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首页> 外文期刊>Journal of Colloid and Interface Science >Adsorption-desorption mechanism of phosphate by immobilized nano-sized magnetite layer: Interface and bulk interactions
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Adsorption-desorption mechanism of phosphate by immobilized nano-sized magnetite layer: Interface and bulk interactions

机译:固定的纳米磁铁矿层对磷酸盐的吸附-解吸机理:界面和整体相互作用

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Phosphate adsorption mechanism by a homogenous porous layer of nano-sized magnetite particles immobilized onto granular activated carbon (nFe-GAC) was studied for both interface and bulk structures. X-ray Photoelectron Spectroscopy (XPS) analysis revealed phosphate bonding to the nFe-GAC predominantly through bidentate surface complexes. It was established that phosphate was adsorbed to the magnetite surface mainly via ligand exchange mechanism. Initially, phosphate was adsorbed by the active sites on the magnetite surface, after which it diffused into the interior of the nano-magnetite layer, as indicated by intraparticle diffusion model. This diffusion process continues regardless of interface interactions, revealing some of the outer magnetite binding sites for further phosphate uptake. Desorption, using NaOH solution, was found to be predominantly a surface reaction, at which hydroxyl ions replace the adsorbed phosphate ions only at the surface outer biding sites. Five successive fix-bed adsorption/regeneration cycles were successfully applied, without significant reduction in the nFe-GAC adsorption capacity and at high regeneration efficiency.
机译:研究了固定在颗粒活性炭(nFe-GAC)上的纳米尺寸磁铁矿颗粒均质多孔层对磷酸盐的吸附机理。 X射线光电子能谱(XPS)分析表明,磷酸盐主要通过双齿表面络合物与nFe-GAC结合。已经确定磷酸盐主要通过配体交换机制吸附到磁铁矿表面。最初,磷酸盐被磁铁矿表面上的活性位点吸附,然后扩散到纳米磁铁矿层内部,如颗粒内扩散模型所示。无论界面相互作用如何,该扩散过程都会继续进行,从而揭示出一些外部磁铁矿结合位点,以进一步吸收磷酸盐。发现使用NaOH溶液的解吸主要是表面反应,在该反应中,羟基离子仅在表面外部投标部位取代吸附的磷酸根离子。成功应用了五个连续的固定床吸附/再生循环,而nFe-GAC吸附容量没有明显降低,并且再生效率很高。

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