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Enhanced adsorption of phosphate by flower-like mesoporous silica spheres loaded with lanthanum

机译:负载镧的花状介孔二氧化硅球增强了对磷酸盐的吸附

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摘要

Monodispersed flower-like mesoporous silica spheres doped with lanthanum were synthesized via a facile method and explored as novel adsorbents for efficient phosphate adsorption for the first time. The synthesized adsorbents possessed a flower-like structure, especially with unique mesoporous channels featuring with small inner pores and wide outer pores. By raising lanthanum loading, the surface areas and pore volumes of resulting adsorbents were observed to continuously decrease, accompanied with gradually increasing pore sizes; that led to a dramatic improvement in phosphate adsorption from water. By taking cost effectiveness for practical application into consideration, the adsorbent with a theoretical La/Si molar ratio of 0.1 possessed a promising performance as compared to the literature ever reported, thanks to the large outer mesopores likely minimizing the diffusion problem caused by the pore blocking when LaPO4 nanorods formed during adsorption. In the kinetic study, its phosphate adsorption followed the pseudo-second-order equation better, suggesting chemisorption. Meanwhile, superior phosphate adsorption capacities were achieved within the pH range of 3.0 and 6.0; and almost unaffected by the presence of F-, Cl-, NO3-, and SO42-.
机译:通过一种简便的方法合成了掺镧的单分散花状介孔二氧化硅球,并首次将其作为有效吸附磷酸盐的新型吸附剂进行了研究。合成的吸附剂具有花朵状的结构,特别是具有独特的介孔通道,具有较小的内孔和较宽的外孔。通过增加镧的负载量,观察到所得到的吸附剂的表面积和孔体积不断减小,同时孔径逐渐增大。从而大大改善了水中磷酸盐的吸附。考虑到实际应用的成本效益,理论上的La / Si摩尔比为0.1的吸附剂与有史以来的文献相比具有令人鼓舞的性能,这是由于较大的外部中孔可能最大程度地减少了由孔阻塞引起的扩散问题当LaPO4纳米棒在吸附过程中形成时。在动力学研究中,其磷酸盐吸附更好地遵循拟二级方程,表明化学吸附。同时,在3.0和6.0的pH范围内获得了优异的磷酸盐吸附能力;而且几乎不受F-,Cl-,NO3-和SO42-的影响。

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