4.8 Article

Highly efficient and reversible CO2 adsorption by amine-grafted platelet SBA-15 with expanded pore diameters and short mesochannels

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GREEN CHEMISTRY
卷 16, 期 8, 页码 4009-4016

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c4gc00832d

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  1. National Natural Science Foundation of China [21377036]
  2. Innovation Scientists Projects of Henan Province [092101510300]

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The ever-increasing concentration of CO2 in the atmosphere has raised great concerns over carbon capture techniques. To enhance the CO2 adsorption capacity, a kind of platelet SBA-15 with short channels and large pore diameters has been prepared and grafted with various aminosilanes (mono-, di-, and tri-amine). Thorough analysis of the support structure and sorbent performance was estimated through a combination of amine loading, CO2 adsorption capacity and CO2/N-2 selectivity. It was shown that compared to traditional fiber SBA-15, amine loading for these novel sorbents was increased from 3.56 to 5.90 mmol g(-1) (a 66% increase), and the CO2 adsorption capacity was increased from 1.23 to 2.67 mmol g(-1) (a 120% increase). Also, the selectivity of CO2/N-2 was remarkably enhanced from 37 to 169. The CO2 adsorption enthalpy reached 67 kJ mol(-1). Moreover, these sorbents are regenerable and exhibit good stabilities. Thus, this approach offers an alternative for the development of technological innovation towards efficient and reversible processes for carbon capture.

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