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Optimization of biodiesel production from Cucurbita pepo (pumpkin) seed oil using snail shell-derived CaO heterogeneous catalyst


Manir U. Abdullahi
Jamilu Usman
Ibrahim Muhammad
Jamila Baba Ali

Abstract

The commercialization of biodiesel is often constrained by the high cost of feedstocks and catalysts. This study presents a sustainable and cost-effective solution by valorizing two abundant waste resources: cucurbita pepo (pumpkin) seed oil and snail shells. The shells were calcined at 850 °C to synthesize a heterogeneous calcium oxide (cao) catalyst, which was comprehensively characterized (XRD, FTIR, SEM, EDX) and confirmed to be high-purity, mesoporous cao. Due to the oil's high free fatty acid (FFA) content (2.1 %), biodiesel production employed a two-step process: acid-catalyzed esterification followed by base-catalyzed transesterification. Optimization via Response Surface Methodology (RSM) established optimal conditions: a 6:1 methanol to oil molar ratio, 65 °C, 1.5 wt% catalyst, and a 60-minute reaction time, yielding 88.4 % biodiesel. The fuel properties including kinematic viscosity (4.39 mm²/s), cetane number (51.20), and flash point (166.5 °C) conformed fully with the ASTM standards. This work successfully demonstrates a viable waste to energy pathway, transforming agricultural and molluscan waste into a high quality, standards-compliant biodiesel.


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eISSN: 2705-3121
print ISSN: 2705-313X