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首页> 外文期刊>RSC Advances >Submicron fibers as a morphological improvement of amorphous zirconium oxide particles and their utilization in antimonate (Sb(v)) removal
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Submicron fibers as a morphological improvement of amorphous zirconium oxide particles and their utilization in antimonate (Sb(v)) removal

机译:亚微米纤维作为非晶态氧化锆颗粒的形态改进及其在锑(Sb(v))去除中的利用

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摘要

Mesoporous and large surface area zirconium oxide aggregate granules with good adsorption properties were synthesized using a simple precipitation method. Since utilization of these small and fragile particles is considered rather difficult in larger scale column operation, the product was formed into a fibrous form to improve its usability. The submicron fibers were obtained from an optimized electroblowing synthesis that resulted in elastic and uniform fibers with a tetragonal structure and high length-to-diameter ratio. In antimonate (Sb( V )) adsorption experiments, the higher calcination temperature (350 °C) of the fibers did not seem to decrease the Sb( V ) adsorption capacity excessively since the high theoretical adsorption capacities were 113 mg g ~(?1) and 58 mg g ~(?1) for the aggregate and fibers, respectively. Both materials had fast kinetics, fibers being faster in the beginning of the reaction. Moreover, both materials offered efficient Sb( V ) removal in the studied pH range from 1 to 11 by reaching over 99.9% adsorption in the optimal pH range. X-ray absorption near edge spectroscopy (XANES) revealed that Sb( V ) stays as pentavalent antimony after being adsorbed by these materials and based on the isoelectric point shifts in the zeta potential measurement, adsorption occurs mainly by an inner-sphere complexation reaction. Finally, our study showed that pressure buildup in a flow-through column packed with zirconium oxide fibers was significantly lower than in a column packed with aggregates. Thus, zirconium oxide aggregates can be formed into submicron fibers with enhanced column operation properties without a too large compromise in the adsorption properties.
机译:采用简单的沉淀法合成了具有良好吸附性能的中孔大表面积氧化锆骨料颗粒。由于在大型色谱柱操作中很难利用这些小而易碎的颗粒,因此将产品制成纤维状以提高其可用性。亚微米纤维是从优化的电吹合成中获得的,该合成产生具有四方结构和高长径比的弹性且均匀的纤维。在锑酸(Sb(V))吸附实验中,由于较高的理论吸附量为113 mg g〜(?1),较高的煅烧温度(350°C)似乎并没有过度降低Sb(V)吸附量。 )和骨料和纤维分别为58 mg g〜(?1)。两种材料均具有快速动力学,纤维在反应开始时较快。此外,两种材料均能在研究的pH范围1至11范围内有效去除Sb(V),在最佳pH范围内达到99.9%以上的吸附率。 X射线吸收近边缘光谱法(XANES)表明,Sb(V)被这些材料吸附后仍以五价锑形式存在,并且基于ζ电势测量中的等电点位移,吸附主要通过内球络合反应发生。最后,我们的研究表明,在填充氧化锆纤维的流通式色谱柱中,压力累积显着低于在填充聚集体的色谱柱中。因此,可以将氧化锆聚集体形成具有增强的柱操作性能的亚微米纤维,而不会太大地损害吸附性能。

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