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Adsorption of platinum(IV) and palladium(II) from aqueous solution by thiourea-modified chitosan microspheres

机译:硫脲改性的壳聚糖微球吸附水溶液中的铂(Ⅳ)和钯(Ⅱ)

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摘要

The chitosan microparticles were prepared using the inverse phase emulsion dispersion method and modified with thiourea (TCS). TCS was characterized by scanning electron microscope (SEM), the Fourier transform infrared (FT-IR) spectra, sulfur elemental analysis, specific surface area and pore diameter. The effects of various parameters, such as pH, contact time, initial concentration and temperature, on the adsorption of Pt(IV) and Pd(II) by TCS were investigated. The results showed that the maximum adsorption capacity was found at pH 2.0 for both Pt(IV) and Pd(II). TCS can selectively adsorb Pt(IV) and Pd(II) from binary mixtures with Cu(II), Pb(II), Cd(II), Zn(II), Ca(II), and Mg(II). The adsorption reaction followed the pseudo-second-order kinetics, indicating the main adsorption mechanism of chemical adsorption. The isotherm adsorption equilibrium was well described by Langmuir isotherms with the maximum adsorption capacity of 129.9 mg/g for Pt(IV) and 112.4 mg/g for Pd(II). The adsorption capacity of both Pt(IV) and Pd(II) decreased with temperature increasing. The negative values of enthalpy (△H°) and Gibbs free energy (△G°) indicate that the adsorption process is exothermic and spontaneous in nature. The adsorbent was stable without loss of the adsorption capacity up to at least 5 cycles and the desorption efficiencies were above 95% when 0.5 M EDTA-0.5 M H_2SO_4 eluent was used. The results also showed that the preconcentration factor for Pt(IV) and Pd(II) was 196 and 172, respectively, and the recovery was found to be more than 97% for both precious metal ions.
机译:使用反相乳液分散法制备壳聚糖微粒,并用硫脲(TCS)改性。通过扫描电子显微镜(SEM),傅立叶变换红外光谱(FT-IR),硫元素分析,比表面积和孔径对TCS进行了表征。研究了pH,接触时间,初始浓度和温度等各种参数对TCS吸附Pt(IV)和Pd(II)的影响。结果表明,在pH 2.0时,Pt(IV)和Pd(II)都具有最大吸附容量。 TCS可以从与Cu(II),Pb(II),Cd(II),Zn(II),Ca(II)和Mg(II)的二元混合物中选择性吸附Pt(IV)和Pd(II)。吸附反应遵循拟二级动力学,表明了化学吸附的主要吸附机理。 Langmuir等温线很好地描述了等温线的吸附平衡,Pt(IV)的最大吸附容量为129.9 mg / g,Pd(II)的最大吸附容量为112.4 mg / g。 Pt(IV)和Pd(II)的吸附量均随温度升高而降低。焓(△H°)和吉布斯自由能(△G°)的负值表明吸附过程是放热的,自然而然的。当使用0.5 M EDTA-0.5 M H_2SO_4洗脱液时,该吸附剂稳定且不会损失至少5个循环,并且解吸效率高于95%。结果还表明,Pt(IV)和Pd(II)的预富集系数分别为196和172,两种贵金属离子的回收率均超过97%。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2009年第1期|439-446|共8页
  • 作者单位

    Key Laboratory of Nuclear Resources and Environment (Ministry of Education), East China Institute of Technology, Xuefu Road No. 56. Fuzhou, Jiangxi 344000, PR China;

    Key Laboratory of Nuclear Resources and Environment (Ministry of Education), East China Institute of Technology, Xuefu Road No. 56. Fuzhou, Jiangxi 344000, PR China;

    Key Laboratory of Nuclear Resources and Environment (Ministry of Education), East China Institute of Technology, Xuefu Road No. 56. Fuzhou, Jiangxi 344000, PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    chitosan microspheres; platinum(IV); palladium(II); adsorption; thiourea;

    机译:壳聚糖微球铂(IV);钯(II);吸附硫脲;

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