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Prussian blue immobilization on various filter materials through Layer-by-Layer Assembly for effective cesium adsorption

机译:普鲁士蓝色固定在各种过滤材料上通过层逐层组件进行有效铯吸附

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摘要

Prussian blue (PB) is well known for its excellent Cs+ ions adsorption capacity. Due to the high dispersibility of PB in aqueous phase, composite materials imbedding PB in supporting materials have been introduced as a solution. However, building PB particles inside porous supporting materials is still difficult, as PB particles are not fully formed and elute out to water. In this study, we suggest layer-by-layer (LBL) assembly to provide better immobilization of PB on supporting materials of poly vinyl alcohol sponge (PVA) and cellulose filter (CF). Three different PB attachment methods, ex-situ/in-situ/LBL assembly, were evaluated using PB leaching test as well as Cs+ adsorption test. Changes of surface functionality and morphology during PB composite preparation protocols were monitored through Fourier transform infrared spectroscopy and scanning electron microscopy. The results indicate that LBL assembly led to better PB attachment on supporting materials, bringing less eluting PB particles in aqueous phase compared to other synthesis methodologies, such as ex-situ and in-situ synthesis. By enhancing the stability of the adsorbent, adsorption capacity of PVA-PB with LBL improved nine times and that of CF-PB improved over 20 times. Therefore, the results suggest that LBL assembly offers a better orientation for growing PB particles on porous supporting materials
机译:普鲁士蓝(PB)以其优异的CS +离子吸附容量而闻名。由于Pb在水相中的高分散性,已引入嵌入在支撑材料中的复合材料作为溶液。然而,在多孔支撑材料内构建PB颗粒仍然难以困难,因为PB颗粒未完全形成并换水。在这项研究中,我们建议逐层(LBL)组件,以更好地固定PB对聚乙烯醇海绵(PVA)和纤维素过滤器(CF)的支撑材料。使用PB浸出测试以及Cs +吸附试验评估三种不同的PB附着方法,原位/原位/ LBL组件。通过傅里叶变换红外光谱和扫描电子显微镜监测PB复合制剂方案中表面功能和形态的变化。结果表明,与其他合成方法相比,LBL组件导致在支撑材料上的Pb附着在水相中,使得在水相中较少,例如诸如原地和原位合成的水相中。通过提高吸附剂的稳定性,PVA-Pb的吸附能力与LBL改善九次,CF-PB的吸附能力提高了20倍。因此,结果表明LBL组件为在多孔支撑材料上生长PB颗粒提供更好的取向

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