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Recovery of phosphate from aqueous solution by magnetically recycled modified polishing powder composites

机译:通过磁性再循环改性抛光粉末复合材料从水溶液中回收磷酸盐

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摘要

This study investigated a magnetically recycled modified polishing powder (CMIO@PP) as an adsorbent of phosphate; the CMIO@PP was synthesized by combining the modified La/Ce-containing waste polishing powder with CaO2-modified Fe3O4 (CMIO). Results indicate that the CMIO@PP nanocomposite presents a crystal structure comprising La (OH)(3), Ce (OH)(3), and Fe3O4, and that CMIO is uniformly dispersed in the modified polishing powder. The CMIO@PP (1:3) is a suitable choice considering its magnetism and adsorption capacity. The magnetic adsorbent exhibits a high adsorption capacity of 53.72 mg/g, a short equilibrium time of 60 min, and superior selectivity for phosphate. Moreover, the adsorbent strongly depends on the pH during the adsorption process and maintains a large adsorption capacity when the pH level is between 2 and 6. The adsorption of phosphate by the CMIO@PP (1:3) accords with the Langmuir isotherm model, and the adsorption process follows the pseudo-second order model. Meanwhile, adsorption-desorption experiments show that the adsorbent could be recycled a few times and that a high removal efficiency of phosphate from civil wastewater was achieved. Finally, mechanisms show that the adsorption of phosphate by the CMIO@PP (1:3) is mainly caused by electrostatic attraction and ligand exchange.
机译:本研究研究了磁性再循环的改性抛光粉(CMIO @ PP)作为磷酸的吸附剂;通过将含有改性的LA / Ce的废抛光粉与CaO2改性Fe3O4(CMIO)组合来合成CMIO @ PP。结果表明,CMIO @ PP纳米复合材料呈现了包含La(OH)(3),Ce(OH)(3)和Fe 3 O 4的晶体结构,并且CMIO在改性抛光粉末中均匀地分散。 CMIO @ PP(1:3)是考虑其磁性和吸附能力的合适选择。磁性吸附剂具有53.72mg / g的高吸附能力,短平衡时间为60分钟,磷酸盐的优异选择性。此外,吸附剂在吸附过程中强烈取决于pH,并在pH水平介于2和6之间保持大的吸附能力。通过CMIO @ PP(1:3)的磷酸盐对朗米尔等温线的吸附,和吸附过程遵循伪二次阶模型。同时,吸附 - 解吸实验表明,吸附剂可以再循环几次,并且达到了来自民间废水的磷酸盐的高除去效率。最后,机制表明,CMIO @ PP(1:3)的磷酸盐的吸附主要是由静电吸引和配体交换引起的。

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