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Removal of arsenic from drinking water using modified natural zeolite

机译:使用改性天然沸石去除饮用水中的砷

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Arsenic removal from drinking water by adsorption on natural and iron modified clinoptilolite was investigated. The structure of modified and unmodified clinoptilolite samples from the Gordes-Manisa deposit was studied using X-ray diffraction (XRD) and scanning electron microscopy (SEM). The elemental composition and specific surface areas of zeolitic samples were also determined. The pretreatment of clinoptilolite using NaCl and FeCl3 solutions (0.1 and 0.01 M) resulted in 9.2 (92%) and 8.4 (84%) μg g~(-1) of arsenic uptake, whereas only l.5μg g~(-1) of arsenic uptake could be detected in the untreated zeolite at equilibrium time. The time required to attain equilibrium for arsenic sorption on all types of clinoptilolite was 60 mih. The saturation time was independent of concentration of the initial arsenic solution. The pseudo-second-order rate equation described better the kinetics of arsenic sorption with good correlation coefficients than pseudo-first-order equation. At lower initial arsenate concentration, arsenate exhibited greater removal rates and best removed when the clinoptilolite modified by 0.1 M FeCl3 was used for adsorbent. This study showed that the amount of arsenic adsorbed on the adsorbents not only depends on the iron concentration in the clinoptilolite, but also depends on the initial arsenate concentrations.
机译:研究了通过吸附在天然和铁改性斜发沸石上从饮用水中去除砷的方法。使用X射线衍射(XRD)和扫描电子显微镜(SEM)研究了来自Gordes-Manisa矿床的改性斜发沸石样品和未改性斜发沸石样品的结构。还确定了沸石样品的元素组成和比表面积。使用NaCl和FeCl3溶液(0.1和0.01 M)预处理斜发沸石的砷吸收量为9.2(92%)和8.4(84%)μgg〜(-1),而仅1.5μgg〜(-1)。在平衡时间可以在未经处理的沸石中检测到砷吸收量。在所有类型的斜发沸石上达到砷吸附平衡所需的时间为60 mih。饱和时间与初始砷溶液的浓度无关。拟二阶速率方程比拟一阶方程更好地描述了砷吸附动力学,具有良好的相关系数。在较低的初始砷酸盐浓度下,砷酸盐显示出更高的去除速率,并且当将经0.1 M FeCl3改性的斜发沸石用作吸附剂时,砷酸盐的去除效果最好。这项研究表明,吸附剂上吸附的砷量不仅取决于斜发沸石中铁的浓度,还取决于初始砷酸盐的浓度。

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