Bioresource Engineering Department, Macdonald Campus, McGill University, Ste-Anne-De-Bellevue, Montreal, QC H9X 3V9, Canada.
EXKA Inc., 7625 Route Arthur Sauvé, Mirabel, QC J7N 2R6, Canada.
Molecules. 2022 Dec 11;27(24):8780. doi: 10.3390/molecules27248780.
Efficient cannabis biomass extraction can increase yield while reducing costs and minimizing waste. Cold ethanol extraction was evaluated to maximize yield and concentrations of cannabinoids and terpenes at different temperatures. Central composite rotatable design was used to optimize two independent factors: sample-to-solvent ratio (1:2.9 to 1:17.1) and extraction time (5.7 min-34.1 min). With response surface methodology, predicted optimal conditions at different extraction temperatures were a cannabis-to-ethanol ratio of 1:15 and a 10 min extraction time. With these conditions, yields (g 100 g dry matter) were 18.2, 19.7, and 18.5 for -20 °C, -40 °C and room temperature, respectively. Compared to the reference ground sample, tetrahydrocannabinolic acid changed from 17.9 (g 100 g dry matter) to 15, 17.5, and 18.3 with an extraction efficiency of 83.6%, 97.7%, 102.1% for -20 °C, -40 °C, and room temperature, respectively. Terpene content decreased by 54.1% and 32.2% for extraction at -20 °C and room temperature, respectively, compared to extraction at -40 °C. Principal component analysis showed that principal component 1 and principal component 2 account for 88% and 7.31% of total variance, respectively, although no significant differences in cold ethanol extraction at different temperatures were observed.
高效的大麻生物量提取可以在降低成本和减少浪费的同时提高产量。评估了冷乙醇提取方法,以在不同温度下最大限度地提高大麻素和萜烯的产量和浓度。采用中心复合旋转设计优化了两个独立因素:样品与溶剂的比例(1:2.9 至 1:17.1)和提取时间(5.7 分钟至 34.1 分钟)。通过响应面法,在不同的提取温度下预测了最佳条件是大麻与乙醇的比例为 1:15 和 10 分钟的提取时间。在这些条件下,-20°C、-40°C 和室温下的产率(g/100g 干物质)分别为 18.2、19.7 和 18.5。与参考的研磨样品相比,-20°C、-40°C 和室温下四氢大麻酸的提取效率分别为 83.6%、97.7%和 102.1%,其含量分别从 17.9(g/100g 干物质)降至 15、17.5 和 18.3。与-40°C 相比,-20°C 和室温下的萜烯含量分别下降了 54.1%和 32.2%。主成分分析表明,第一主成分和第二主成分分别占总方差的 88%和 7.31%,尽管在不同温度下的冷乙醇提取没有观察到显著差异。