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Photocatalytic degradation of azo dye assisted by Fe2O3/FeS2 fabricated on biomass-derived nanobiochar: Experimental and kinetic evaluation
- Sharma, Kritika;
- Sohal, Harvinder Singh;
- Kaur, Navneet;
- Kaur, Manvinder;
- Chopra, Lalita;
- ... Goswami, Lalit;
- 외 1명
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In the present study, the synthesis, characterization and successful application of magnetic coupled Fe2O3/FeS2 biochar composites from waste Citrus sinensis peels for photocatalytic degradation of crystal violet dye contaminated wastewater. The waste-derived photocatalyst was capable of degrading Crystal Violet (CrV) dye with an efficiency of 97.8% under UV light range at acidic pH (pH 3) in comparison to the iron nanoparticles alone. The degradation followed pseudo-first-order kinetic rate constant of 0.2005 min(-1). The high degradation efficiency of the catalyst was owing to the Fe2O3, FeS2 induced charge separation and NBC-accelerated electron transfer, which together led to the production of center dot OH radicals. The combined effect of Fe2O3 and FeS2, facilitated the charge separation with a band gap of 1.99 eV and a total surface area of 97.64 m(2)/g (electroactive surface area 1.957 cm(2)), further providing a plentiful number of active sites for adsorption and photo-activation. Degradation followed pseudo-first-order kinetics, and the photocatalyst remained highly active even in the presence of co-existing ions; thus, it was confirmed to be suitable for real wastewater applications. Further, the catalyst is highly stable and magnetically recoverable, and reused for 5 cycles without significant loss in activity.
키워드
- 제목
- Photocatalytic degradation of azo dye assisted by Fe2O3/FeS2 fabricated on biomass-derived nanobiochar: Experimental and kinetic evaluation
- 저자
- Sharma, Kritika; Sohal, Harvinder Singh; Kaur, Navneet; Kaur, Manvinder; Chopra, Lalita; Mehta, Ankush; Goswami, Lalit
- 발행일
- 2026-08
- 유형
- Article
- 권
- 362