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一种可持续的提取猴面包树油的方法:纯超临界CO₂优化。

A sustainable approach to extracting baobab oil: neat supercritical CO optimization.

作者信息

Gashi Fatlinda, Turner Charlotta, Mustafa Arwa, Nermark Fiona

机构信息

Lund University, Department of Chemistry, Centre for Analysis and Synthesis P. O. Box 124 Lund SE-22100 Sweden

出版信息

RSC Adv. 2025 Jun 25;15(27):21803-21810. doi: 10.1039/d5ra02490k. eCollection 2025 Jun 23.

Abstract

Baobab () seeds are a source of valuable lipids with notable nutritional and functional attributes. In response to the rising demand for sustainable, high-quality oils in the cosmetic and nutraceutical sectors, there is an increasing interest in environmentally friendly extraction techniques that maintain lipid bioactivity while reducing the use of toxic solvents. This study represents the first systematic optimization of baobab seed oil extraction utilizing neat supercritical CO without co-solvents, employing response surface methodology. Under the optimized conditions of 77 °C and a CO density of 0.8 g mL, the extracted oil yield was 9.3 ± 1.1 wt%. Although this yield was lower than that achieved through conventional hot pressing (37 wt%), the extracted oil exhibited a fatty acid profile comparable to that of warm-pressed oil, with substantial levels of oleic (37 wt%), linoleic (29 wt%), and palmitic (30 wt%) acids, suggesting higher selectivity for free fatty acids. Furthermore, the scCO extracted oil retained a solvent-free purity, indicating its suitability for cosmetic and nutraceutical applications. Kinetic studies indicated that solubility, rather than mass transfer, was the primary limiting factor, with an optimal extraction flow rate of 4 mL min over 25 minutes. These findings underscore the feasibility and selectivity of neat scCO extraction as an environmentally friendly alternative to traditional mechanical and solvent-based methods for obtaining high-quality baobab seed oil.

摘要

猴面包树种子是具有显著营养和功能特性的宝贵脂质来源。随着化妆品和营养保健品行业对可持续、高品质油脂需求的不断增加,人们对环境友好型提取技术的兴趣日益浓厚,这些技术在减少有毒溶剂使用的同时保持脂质生物活性。本研究首次利用纯超临界二氧化碳(无共溶剂),采用响应面法对猴面包树种子油提取进行系统优化。在77℃和二氧化碳密度为0.8 g/mL的优化条件下,提取的油产量为9.3±1.1 wt%。虽然该产量低于传统热压法(37 wt%),但提取的油脂肪酸组成与热压油相当,含有大量的油酸(37 wt%)、亚油酸(29 wt%)和棕榈酸(30 wt%),表明对游离脂肪酸具有更高的选择性。此外,超临界二氧化碳提取的油保持无溶剂纯度,表明其适用于化妆品和营养保健品应用。动力学研究表明,溶解度而非传质是主要限制因素,最佳提取流速为4 mL/min,提取时间为25分钟。这些发现强调了纯超临界二氧化碳提取作为一种环境友好型替代传统机械和溶剂法获取高品质猴面包树种子油的可行性和选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c219/12189197/2be01bc0cfa2/d5ra02490k-f1.jpg

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