g的高吸附容量。材料表征包括拉曼光谱(RS),X射线衍射(XRD),扫描电子显微镜观察(SEM-EDX),傅里叶变换红外光谱(FTIR)和零电荷点(pHpzc)。吸附研究包括pH研究,初始浓度影响,动力学,离子作用和可重复使用性评估。 RS,XRD和FTIR结果表明,复合物中的主要官能团与α-FeO​​(OH)的羟基和氨基以及羟基氧化铁有关。发现pHpzc为7.41。最佳吸附效率设置为pH6。平衡等温线更适合非线性Langmuir模型,动力学数据适合拟二阶速率方程。与纯壳聚糖(CS)相比,将铁掺入壳聚糖基质中可使Sb(III)吸收提高47.9%。在存在其他离子的情况下,该材料对其性能没有影响,可以重复使用多达三个吸附-解吸循环。

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