Enhanced photodegradation of perfluorocarboxylic acids (PFCAs) using carbon quantum dots (CQDs) doped TiO<sub>2</sub> photocatalysts: A comparative study between exfoliated graphite and mussel shell-derived CQDs
Creators
- 1. Ege Univ, Dept Bioengn, TR-35040 Izmir, Turkiye
- 2. Ege Univ, Dept Chem Engn, TR-35040 Izmir, Turkiye
- 3. Ege Univ, Dept Biotechnol, TR-35040 Izmir, Turkiye
- 4. Ege Univ, Dept Environm Sci, TR-35040 Izmir, Turkiye
- 5. Penn State Abington, Engn & Sci Div, Abington, PA 19001 USA
Description
Remediation of perfluorocarboxylic acids (PFCAs) is crucial due to their widespread distribution, persistence, and harmful effects on aquatic life, especially as short-chain fluorinated compounds are increasingly used as substitutes after the global ban on long-chain PFCAs. This pioneering study explores the photodegradation of perfluorooctanoic acid (PFOA-C8) and several short-chain PFCAs using carbon quantum dot (CQD)-doped TiO2. We synthesized CQDs via two innovative methods: electrochemical exfoliation of graphite rods (Exfol.CQD) and a hydrothermal process using mussel shell biomass (MCQD). The structural and morphological properties of CQDs, TiO2, and CQD/TiO2 composites were characterized. Photodegradation tests showed that Exfol.CQD/TiO2 significantly improved PFOA degradation under visible light, achieving a twofold increase compared to pure TiO2. Degradation rates for C3-C6 short-chain PFCAs with Exfol.CQD/TiO2 ranged from 22 % to 40 %. PFOA decomposed stepwise into shorter-chain PFCAs and F- ions, maintaining excellent reusability after three cycles. In contrast, the MCQD/TiO2 photocatalyst needed further optimization due to decreased performance. Our research has shown that using pure water and ethanol as electrolytes facilitates the synthesis of high-purity CQDs without the need for chemical additives. This study sheds light on the previously underexplored area of photodegradation of PFCAs via CQD/TiO2 composites, highlighting their potential applications in wastewater treatment.
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