Uppsats

The usage of Metal Organic Frameworks for the removal of PFAS from water

Kandidat-uppsats

Chalmers tekniska högskola / Institutionen för kemi och kemiteknik

Publicerad: 2026

Språk: Svenska

Sammanfattning

This project encompases the green synthesis of two Metal Organic Frameworks (MOFs),along with an evaluation of their efficacy to remove PFAS from water. The included MOFsare UiO-66, synthesized in propylene carbonate (PC), and MOF-808, synthesized in water,alongwithperflourooctanoic acid(PFOA),andtriflouroaceticacid(TFA)asthechosenPFASsubstances. To enable this, multiple methods of analysis and characterization are used.With the premiss of previously published papers, solvothermal synthetic methods are developed. PXRD, TGA and FTIR are utilized as characterization methods along with gas sorption, where the BET-theory was used to estimate the apparent surface area of the MOFs.The data from the PXRD and the FTIR are similar to the simulated data for both UiO-66 andMOF-808. However, for UiO-66, the TGA and the apparent surface area show deviations.Simultaneously, the MOFs’affinityforPFASisevaluatedthroughsorbtionexperimentswithprepared stock solutions of PFAS. To study this, a 19F-NMR is used, with which the sorptioncapacity and kinetics are determined. To evaluate these, both the amount of MOF to PFAS,along with the sorption over different time intervals, are included.Evaluating the PFAS sorption experiments,MOF-808exhibitsthebestaffinityforbothPFOAandTFA,removingapproximately89%and58%respectively.Saturationisreachedwithin10min. UiO-66 also shows good sorption, though with smaller capacity, removing approximately 86% of PFOA and 36% of TFA, with saturation reached within 20 min. However, UiO-66reaches saturation faster for PFOA. The sorption follows pseudo-second-order kinetics.The roles of the solvents are discussed further with respect to the results, and thus possible areas of improvement of the project. Additionally, the reusability of recovered MOFmaterials is discussed as a potential direction for future studies.

Information

Lärosäte / institution
Chalmers tekniska högskola / Institutionen för kemi och kemiteknik
Publiceringsdatum
2026
Uppsatstyp
Kandidat-uppsats
Språk
Svenska