Key Laboratory of Forest Plant Ecology, Ministry of Education, Northeast Forestry University, Harbin 150040, China.
School of Forestry, Northeast Forestry University, Harbin 150040, China.
Ultrason Sonochem. 2017 Mar;35(Pt A):161-175. doi: 10.1016/j.ultsonch.2016.09.015. Epub 2016 Sep 20.
In this study, ultrasonic circulating extraction (UCE) technique was firstly and successfully applied for extraction of samara oil from Acer saccharum. The extraction kinetics were fitted and described, and the extraction mechanism was discussed. Through comparison, n-hexane was selected as the extraction solvent, the influence of solvent type on the responses was detailedly interpreted based on the influence of their properties on the occurrence and intensity of cavitation. Seven parameters potentially influencing the extraction yield of samara oil and content of nervonic acid, including ultrasound irradiation time, ultrasound irradiation power, ultrasound temperature, liquid-solid ratio, soaking time, particle size and stirring rate, were screened through Plackett-Burman design to determine the significant variables. Then, three parameters performed statistically significant, including liquid-solid ratio, ultrasound irradiation time and ultrasound irradiation power, were further optimized using Box-Behnken design to predict optimum extraction conditions. Satisfactory yield of samara oil (11.72±0.38%) and content of nervonic acid (5.28±0.18%) were achieved using the optimal conditions. 1% proportion of ethanol in extraction solvent, 120°C of drying temperature and 6.4% moisture were selected and applied for effective extraction. There were no distinct differences in the physicochemical properties of samara oil obtained by UCE and Soxhlet extraction, and the samara oil obtained by UCE exhibited better antioxidant activities. Therefore, UCE method has enormous potential for efficient extraction of edible oil with high quality from plant materials.
在本研究中,首次成功地将超声波循环提取 (UCE) 技术应用于提取糖槭翅果中的翅果油。对提取动力学进行了拟合和描述,并讨论了提取机制。通过比较,选择正己烷作为提取溶剂,基于溶剂性质对空化发生和强度的影响,详细解释了溶剂类型对响应的影响。通过 Plackett-Burman 设计筛选了 7 个潜在影响翅果油提取产率和神经酸含量的参数,包括超声辐照时间、超声辐照功率、超声温度、液固比、浸泡时间、颗粒大小和搅拌速度,以确定显著变量。然后,使用 Box-Behnken 设计进一步优化了三个具有统计学意义的参数,包括液固比、超声辐照时间和超声辐照功率,以预测最佳提取条件。在最佳条件下,可获得 11.72±0.38%的翅果油产率和 5.28±0.18%的神经酸含量。选择提取溶剂中乙醇的比例为 1%,干燥温度为 120°C,水分含量为 6.4%,用于有效提取。UCE 和索氏提取得到的翅果油的理化性质没有明显差异,且 UCE 提取得到的翅果油具有更好的抗氧化活性。因此,UCE 方法具有从植物材料中高效提取高品质食用油的巨大潜力。