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Desorption-dominated synthesis of CuO/SBA-15 with tunable particle size and loading in supercritical CO2

机译:具有可调谐粒度和超临界CO2中的CuO / SBA-15的解束缚合成

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摘要

Here, we present a novel method to control the size of CuO nanoparticles (NPs) and Cu loading in SBA -15 via fast desorption of supercritical CO2 (scCO2). After calcination, the average size of the CuO NPs (6.47 +/- 2.89 similar to 2.18 +/- 0.97 nm) decreased with the increase of the depressurization rate (20-14 MPa, 50 degrees C) from transmission electron microscopy, and the x-ray diffraction results also indicated the decrement of the average particle size (8.6 similar to 4.3 nm by a Scherrer equation). Two reduction peaks situated at 195 C and 220 degrees C were found from the temperature-programmed reductions with H2 profiles, and the intensity of the low-temperature peak increased with increasing the rate for a profile. The hydrogenation of dimethyl oxalate (DMO) to ethylene glycol (EG) was selected to evaluate the catalytic activity of the as -prepared sample. The reaction was conducted at p = 3.0 MPa, T = 200 C, H2/DMO = 120, the weight hourly space velocity = 1.2 h(-1), and the EG selectivity remained at about 90% for over 100 h. The fast desorption of scCO2 caused mechanical perturbations and crystallization of the adsorbed salt ions on the supports, decreasing the particle size and increasing Cu loading (8-12 wt%).
机译:这里,我们通过快速解吸超临界CO 2(SCCO2)来提出一种新的方法来控制SBA -15中CuO纳米颗粒(NPS)和Cu负载的尺寸。煅烧后,CuO NPS(6.47 +/- 2.89类似于2.18 +/- 0.97nm)的平均尺寸随着透射电子显微镜的减压率(20-14MPa,50℃)的增加而降低,以及X射线衍射结果还表明平均粒度(8.6类似于Scherrer方程的4.3nm)的减少。从带有H2型材的温度编程的降低,发现位于195c和220℃的两个减少峰,并且随着轮廓的速率,低温峰的强度增加。选择草酸二甲酯(DMO)与乙二醇(例如)的氢化以评价作为 - 制备样品的催化活性。反应在P = 3.0MPa,T = 200℃,H 2 / DMO = 120,重量小时空间速度= 1.2h(-1),并且例如选择性在约90%以上超过100小时。 SCCO2的快速解吸导致载体上吸附的盐离子的机械扰动和结晶,降低粒度和增加Cu负载(8-12wt%)。

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  • 来源
    《Nanotechnology》 |2020年第9期|共7页
  • 作者单位

    Dalian Univ Technol Sch Chem Engn State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Dalian Univ Technol Sch Chem Engn State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Chinese Acad Sci Dalian Inst Chem Phys State Key Lab Catalysis Dalian 116023 Peoples R China;

    Dalian Univ Technol Sch Chem Engn State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Dalian Univ Technol Sch Chem Engn State Key Lab Fine Chem Dalian 116024 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    supercritical CO2; fast desorption; crystallization;

    机译:超临界二氧化碳;快速解吸;结晶;

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