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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Polymeric beads containing Cyanex 923 for actinide uptake from nitric acid medium: Studies with uranium and plutonium
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Polymeric beads containing Cyanex 923 for actinide uptake from nitric acid medium: Studies with uranium and plutonium

机译:含Cyanex 923的聚合物珠,可从硝酸介质中吸收act系元素:铀和p的研究

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Conventional phase inversion technique has been successfully applied for the preparation of the solid phase extractant (SPE), Cyanex 923 loaded polymer beads. Two types of polymer beads prepared by blending Polyetherether ketone with card (PEEKWC)/DMF with 5% Cyanex 923 (SPE-I, av bead size: 900μm) and 10% Cyanex 923(SPE-II, av. bead size: 1100μm) were evaluated for the uptake of actinide ions. The polymer beads were characterized by various physical methods such as thermal analysis, surface morphology analysis by SEM, EDAX techniques, etc. The polymer beads were used for the experiments involving the uptake of both U(VI) and Pu(IV) at tracer scale and U(VI) at milli molar concentrations from nitric acid feeds. The actinide ion uptake studies involved kinetics of metal ion sorption, adsorption isotherms, and column studies. The metal sorption capacities for U(VI) at 3M HNO3 were found to be 38.8±1.9mg and 54.5±1.7mg per g of SPE-I and SPE-II, respectively. The sorption isotherm analysis with Langmuir, D-R and Freundlisch isotherms indicated chemisorption monolayer mechanism. Column studies were also carried out using 4.5mL bed volume columns containing about 0.4 and 0.45g of SPE-I and SPE-II, respectively. The breakthrough profiles were obtained for U(VI) and the elution profiles were obtained using 1M Na_2CO_3 as the eluent.
机译:常规的相转化技术已成功应用于制备固相萃取剂(SPE),负载Cyanex 923的聚合物珠粒。通过将聚醚醚酮与卡片(PEEKWC)/ DMF与5%Cyanex 923(SPE-I,平均珠子尺寸:900μm)和10%Cyanex 923(SPE-II,平均珠子尺寸:1100μm)混合来制备两种类型的聚合物珠对系离子的吸收进行了评估。通过各种物理方法(例如热分析,通过SEM的表面形态分析,EDAX技术等)对聚合物珠进行了表征。该聚合物珠用于涉及示踪规模的U(VI)和Pu(IV)吸收的实验。硝酸进料中浓度为毫摩尔浓度的U(VI)。 act系元素离子吸收研究涉及金属离子吸附动力学,吸附等温线和色谱柱研究。发现每克SPE-I和SPE-II对U(VI)在3M HNO3的金属吸附能力分别为38.8±1.9mg和54.5±1.7mg。用Langmuir,D-R和Freundlisch等温线进行的吸附等温线分析表明了化学吸附的单层机理。还使用4.5mL床体积的色谱柱进行色谱柱研究,其中分别包含约0.4和0.45g的SPE-I和SPE-II。获得了U(VI)的突破特征,使用1M Na_2CO_3作为洗脱剂获得了洗脱特征。

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