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Sono-assisted preparation of magnetic magnesium-aluminum layered double hydroxides and their application for removing fluoride

机译:声辅助铝镁磁性层状双氢氧化物的制备及其在除氟中的应用

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A simple ultrasound-assisted co-precipitation method in combination with a calcination treatment was developed to prepare magnetic Mg-Al layered double hydroxides composite as an adsorbent material to remove fluoride ions from aqueous solutions. The application of ultrasound in the preparation process promoted the formation of the hydrotalcite-like phase and drastically shortened the time being required for preparation of the crystalline composite. It was found that the ultrasound irradiation assistance decreased the size of the composite particles and increased the specific surface area, being favorable to the improvement of the adsorption capacity. The composite prepared under the ultrasound irradiation exhibited fairly high maximum adsorption capacity of fluoride (47.7mgg~(-1)), which was 60% higher than that of the composite prepared without the ultrasound irradiation assistance with the same aging time. The thermodynamic and kinetic studies demonstrated that the adsorption of fluoride ions involved the reconstruction of the layered structure in the composite. In addition, the magnetic composite can be effectively and simply separated by using an external magnetic field, and then regenerated by desorption and calcination.
机译:开发了一种简单的超声辅助共沉淀法与煅烧处理相结合的方法,以制备磁性Mg-Al层状双氢氧化物复合材料作为吸附剂,以去除水溶液中的氟离子。超声在制备过程中的应用促进了水滑石状相的形成,并大大缩短了制备晶体复合物所需的时间。发现超声波照射辅助减小了复合颗粒的尺寸并增加了比表面积,有利于提高吸附容量。在超声辐射条件下制备的复合材料表现出相当高的氟化物最大吸附能力(47.7mgg〜(-1)),比在相同的老化时间下没有超声辐射辅助条件下制备的复合材料高了60%。热力学和动力学研究表明,氟离子的吸附涉及复合材料层状结构的重建。另外,可以通过使用外部磁场有效且简单地分离磁性复合材料,然后通过解吸和煅烧使其再生。

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