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Novel and simple one-pot method for the synthesis of TiO_2 modified-CMK-3 applied in oxidative desulfurization of refractory organosulfur compounds

机译:一种新颖简单的一锅法合成TiO_2改性CMK-3的方法,用于难熔有机硫化合物的氧化脱硫

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摘要

Ti-CMK-3 carbon mesoporous was prepared using a novel synthesis method. This new method avoids the hard template synthesis used commonly. The precursors of silicon, carbon and titanium are incorporated together with the other components during the only step of the synthesis. The method developed here, allows reducing time and energy consumption by 60% and thus, the cost of the overall process of synthesis. Structural and textural characterization of the titanium modified-mesoporous carbon was performed by N-2 adsorption, XRD, UV-Vis-DRS, XPS, Raman spectroscopy and TEM. The characterization results indicated that the textural and structural properties of the material synthesized by the short time method are comparable with the properties of the material prepared by the hard template method. Ti modified-mesoporous carbon was synthesized by different methods in order to prepare catalysts to be tested in the oxidative desulfurization (ODS) of sulfur compounds. The catalyst prepared by the one-pot method is capable to oxidize high amount of sulfur (2000 ppm) in only 30 min of reaction time at 60-80 degrees C. The good performance and stability of the catalyst prepared using a novel synthesis method was attributed to well dispersed anatase nanospecies over the high area mesoporous carbon. Main advantage of the present study is the reduction of time and cost in the synthesis of the new material and the applicability for ODS reactions.
机译:采用新型合成方法制备了Ti-CMK-3介孔碳。这种新方法避免了通常使用的硬模板合成。在合成的唯一步骤中,将硅,碳和钛的前体与其他组分结合在一起。此处开发的方法可将时间和能源消耗减少60%,从而降低整个合成过程的成本。通过N-2吸附,XRD,UV-Vis-DRS,XPS,拉曼光谱和TEM对钛改性中孔碳进行结构和结构表征。表征结果表明,短时间法合成的材料的质地和结构性能与硬模板法制备的材料的性能相当。为了制备在硫化合物的氧化脱硫(ODS)中要测试的催化剂,通过不同的方法合成了Ti改性的中孔碳。通过一锅法制备的催化剂能够在60-80摄氏度下仅30分钟的反应时间内就能氧化大量的硫(2000 ppm)。采用新型合成方法制备的催化剂具有良好的性能和稳定性,归因于高面积介孔碳上分布良好的锐钛矿纳米物种。本研究的主要优点是减少了合成新材料的时间和成本,并适用于ODS反应。

著录项

  • 来源
    《Fuel》 |2018年第15期|498-507|共10页
  • 作者单位

    Univ Tecnol Nacl, Fac Reg Cordoba, Ctr Invest Nanociencia & Nanotecnol NANOTEC, Maestro Lopez & Cruz Roja Argentina, RA-5016 Cordoba, Argentina;

    Univ Tecnol Nacl, Fac Reg Cordoba, Ctr Invest Nanociencia & Nanotecnol NANOTEC, Maestro Lopez & Cruz Roja Argentina, RA-5016 Cordoba, Argentina;

    Univ Tecnol Nacl, Fac Reg Cordoba, Ctr Invest Nanociencia & Nanotecnol NANOTEC, Maestro Lopez & Cruz Roja Argentina, RA-5016 Cordoba, Argentina;

    Univ Tecnol Nacl, Fac Reg Cordoba, Ctr Invest Nanociencia & Nanotecnol NANOTEC, Maestro Lopez & Cruz Roja Argentina, RA-5016 Cordoba, Argentina;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Direct synthesis; Short time; TiO2; ODS; DBTs; Benzothiophene; Thiophene;

    机译:直接合成;短时间;TiO2;ODS;DBTs;苯并噻吩;噻吩;

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