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Updated: Mar 3, 2026

Laboratory Production of Biofuels and Biochemicals from a Rapeseed Oil through Catalytic Cracking Conversion
Published on: September 2, 2016
Isomerization-Cracking of Bio-Octadecane to Sustainable Aviation Fuel on P-Modulated NixPy/SAPO-11
Xiaokang Yue1, Wenzheng Chen1, Qingxin Guan1
1College of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), Nankai University, Tianjin, China.
Abstract:
The inherent diversity and complex composition of vegetable oils present significant challenges to elucidating the mechanistic pathways involved in sustainable aviation fuel (SAF, C8-C16) production. Octadecane emerges as a critical model compound for probing SAF synthesis mechanisms due to its structural relevance to vegetable oil derivatives. In this work, we establish P-modulated Ni2P1/SAPO-11 for SAF production using octadecane as a representative feedstock. Comparative analysis reveals that the Ni2P1-based catalyst achieves superior C8-C16 yield (69.1%) and i/n ratio (4.5) compared with conventional Ni/SAPO-11, attributable to its optimized charge distribution by P species. Through comprehensive characterization analyses, we demonstrate that the P-modulated Ni active center critically governs the balance between isomerization-cracking reactions. Detailed characterization of the Ni2P1/SAPO-11 clarified the effect of the introduction of P on the charge distribution and acidic properties of Ni/SAPO-11. The resulting SAF product meets critical ASTM D7566 specifications, particularly excelling in low-temperature fluidity (freezing point < -53°C). This work provides valuable insights into acid site engineering for biomass-derived alkane upgrading.
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