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Novel Micro- and Mesoporous Composite Molecular Sieve Assembled by Zeolite L Nanocrystal and Its Performance for the Hydrodesulfurization (HDS) of Fluid Catalytic Cracking (FCC) Gasoline

机译:沸石L纳米晶体组装的新型微孔和中孔复合分子筛及其对流化催化裂化汽油加氢脱硫的性能

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摘要

A novel micro- and mesoporous composite molecular sieve (denoted as LMC) was synthesized by using the nanocrystal clusters of zeolite L as the precursor and a cation surfactant cetyltrimethylammonium bromide (CTAB) as the template. The physicochemical properties of samples were characterized by means of X-ray diffraction (XRD), nitrogen-adsorption isotherms, scanning electron microscopy (SEM), transmission electron microscopy (TEM), ~(27)A1 and ~(29)Si magic angle spinning nuclear magnetic resonance (MAS NMR), Fourier transform infrared spectroscopy (FTIR), and Fourier transform infrared spectroscopy of pyridine adsorption (Py-FTIR). The results showed that composite molecular sieve LMC was synthesized by the self-assembly of zeolite L nanocrystal clusters under the template effect of CTAB. In addition, surface area, pore volume, and pore size of LMC significantly increased in comparison to those of conventional microporous zeolite L. The results measured by Py-FTIR showed that LMC had an appropriate acid amount and acid distribution. For evaluation of fluid catalytic cracking (FCC) gasoline hydrodesulfurization (HDS), the catalyst that introduced material LMC exhibited the excellent performances of desulfurization, isomerization, aromatization, olefin retention, and preserving the research octane number (RON) value compared to the catalyst that introduced ordinary microporous zeolite L or mesoporous Al-MCM-41 and used bare alumina as the support. The excellent catalytic performances of the catalyst should be attributed to the appropriate acidity distribution and open pore structure of material LMC.
机译:以沸石L的纳米晶簇为前体,以阳离子表面活性剂溴化十六烷基三甲基铵(CTAB)为模板,合成了新型的微孔和中孔复合分子筛(简称LMC)。通过X射线衍射(XRD),氮吸附等温线,扫描电子显微镜(SEM),透射电子显微镜(TEM),〜(27)A1和〜(29)Si幻角来表征样品的理化性质核磁共振(MAS NMR),傅里叶变换红外光谱(FTIR)和吡啶吸附的傅里叶变换红外光谱(Py-FTIR)。结果表明,在CTAB的模板作用下,通过分子筛L分子簇的自组装合成了复合分子筛LMC。另外,与常规的微孔沸石L相比,LMC的表面积,孔体积和孔径显着增加。通过Py-FTIR测量的结果表明,LMC具有适当的酸量和酸分布。为了评估流化催化裂化(FCC)汽油加氢脱硫(HDS),与催化剂相比,引入材料LMC的催化剂表现出优异的脱硫,异构化,芳构化,烯烃保留性能,并保留研究辛烷值(RON)值。引入普通的微孔沸石L或中孔Al-MCM-41,并使用裸露的氧化铝作为载体。催化剂的优异催化性能应归因于材料LMC的适当酸度分布和开孔结构。

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  • 来源
    《Energy & fuels》 |2010年第julaaauga期|p.3764-3771|共8页
  • 作者单位

    State Key Laboratory of Heavy Oil Processing,The Key Laboratory of Catalysis, China National Petroleum Corporation, China University of Petroleum, Beijing 102249, People's Republic of China;

    State Key Laboratory of Heavy Oil Processing,The Key Laboratory of Catalysis, China National Petroleum Corporation, China University of Petroleum, Beijing 102249, People's Republic of China;

    State Key Laboratory of Heavy Oil Processing,The Key Laboratory of Catalysis, China National Petroleum Corporation, China University of Petroleum, Beijing 102249, People's Republic of China;

    State Key Laboratory of Heavy Oil Processing,The Key Laboratory of Catalysis, China National Petroleum Corporation, China University of Petroleum, Beijing 102249, People's Republic of China;

    The Key Laboratory of Catalysis, China National Petroleum Corporation, China University of Petroleum, Beijing 102249, People's Republic of China;

    Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan 430071, People's Republic of 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);
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  • 正文语种 eng
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