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Magnetic P zeolites: Synthesis, characterization and the behavior in potassium extraction from seawater

机译:磁性P沸石:从海水中提取钾的合成,表征和行为

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摘要

In order to solve the difficult problem of powder P zeolite separation from solution disposed, a series of magnetic P zeolites are hydrothermally synthesized with traditional hydrothermal method by adding magnetic Fe3O4 particulates in the crystallization. The products were characterized with X-ray diffraction (XRD), scanning electron microscopy (SEM), IR spectrometer (IR), magnetic susceptibility, and ion exchange capability. The results show that the magnetism of the products is stable and magnetic susceptibility rises with the addition amount of Fe3O4 particulates increasing. Comparing the magnetic P zeolites synthesized with the pure P zeolite, their adsorption capabilities of Ca~(2+), Mg~(2+), K~+ still are very high. When the magnetic zeolites are used to extract ion from solution disposed without molding, their powder products can be easily separated from solvent or solution by magnetic separation technology.
机译:为了解决从处理液中分离出粉末状P沸石的难题,在传统的水热法中,通过在结晶过程中加入磁性Fe3O4颗粒,水热合成了一系列磁性P型沸石。用X射线衍射(XRD),扫描电子显微镜(SEM),红外光谱仪(IR),磁化率和离子交换能力对产物进行表征。结果表明,随着Fe3O4颗粒添加量的增加,产品的磁性稳定,磁化率提高。将合成的磁性P沸石与纯P沸石进行比较,它们对Ca〜(2 +),Mg〜(2 +),K〜+的吸附能力仍然很高。当使用磁性沸石从未经模塑的溶液中提取离子时,可以通过磁性分离技术轻松地将其粉末产品从溶剂或溶液中分离出来。

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