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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 >Synthesis, characterization, and application of polystyrene adsorbents containing tri-n-butylphosphate for solid-phase extraction of uranium (VI) from aqueous nitrate solutions
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Synthesis, characterization, and application of polystyrene adsorbents containing tri-n-butylphosphate for solid-phase extraction of uranium (VI) from aqueous nitrate solutions

机译:含磷酸三正丁酯的聚苯乙烯吸附剂的合成,表征和应用,用于从硝酸盐水溶液中固相萃取铀(VI)

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Polystyrene adsorbent for solid-phase extraction of U(VI) was developed through in situ copolymerization of styrene and divinylbenzene in the presence of trin-butylphosphate and its magnetic form was obtained by addition of fine particles of magnetite in an amount of 15 wt% of the total monomers used. The obtained adsorbents were characterized by means of scanning electron microscope, FTIR spectroscopy and X-ray powder diffraction. The adsorption behavior of U(VI) from aqueous nitrate solutions onto non-magnetic adsorbent RI (St-DVB-TBP) and its magnetic form RII (St-DVB-TBP-Fe_3O_4) at different experimental condition was studied using batch method. The adsorption results were found to fit Langmuir model. The magnetite-containing adsorbent showed higher uptake values relative to the corresponding magnetite-free one. The adsorption of U(VI) onto RI followed pseudo-first order kinetics whereas the adsorption onto RII followed pseudo-second order. Thermodynamic studies revealed that the adsorption process was a spontaneous exothermic reaction. Desorption of the loaded U(VI) was carried out using distilled water and found to be 97 and 93 % for RI and RII, respectively.
机译:在磷酸正丁酯的存在下,通过苯乙烯与二乙烯基苯的原位共聚,开发了用于固相萃取U(VI)的聚苯乙烯吸附剂,并通过添加15%(重量)的磁铁矿细颗粒获得了其磁性形式。使用的总单体。通过扫描电子显微镜,FTIR光谱和X射线粉末衍射对获得的吸附剂进行表征。采用间歇法研究了硝酸盐水溶液中U(VI)在非磁性吸附剂RI(St-DVB-TBP)及其磁性形式RII(St-DVB-TBP-Fe_3O_4)上的吸附行为。发现吸附结果符合Langmuir模型。相对于相应的不含磁铁矿的吸附剂,含磁铁矿的吸附剂显示出更高的吸收值。 U(VI)在RI上的吸附遵循拟一阶动力学,而RII上的吸附则处于拟二阶动力学。热力学研究表明,吸附过程是自发的放热反应。使用蒸馏水对负载的U(VI)进行解吸,发现RI和RII的解吸分别为97%和93%。

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