4.7 Article

Mesoporous Cu-SBA-15 with highly ordered porous structure and its excellent CO2 adsorption capacity

期刊

MICROPOROUS AND MESOPOROUS MATERIALS
卷 267, 期 -, 页码 134-141

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.micromeso.2018.03.024

关键词

Cu-SBA-15; High pressure; CO2 adsorption; Isosteric heat; Doughnut morphology

资金

  1. Australian Research Council [FT100100970, DP150104828, DP170104478]
  2. SABIC
  3. Australian Research Council [FT100100970] Funding Source: Australian Research Council

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CuOx loaded mesoporous silicas with highly ordered mesoporous structures (Cu-SBA-15) and different silicon to copper ratios were synthesized by using P123 as a template under mild acidic conditions. XRD and N-2 sorption results confirm the well-ordered 2D mesoporous structure with a high specific surface area and a large pore volume. The pore diameter of Cu-SBA-15 increases from 7.9 to 8.5 nm with a concomitant decrease of the specific surface area from 865 to 802 m(2)/g as the amount of Cu in the silica framework is increased. We also show the introduction of Cu in the SBA-15 makes a significant change in the final morphology, which changes from rod to curve shaped morphology when the amount of Cu in the SBA-15 is increased. XRD results confirm the presence of CuO nanoparticles inside the nanochannels of SBA-15. The materials were used as adsorbents for high pressure CO2 adsorption at different temperatures -5, 0, 10 and 25 degrees C and pressures up to 30 bar. The highest CO2 adsorption of 27.6 mmol/g at -5 degrees C was achieved for Cu-SBA-15 sample with a n(si/cu) ratio of 5 and was found to be much higher than that of pure SBA-15 silica under similar conditions, illustrating the role of CuO doping in the SBA-15 framework.

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