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Adsorptive removal of phosphate from aqueous solutions using iron oxide tailings

机译:使用氧化铁尾矿吸附去除水溶液中的磷酸盐

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This study explored the feasibility of utilizing industrial waste iron oxide tailings for phosphate removal in laboratory experiments. The experimental work emphasized on the evaluation of phosphate adsorption and desorption characteristics of the tailing material. The adsorption isotherm, kinetics, pH effect and desorption were examined in batch experiments. Five isotherm models were used for data fitting. The three-parameter equations (Redlich-Peterson and Langmuir-Freundlich) showed more applicability than the two-parameter equations (Freundlich, Langmuir and Temkin). A modified equation for calculation of the separation factor using the Langmuir-Freundlich equation constants was developed. The initial phosphate adsorption on the tailings was rapid. The adsorption kinetics can be best described by either the simple Elovich or power function equation. The phosphate adsorption on the tailings tended to decrease with an increase of pH. A phosphate desorbability of approximately 13-14% was observed, and this low desorbability likely resulted from a strong bonding between the adsorbed PO_4~(3-) and iron oxides in the tailings. Column flow-through tests using both synthetic phosphate solution and liquid hog manure confirmed the phosphate removal ability of the tailings. Due to their low cost and high capability, this type of iron oxide tailings has the potential to be utilized for cost-effective removal of phosphate from wastewater.
机译:这项研究探索了在实验室实验中利用工业废氧化铁尾矿去除磷酸盐的可行性。实验工作着重于评估尾矿材料的磷酸盐吸附和解吸特性。在分批实验中检查了吸附等温线,动力学,pH效应和解吸。五个等温线模型用于数据拟合。三参数方程式(Redlich-Peterson和Langmuir-Freundlich)比两参数方程式(Freundlich,Langmuir和Temkin)显示出更大的适用性。开发了使用Langmuir-Freundlich方程常数计算分离因子的修正方程。尾矿上磷酸盐的初始吸附很快。吸附动力学可以通过简单的Elovich方程或幂函数方程来最好地描述。随着pH值的增加,尾矿上磷酸盐的吸附趋于减少。观察到磷酸盐的解吸能力约为13-14%,而这种低的解吸能力可能是由于吸附的PO_4〜(3-)与尾矿中的氧化铁之间的牢固键合所致。使用合成磷酸盐溶液和液态猪粪肥进行的柱流过测试证实了尾矿的磷酸盐去除能力。由于它们的低成本和高能力,这种类型的氧化铁尾矿有潜力用于经济有效地从废水中去除磷酸盐。

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