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February 14, 2026Catalysis Letters0 citations

Seed-Assisted Hierarchical H-ZSM-5: Overcoming Diffusion Barriers for Efficient Recyclable Oleic Acid Isomerization to Commercial Isostearic Acid

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DLDawei LiPHPengpeng HuangMFMingming Fan

Key Points

  • This research focuses on enhancing isostearic acid production from oleic acid via improved catalytic performance.
  • Synthesis of hierarchical H-ZSM-5 zeolite using Silicalite-1 as a seed crystal
  • Characterization of the catalyst using XRD, SEM, BET, TGA, FT-IR, and Py-FTIR
  • Testing the efficiency of oleic acid isomerization over the new catalyst in multiple cycles
  • Achieved 87.3% selectivity and 71.1% yield in the first run
  • Maintained 82.1% selectivity and 55.6% yield after five reuse cycles
  • Purified isostearic acid to 83.4% purity with an acid value of 186.7 mg KOH/g

Abstract

Isostearic acid, a bio-based and environmentally friendly chemical, has attracted considerable attention because of its high value as an oleic acid derivative. The synthesis of isostearic acid via oleic acid isomerization over commercial H-ZSM-5 zeolites is limited by low yield and acid value, mainly due to diffusion constraints. To address this issue, a hierarchical-pore H-ZSM-5 zeolite (Meso-5) was synthesized using Silicalite-1(S-1) as a seed crystal to enhance diffusion and catalytic performance. The catalyst was comprehensively characterized by XRD, SEM, BET, TGA, FT-IR, and Py-FTIR. Meso-5 efficiently catalyzed the isomerization of oleic acid, attributed to its abundant Brønsted and Lewis acid sites whose synergistic interaction significantly promoted the formation of branched-chain products. The catalyst delivered a selectivity of 87.3% with a 71.1% yield in the first run, and even after five reuse cycles it maintained 82.1% selectivity with a 55.6% yield. Evidently, the hierarchical pore structure of the catalyst significantly facilitated the diffusion of oleic acid molecules and their isomerized intermediates, thereby enhancing the overall catalytic activity. The resulting isostearic acid was purified via a simple recrystallization procedure to a purity of 83.4% and an acid value of 186.7 mg KOH/g, both meeting the standards of commercial isostearic acid. These findings provide a robust basis for further catalyst optimization and scale-up toward industrial isostearic acid production. A tandem catalytic route combining ZSM-5-driven isomerization with Ni/C-catalyzed hydrogenation enabled the efficient conversion of oleic acid to isostearic acid. The hierarchical H-ZSM-5 structure enhanced branched-chain formation, ensuring high selectivity and yield toward the desired product

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/698fd276306598e8538deae0https://doi.org/10.1007/s10562-026-05321-8
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