Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/10118
Title: Enhanced microalgal hydrogen production subsisting on visible light TiO2 nanotubes photocatalyst pre-treated palm kernel expeller
Authors: Sahrin, Nurul Tasnim 
Ardo, Fatima Musa 
Suparmaniam, Uganeeswary 
Ramli, Anita 
Sin, Jin Chung 
Lam, Sze Mun 
Oh, Wen Da 
Chidi, Boredi Silas 
Ng, Huisuan 
Shahid, Muhammad Kashif 
Tawfeek, Ahmed M. 
Khoo, Kuan Shiong 
Lim, Jun Wei 
Keywords: TiO2 nanotubes;Photocatalyst;Microalgae;Green hydrogen production;Fermentation;Palm kernel expeller
Issue Date: 2024
Publisher: Elsevier
Source: Sahrin, N.T. et al. 2024. Enhanced microalgal hydrogen production subsisting on visible light TiO2 nanotubes photocatalyst pre-treated palm kernel expeller. International Journal of Hydrogen Energy, 54: 1307-1318. [https://doi.org/10.1016/j.ijhydene.2023.12.099]
Journal: International Journal of Hydrogen Energy 
Abstract: The present study investigated the application of photocatalytic process using TiO2 nanotubes (NTs) photocatalyst as an effective pre-treatment method for palm kernel expeller (PKE) in increasing its biodegradability to enhance the microalgal hydrogen production via dark fermentation. A series of TiO2 NTs photocatalysts were synthesized via employing electrochemical anodization of Ti foil at various voltages each in different types of electrolytes (choline chloride-ethylene glycol (ChCl-EG), choline chloride-urea (ChCl-U), choline chloride-glycerol (ChCl-Gly)). Increasing trend of average NTs diameters at 26.14 ± 1.30, 73.01 ± 1.94 and 122.00 ± 13.32 nm was observed for 25, 30 and 35 V in synthesizing TiO2 NTs using suitable ChCl-EG electrolyte, respectively. The high 35 V had resulted in noticeable pore ruptures within this TiO2 NTs photocatalyst. The PKE pre-treated by TiO2 NTs photocatalyst anodized at optimum 30 V in ChCl-EG electrolyte had demonstrated the highest releases of biochemical oxygen demand (BOD5) and soluble chemical oxygen demand (SCOD) concentrations at 594 and 607 mg/L, respectively. Moreover, the microalgal efficiency of BOD5 conversion and hydrogen yield were also consistently maintained from third cycle of TiO2 NTs photocatalyst's reutilizations, signifying the stability of TiO2 NTs photocatalyst.
URI: http://hdl.handle.net/11189/10118
ISSN: 0360-3199
1879-3487 (Online)
DOI: https://doi.org/10.1016/j.ijhydene.2023.12.099
Appears in Collections:Appsc - Journal Articles (not DHET subsidised)

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