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ARSENIC REMOVAL FROM WATER USING A NEW CLASS OF MATERIALS WITH ADSORBENT PROPERTIES

机译:从水中砷去除使用的一个新类吸附剂的材料属性

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摘要

One of the strategies for sustainable development is to promote a quality health care system, available to all without discrimination, and improving protection against health threats. In this context, arsenic removal from groundwater for drinking purposes presents challenges at national and global levels. Thus, the present article focuses on removing arsenic from groundwaters by using a new class of materials based on cellulose modified with crown ether (dibenzo-18-crown-6) doped with iron ions. Using such extractants involves only a small amount of crown ether, indicating higher efficiency of produced material, and in order to improve the adsorbent properties and selectivity for arsenic removal, the modified cellulose was functionalized with iron ions. The new adsorbent material was characterized by using energy-dispersive X-ray analysis and Fourier-transform infrared spectroscopy. To investigate its adsorption properties for arsenic removal, equilibrium, kinetic and thermodynamic studies were performed. Arsenic adsorption from water onto new class of adsorbent material was studied under different experimental conditions such as reaction time, initial arsenic concentration and temperature. Kinetic of adsorption process was better described by pseudo-second-order model. The equilibrium adsorption data were well described by the Sips adsorption isotherm. The values of thermodynamic parameters (ΔG°, ΔH°, ΔS°) showed that the adsorption process was endothermic and spontaneous. The possibility of reuse of the adsorbent material through adsorption and desorption cycles was also studied, and it was found that the material can be used in three adsorption-desorption cycles.
机译:可持续发展战略之一是促进高质量的卫生保健系统,可以不受歧视,改善保护健康的威胁。这种背景下,从地下水砷去除饮酒目的提出的挑战国家和全球水平。文章着重于消除砷地下水通过使用一种新的材料基于纤维素与冠醚改性(dibenzo-18-crown-6)掺杂铁离子。这样的萃取剂只涉及少量的冠醚,表明更高的效率生产材料,为了提高对砷吸附剂性能和选择性删除,修改后的纤维素携带铁离子。材料使用的特征能量色散x射线分析和傅里叶变换红外光谱学。研究砷的吸附性能、平衡、动力学和热力学进行了研究。水到吸附剂材料的新类研究了在不同实验条件下如反应时间、初始砷浓度和温度。吸附过程是更好的描述pseudo-second-order模型。吸附数据所描述的小口吸附等温式。参数(ΔG°,ΔH°,ΔS°)显示吸附过程是吸热的自发的。通过吸附和吸附剂材料解吸周期也是研究,发现材料可以用在3adsorption-desorption周期。

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