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February 5, 20260 citations

Mesoporous Bifunctional K

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NTNor Badariah TalibKKKhairil Juhanni Abd KarimNSNurrulhidayah Salamun

Key Points

  • The aim is to prepare and evaluate a mesoporous K₂O catalyst for biodiesel production.
  • Prepared mesoporous K₂O using chitosan as a template.
  • Dissolved chitosan in acetic acid and mixed it with potassium nitrate.
  • Induced solid bead formation using sodium hydroxide solution.
  • Dried and calcined the beads at 700 °C for 2 hours.
  • Analyzed structure and functionality through SEM and acidity/basicity measurements.
  • Achieved a maximum biodiesel yield of 95.26%.
  • Confirmed a total basicity of 1.346 mmol/g and total acidity of 1.515 mmol/g.
  • SEM analysis revealed a dense, porous structure conducive to catalysis.

Abstract

Mesoporous metal oxides are highly effective catalysts for biodiesel production due to their large surface area and adjustable pore structures, which enhance mass transfer and catalytic activity. In this study, a mesoporous K₂O catalyst was prepared using chitosan, a natural polymer, as a template. Chitosan was first dissolved in a mild acetic acid solution and mixed with potassium nitrate at an optimized ratio. The mixture was stirred and then added dropwise into a sodium hydroxide solution, inducing the formation of solid spherical beads through chemical bonding. The beads were then dried, and calcined at 700 °C for 2 h. This calcination step removed the organic chitosan, creating a porous structure, while converting potassium compounds into active catalytic species including K₂O, K₂O₂, and K₂CO₃·1.5H₂O, which also helped maintain the bead morphology. SEM analysis revealed a dense, porous structure, while the catalyst’s bifunctional nature was confirmed by a total basicity of 1.346 mmol/g and total acidity of 1.515 mmol/g. The optimised synthesis conditions yielded a maximum biodiesel yield of 95.26%, demonstrating the catalyst’s potential for efficient biodiesel production.

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Cite This Study

Talib et al. (2025) studied this question.

synapsesocial.com/papers/6984343ff1d9ada3c1fb23a1https://doi.org/10.1051/bioconf/202518901022/pdf
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Mesoporous Bifunctional K2O Catalyst Using Chitosan Template for Biodiesel Production2025
  2. 2Preparation of KI/KIO3/Methoxide Kaolin Catalyst and Performance Test of Catalysis in Biodiesel Production2024 · 2 citations
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  4. 4Chitosan-supported calcium hydroxide hybrid material as new, efficient, and recyclable catalyst for biodiesel production2024 · 14 citations
  5. 5Sulphonated Chitosan‐Based Hydrochar as a Potential Catalyst to Produce Biodiesel from Oleic Acid2025