首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Characterization and Arsenic Adsorption Behaviors of Water Treatment Residuals from Waterworks for Iron and Manganese Removal
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Characterization and Arsenic Adsorption Behaviors of Water Treatment Residuals from Waterworks for Iron and Manganese Removal

机译:自来水厂除铁除锰中水处理残渣的表征和砷吸附行为

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摘要

Water treatment residuals (WTRs), obtained from a groundwater treatment plant for biological iron and manganese removal, were investigated and used as adsorbents for arsenic removal. The surface morphology and structural features of the WTRs were characterized by scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), and Brunauner–Emmett–Teller analysis (BET). Laboratory experiments were also carried out to test the adsorption capability and adaptability of WTRs on both As (III) and As (V) removal from the water. The results showed that the WTRs were mainly amorphous and had a large specific surface area of 253.152 m /g. The maximum adsorption capacities, evaluated using the Langmuir isotherm equation, were 36.53 mg/g and 40.37 mg/g for As (III) and As (V), respectively. The pseudo-second-order model fitted the kinetic data better, with R more than 0.99 for both As (III) and As (V). The removal of As (V) decreased with the increase in pH, especially when the pH was above 9, whereas for As (III), the removal effectiveness almost remained constant at both acidic and neutral pHs. H PO and SiO could strongly inhibit arsenic adsorption onto the WTRs, and the effect of other ions was little.
机译:从地下水处理厂获得的用于生物除铁和除锰的水处理残留物(WTR)进行了研究,并将其用作除砷的吸附剂。 WTR的表面形态和结构特征通过扫描电子显微镜(SEM),透射电子显微镜(TEM),X射线衍射(XRD)和Brunauner-Emmett-Teller分析(BET)表征。还进行了实验室实验以测试WTR对水中As(III)和As(V)的吸附能力和适应性。结果表明,WTR主要为非晶态,比表面积为253.152 m / g。使用Langmuir等温方程评估的最大吸附容量对于As(III)和As(V)分别为36.53 mg / g和40.37 mg / g。拟二阶模型更好地拟合了动力学数据,As(III)和As(V)的R均大于0.99。 As(V)的去除随着pH的增加而降低,特别是在pH值大于9时,而As(III)的去除效果在酸性和中性pH值下几乎保持恒定。 H PO和SiO可以强烈抑制砷吸附在WTR上,其他离子的影响很小。

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