Publication: Catalytic performance of bulk and La2O3-supported strontium oxide as a novel bifunctional catalyst for biodiesel production from sunflower oil
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TAYLOR & FRANCIS INC
DOI
10.1080/15435075.2026.2638985
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Abstract
A SrO/La2O3 catalyst was prepared by physical ball-milling to improve stability and reusability in biodiesel production via transesterification. Characterization by XRD, FTIR, FESEM-EDX, and BET confirmed the catalyst properties. Optimized reaction conditions (Me: Oil ratio of 12:1, 1 wt% catalyst, 65 degrees C, 30 min) using the 3 SrO/La2O3 catalyst calcined at 800 degrees C achieved a maximum FAME yield of 98.6%. The catalyst maintained good reusability, with yield decreasing to 87% after three cycles. Biodiesel quality met ASTM D 6751 standards as confirmed by GC-MS and FTIR analysis. This work demonstrates the potential of SrO/La2O3 as a promising catalyst for efficient biodiesel synthesis.
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INTERNATIONAL JOURNAL OF GREEN ENERGY
ISSN
1543-5075
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Keywords
Biodiesel , biofuel , bifunctional , strontium oxide , transesterification , sunflower oil , WASTE COOKING OIL , HETEROGENEOUS CATALYST , METAL-OXIDE , DIMETHYL CARBONATE , OPTIMIZATION , SRO , COMBUSTION , ESTERIFICATION , SRO-ZNO/AL2O3 , Thermodynamics , Science & Technology - Other Topics , Energy & Fuels