(566a) Facile Hydrophobic Modification Strategy on Hydrophilic Metal Organic Frameworks to Improve Volatile Organic Compounds Removal from Air and Aqueous Environments
AIChE Annual Meeting
2020
2020 Virtual AIChE Annual Meeting
Separations Division
Adsorbent Materials: MOFs
Thursday, November 19, 2020 - 8:00am to 8:15am
To enable efficient VOCs removal from air, the omnipresence of moisture must first be addressed by means of a systematically developed hydrophobic surface modification. Attempted strategies to improve hydrophobic character of MOFs include functionalising the MOF with fluoro-based linkers [5], co-synthesizing them with hydrophobic materials [6] or via an interfacial assembling pathway [7]. However, most reported methods are not suitable for industrial scalability. Therefore, by using a facile modification method, we will demonstrate that rationally designed MOFs have the upper hand for atmospheric VOCs capture over carbon-based adsorbents. Preliminary experiments indicate almost complete porosity retainment after the MOF has been modified.
To assert a realistic assessment, investigations will cover the sorptive behaviour of an environmentally benign MOF alongside its hydrophobically modified version towards a mixture of harmful representative airborne pollutants at ambient conditions (single species and competitive adsorption with co-existing pollutants), relative performance under varying humidity, desorption, breakthrough and dynamic reusability studies. Besides, the resulting water-repellent feature renders the modified MOF suitable for VOCs adsorption from aqueous phase systems too as supported from our ongoing experimental data. The outcomes from this in-depth materials characterization and development will provide excellent MOF protection from moisture and harsh operating conditions while offering a practical solution to many plaguing environmental issues.
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