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Adsorption of Phosphate from Aqueous Solution Using an Iron-Zirconium Binary Oxide Sorbent

机译:铁-锆二元氧化物吸附剂从水溶液中吸附磷酸盐

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摘要

In this study, an iron-zirconium binary oxide with a molar ratio of 4:1 was synthesized by a simple coprecipitation process for removal of phosphate from water. The effects of contact time, initial concentration of phosphate solution, temperature, pH of solution, and ionic strength on the efficiency of phosphate removal were investigated. The adsorption data fitted well to the Langmuir model with the maximum P adsorption capacity estimated of 24.9 mg P/g at pH 8.5 and 33.4 mg P/g at pH 5.5. The phosphate adsorption was pH dependent, decreasing with an increase in pH value. The presence of Cl-, SO (4) (2-) , and CO (3) (2-) had little adverse effect on phosphate removal. A desorbability of approximately 53 % was observed with 0.5 M NaOH, indicating a relatively strong bonding between the adsorbed PO (4) (3-) and the sorptive sites on the surface of the adsorbent. The phosphate uptake was mainly achieved through the replacement of surface hydroxyl groups by the phosphate species and formation of inner-sphere surface complexes at the water/oxide interface. Due to its relatively high adsorption capacity, high selectivity and low cost, this Fe-Zr binary oxide is a very promising candidate for the removal of phosphate ions from wastewater.
机译:在这项研究中,通过简单的共沉淀工艺从水中去除磷酸盐,合成了摩尔比为4:1的铁-锆二元氧化物。研究了接触时间,磷酸盐溶液的初始浓度,温度,溶液的pH值和离子强度对磷酸盐去除效率的影响。吸附数据非常适合Langmuir模型,最大的P吸附容量在pH 8.5时估计为24.9 mg P / g,在pH 5.5时为33.4 mg P / g。磷酸盐的吸附取决于pH,随着pH值的增加而降低。 Cl-,SO(4)(2-)和CO(3)(2-)的存在对磷酸盐的去除几乎没有不利影响。用0.5 M NaOH观察到约53%的解吸性,表明吸附的PO(4)(3-)与吸附剂表面上的吸附位点之间有较强的结合力。磷酸盐的吸收主要是通过用磷酸盐物质代替表面羟基并在水/氧化物界面形成内球表面复合物来实现的。由于其相对较高的吸附能力,高选择性和低成本,这种Fe-Zr二元氧化物是从废水中去除磷酸根离子的非常有希望的候选者。

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