4.1 Article

Adsorption of gases on small-pore aluminum bisphosphonate MOF MIL-91(Al)

Journal

JOURNAL OF CHEMICAL SCIENCES
Volume 133, Issue 4, Pages -

Publisher

INDIAN ACAD SCIENCES
DOI: 10.1007/s12039-021-01964-9

Keywords

MIL-91(Al); Small pore MOF; Gas adsorption; CO2 selectivity; Ideal adsorbed solution theory

Funding

  1. Department of Science and Technology (SERB), India [CRG/2019/000387]

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The small pore bisphosphonate MIL-91(Al) shows excellent selectivity for CO2 with moderate enthalpy of adsorption, making it a promising adsorbent for gas separation applications.
In this work, the adsorption isotherms of small pore bisphosphonate MOF MIL-91(Al) was evaluated for permanent gases viz., CO2, CO, N-2, CH4, C2H6 and C3H8. Gravimetric adsorption measurements were performed at three different temperatures 294, 318, 358 K and a wide range of pressures. For all measured gases type-1 adsorption isotherm was observed. Isotherms were modeled using the Virial equation and calculated fit parameters were used to calculate the enthalpy of adsorption. CO2 exhibits moderate enthalpy of adsorption along with excellent selectivity on MIL-91 (Al), thereby making it an attractive adsorbent for gas separation applications. Graphic abstract A small pore bisphosphonate MIL-91(Al) is one of the few porous phosphonate MOFs studied so far on adsorption. Ideal Adsorbed Solution Theory predictions show that CO2 exhibits excellent selectivity over CO, CH4 and N-2, making it an attractive adsorbent for gas separation applications.

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