SiO2/TiO2SiO2/TiO2SiO2/TiO2 was evaluated by using batch static adsorption experiments by the kinetic, isotherm, and thermodynamic analyses. The experimental results show that the adsorption process follows a pseudo-second-order kinetic model and that the experimental data are well fitted with the Freundlich isothermal equation. The thermodynamic analysis indicate that the adsorption process is endothermic in nature. Meanwhile, it was further demonstrated that the prepared adsorbent has high specificity for dibenzothiophene. The approach we described would provide a new opportunity in the deep desulfurization field." />
Development of surface imprinting polymer as a selective adsorbent for adsorbing and separating dibenzothiophene from fuel oil
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  • 作者:Wenming Yang ; Lukuan Liu ; Zhiping Zhou ; Yang Cao…
  • 关键词:Surface imprinting polymer ; Titanium dioxide ; Dibenzothiophene ; Desulfurization ; Adsorbent
  • 刊名:Research on Chemical Intermediates
  • 出版年:2015
  • 出版时间:April 2015
  • 年:2015
  • 卷:41
  • 期:4
  • 页码:2619-2633
  • 全文大小:491 KB
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  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Catalysis
    Physical Chemistry
    Inorganic Chemistry
  • 出版者:Springer Netherlands
  • ISSN:1568-5675
文摘
A novel surface molecular imprinting approach was used to synthesize a desulfurization imprinting polymer (MIP-a href='/search?dc.title=SiO&facet-content-type=ReferenceWorkEntry&sortOrder=relevance' class='reference-link webtrekk-track' gaCategory="Internal link" gaLabel="SiO" gaAction="reference keyword">SiO2/TiO2). Its structure and characters were investigated by using infrared spectrophotometry, X-ray diffraction, field emission scanning electron microscopy, and nitrogen sorption measurements. The structural superiority of MIP-a href='/search?dc.title=SiO&facet-content-type=ReferenceWorkEntry&sortOrder=relevance' class='reference-link webtrekk-track' gaCategory="Internal link" gaLabel="SiO" gaAction="reference keyword">SiO2/TiO2 was reflected by the above measurements. The adsorption behavior of MIP-a href='/search?dc.title=SiO&facet-content-type=ReferenceWorkEntry&sortOrder=relevance' class='reference-link webtrekk-track' gaCategory="Internal link" gaLabel="SiO" gaAction="reference keyword">SiO2/TiO2 was evaluated by using batch static adsorption experiments by the kinetic, isotherm, and thermodynamic analyses. The experimental results show that the adsorption process follows a pseudo-second-order kinetic model and that the experimental data are well fitted with the Freundlich isothermal equation. The thermodynamic analysis indicate that the adsorption process is endothermic in nature. Meanwhile, it was further demonstrated that the prepared adsorbent has high specificity for dibenzothiophene. The approach we described would provide a new opportunity in the deep desulfurization field.

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