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Prussian blue-embedded carboxymethyl cellulose nanofibril membranes for removing radioactive cesium from aqueous solution

机译:普鲁士蓝嵌入的羧甲基纤维素纳米纤维膜从水溶液中除去放射性铯

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In this study, we synthesized a Prussian blue (PB)-embedded macroporous carboxymethyl cellulose nanofibril (CMCNF) membrane for facile cesium (Cs) removal. The PB was formed in situ at Fe3+ sites on a CMCNF framework cross-linked using FeCl3 as a cross-linking agent. Cubic PB particles of size 5-20 nm were observed on the macroporous CMCNF membrane surface. The PB-CMCNF membrane showed 2.5-fold greater Cs adsorption capacity (130 mg/g(PB-CMCNF)) than commercial PB nanoparticles, even though the PB loading of the PB-CMCNF membrane was less than 100 mg/g(PB-CMCNF) The macroporous structure of the CMCNF membrane led to improved diffusion in the solution, thereby increasing the Cs adsorption capacity. The Cs adsorption behavior was systematically investigated in different solution chemistry. Finally, Cs-137 removal using a semicontinuous adsorption module was demonstrated in real seawater. The results showed that the PB-CMCNF membrane is a highly effective, practical material for the removal of Cs-137 from aqueous environments.
机译:在这项研究中,我们合成了普鲁士蓝(PB) - 用于容易铯(Cs)去除的普鲁士蓝(Pb) - j2Mbedded大孔羧甲基纤维素纳米纤维(CMCNF)膜。在使用FECL3作为交联剂的CMCNF框架上以Fe3 +位点原位形成Pb。在大孔CMCNF膜表面上观察到立方PB尺寸5-20nm的颗粒。 PB-CMCNF膜表现出比商业PB纳米颗粒的2.5倍较大的Cs吸附容量(130mg / g(Pb-cmcNF)),即使Pb-cmcnf膜的Pb负载小于100mg / g(Pb- CMCNF)CMCNF膜的大孔结构导致溶液中改善扩散,从而增加CS吸附能力。在不同的溶液化学中系统地研究了Cs吸附行为。最后,在真正的海水中证明了使用半连续吸附模块的CS-137去除。结果表明,PB-CMCNF膜是一种高效,实用的材料,用于从水性环境中除去CS-137。

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