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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Uranium adsorption studies on hydrothermal carbon produced by chitosan using statistical design method
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Uranium adsorption studies on hydrothermal carbon produced by chitosan using statistical design method

机译:用统计学设计方法研究壳聚糖产生的热液碳对铀的吸附研究。

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摘要

A new hydrothermal cross-linking chitosan (HCC) was prepared by hydrothermal reaction at a mild temperature (180 °C) to diminish the solubility in acid solution, and the amine groups were almost retained during the hydrothermal reaction characterized by FT-IR and the dissolution rate in pH 3 solution decreased from 89.6 to 12.6 %. The effects of initial pH, contact time, initial concentration and temperature on the sorption capacity are discussed using 24 full-factorial central composite design using response-surface methodology. The HCC showed the highest uranium sorption capacity at initial pH of 7.92 and contact time of 273.6 min with 24 full-factorial central composite design and the maximum adsorption capacity was 273 mg/g. The adsorption process could be well defined by the Langmuir isotherm and the thermodynamic parameters, △G°(298 K),△H° and △S°, demonstrated shown that the sorption process of U(VI) onto HCC was feasible, spontaneous and endothermic in nature.
机译:通过在温和的温度下(180°C)水热反应制备新的水热交联壳聚糖(HCC),以降低其在酸溶液中的溶解度,并且在FT-IR和氢键作用下,水热反应中胺基几乎被保留。在pH 3溶液中的溶解率从89.6%降低到12.6%。使用24个全因子中心复合材料设计,使用响应表面方法讨论了初始pH,接触时间,初始浓度和温度对吸附容量的影响。在24个全成分中心复合设计下,HCC在初始pH值为7.92和接触时间为273.6 min时显示出最高的铀吸附容量,最大吸附容量为273 mg / g。 Langmuir等温线可以很好地定义吸附过程,热力学参数△G°(298 K),△H°和△S°证明U(VI)在HCC上的吸附过程是可行的,自发的。本质上是吸热的。

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