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Characteristics of Purified Horse Oil by Supercritical Fluid Extraction with Different Deodorants Agents.

AnnekeHye-Jin KimDongwook KimDong-Jin ShinKyoung-Tag DoChang-Beom YangSeong-Won JeonJong-Hyun JungAera Jang
Published in: Food science of animal resources (2024)
This study investigated the impact of activated carbon, palm activated carbon, and zeolite on horse oil (HO) extracted from horse neck fat using supercritical fluid extraction with deodorant-untreated HO (CON) as a comparison. The yield and lipid oxidation of deodorant untreated HO (CON) were not significantly affected by the three deodorants. However, deodorant-treated HOs exhibited significantly elevated levels of α-linolenic acid (C18:3n3) and eicosenoic acid (C20:1n9) compared to CON (p<0.05), while other fatty acids remained consistent. Zeolite-purified HO demonstrated significantly lower levels of volatile organic compounds (VOCs) than other treatments (p<0.05). Remarkably, zeolite decreased the concentration of pentane, 2,3-dimethyl (gasoline odor), by over 90%, from 177.17 A.U. ×10 6 in CON to 15.91 A.U. ×10 6 . Zeolite also effectively eliminates sec-butylamine (ammonia and fishy odor) as compared to other deodorant-treated HOs (p<0.05). Additionally, zeolite reduced VOCs associated with the fruity citrus flavor, such as nonanal, octanal, and D-limonene in HO (p<0.05). This study suggests that integrating zeolite in supercritical fluid extraction enhances HO purification by effectively eliminating undesirable VOCs, presenting a valuable approach for producing high-quality HO production in the cosmetic and functional food industries.
Keyphrases
  • fatty acid
  • pi k akt
  • adipose tissue
  • mass spectrometry
  • case report
  • ionic liquid
  • newly diagnosed
  • single molecule
  • atomic force microscopy