纤维状磷酸铈及其丙氨酸和精氨酸插层材料对uo22 +的吸附

Hana B. AlHanash, Ragiab A. M. Issa, Heba A. AlJabo
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引用次数: 0

摘要

制备了非晶纤维状磷酸铈(f-CeP)并对其进行了表征。采用间歇式吸附法研究了非晶态纤维状磷酸铈f-CeP对铀酰离子(UO2)2+水溶液的吸附性能,并对不同的吸附变量进行了研究,以阐明其作为铀吸附介质的适用性。用8-羟基喹啉萃取后,分光光度法测定铀酰离子的吸附剂用量,确定最佳吸附条件(pH、接触时间、离子强度、吸附剂用量、初始铀酰离子浓度)。f-CeP交换容量为4.25meq/g。其x射线粉末衍射图显示为非晶材料,d001间距值为10.76 Å。而其氨基酸插入物对f-CeP /丙氨酸和f-CeP /精氨酸的d001值分别为11.33Å和14.19Å显著增加。分光光度分析结果表明,初始浓度为50ppm, pH为4.5,接触时间为3hrs,吸附量为2 g/L时,铀酰离子的最大吸附量达到。然而,氨基酸插层物的吸附效率低于其母体类似物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adsorption of UO 22+ on Fibrous Cerium Phosphate and its Alanine and Arginine Intercalated Materials
Amorphous fibrous cerium (IV) phosphate (f-CeP) was prepared and characterized. Batch sorption method was performed to investigate uptake of uranyl ion (UO2)2+ aqueous solution by amorphous fibrous cerium phosphate f-CeP, using different variables in order to elucidate its applicability as a uranium sorption medium. Sorption of Uranyl ions was measured spectrophotometically after its extraction by 8-hydroxy quinoline, implementing best adsorption conditions (pH, contact time, ionic strength, amount of adsorbent, and initial uranyl ion concentration) for estimation. Exchange capacity of f-CeP was 4.25meq/g. Its x-ray powder diffraction pattern showed an amorphous material with d001 spacing value of 10.76 Å. While its amino acid intercalates showed a significant increase in the d001 to 11.33Å for f-CeP / alanine and 14.19Å for f-CeP / arginine. From spectrophotometric analysis, the results showed that the maximum uranyl ion adsorption capacity reached the initial concentration of 50ppm, pH 4.5, contact time 3hrs and adsorption dosage of 2 g/L. However, amino acid intercalates showed less adsorption efficiency than their parent analogue.
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