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Titanium Pyrophosphate for Removal of Trivalent Heavy Metals and Actinides Simulated by Retention of Europium

机译:焦phosphate钛用于去除三价重金属和Act系元素的保留by模拟

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摘要

This work addresses the synthesis of titanium pyrophosphate, as well as the characterization and evaluation of the sorption process of europium, for removal of trivalent heavy metals and actinides simulate. The evaluation of the surface properties of titanium pyrophosphate was carried out determining the surface roughness and surface acidity constants. The values obtained from the determination of the surface roughness of the synthesized solid indicate that the surface of the material presents itself as slightly smooth. The FITEQL program was used to fit the experimental titration curves to obtain the surface acidity constants: log⁡K+ = 3.59 ± 0.06 and log⁡K = −3.90 ± 0.05. The results of sorption kinetics evidenced that the pseudo-order model explains the retention process of europium, in which the initial sorption velocity was 8.3 × 10−4 mg g−1 min−1 and kinetic constant was 1.8 × 10−3 g mg min−1. The maximum sorption capacity was 0.6 mg g−1. The results obtained from sorption edge showed the existence of two bidentate complexes on the surface.
机译:这项工作致力于焦磷酸钛的合成,以及the的吸附过程的表征和评估,以去除三价重金属和simulate系元素。进行焦磷酸钛的表面性质的评价,以确定表面粗糙度和表面酸度常数。通过确定合成固体的表面粗糙度获得的值表明,材料的表面本身呈现为略微光滑。使用FITEQL程序拟合实验滴定曲线以获得表面酸度常数:log⁡K + = 3.59±0.06和log⁡K- = −3.90±0.05 。吸附动力学结果表明,拟序模型解释了the的保留过程,其中the的初始吸附速度为8.3×10 −4 mg g -1 min -1 ,动力学常数为1.8×10 -3 g mg min -1 。最大吸附容量为0.6μmgg -1 。从吸附边缘获得的结果表明在表面上存在两个双齿络合物。

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