Zheljazkov Valtcho D, Astatkie Tess, Jeliazkova Ekaterina A, Schlegel Vicki
Sheridan Research and Extension Center, University of Wyoming, 663 Wyarno Road, Sheridan, WY 82801, USA.
J Oleo Sci. 2012;61(10):537-46. doi: 10.5650/jos.61.537.
The objective of this study was to evaluate the effect of 15 distillation times (DT), ranging from 1.25 to 960 min, on oil yield, essential oil profiles, and antioxidant capacity of male J. scopulorum trees. Essential oil yields were 0.07% at 1.25 min DT and reached a maximum of 1.48% at 840 min DT. The concentrations of alpha-thujene (1.76-2.75%), alpha-pinene (2.9-8.7%), sabinene (45-74.7%), myrcene (2.4-3.4%), and para-cymene (0.8-3.1%) were highest at the shortest DT (1.5 to 5 min) and decreased with increasing DT. Cis-sabinene hydrate (0.5-0.97%) and linalool plus trans-sabinene (0.56-1.6%) reached maximum levels at 40 min DT. Maximum concentrations of limonene (2.3-2.8%) and pregeijerene-B (0.06-1.4%) were obtained at 360-480 min DT, and 4-terpinenol (0.7-5.7%) at 480 min DT. Alpha-terpinene (0.16-2.9%), gamma-terpinene (0.3-4.9%) and terpinolene (0.3-1.4%) reached maximum at 720 min DT. The concentrations of delta-cadinene (0.06-1.65%), elemol (0-6.0%), and 8-alpha-acetoxyelemol (0-4.4%) reached maximum at 840 min DT. The yield of the essential oil constituents increased with increasing DT. Only linalool/transsabinene hydrate reached a maximum yield at 360 min DT. Maximum yields of the following constituents were obtained at 720 min DT: alpha-thujene, alpha-pinene, camphene, sabinene, myrcene, alpha-terpinene, para-cimene, limonene, gamma-terpinene, terpinolene, and 4-terpinenol. At 840 min DT, cis-sabinene hydrate, prejeijerene-B, gamma muurolene, delta-cadinene, reached maximum. At 960 min DT, maximum yields of beta-pinene, elemol, alphaeudesmol/betaeudesmol, 8-alpha-acetoxyelemol were reached. These changes were adequately modeled by either the Michaelis-Menten or the Power (Convex) nonlinear regression models. Oils from the 480 min DT showed higher antioxidant activity compared to samples collected at 40, 160, or 960 min DT. These results show the potential for obtaining essential oils with various compositions and antioxidant capacity from male J. scopulorum by varying DT. This study can be used as a reference paper for comparing results of reports where different lengths of the DT were used.
本研究的目的是评估15种蒸馏时间(DT)(范围为1.25至960分钟)对雄性 scopulorum 杜松油产量、精油成分及抗氧化能力的影响。在DT为1.25分钟时,精油产量为0.07%,在DT为840分钟时达到最高值1.48%。α-侧柏烯(1.76 - 2.75%)、α-蒎烯(2.9 - 8.7%)、桧烯(45 - 74.7%)、月桂烯(2.4 - 3.4%)和对伞花烃(0.8 - 3.1%)的浓度在最短蒸馏时间(1.5至5分钟)时最高,并随蒸馏时间增加而降低。顺式水合桧烯(0.5 - 0.97%)以及芳樟醇和反式桧烯(0.56 - 1.6%)在DT为40分钟时达到最高水平。柠檬烯(2.3 - 2.8%)和前盖尔烯 - B(0.06 - 1.4%)在DT为360 - 480分钟时达到最大浓度,4 - 松油醇(0.7 - 5.7%)在DT为480分钟时达到最大浓度。α-萜品烯(0.16 - 2.9%)、γ-萜品烯(0.3 - 4.9%)和萜品油烯(0.3 - 1.4%)在DT为720分钟时达到最大值。δ-杜松烯(0.06 - 1.65%)、榄香醇(0 - 6.0%)和8-α-乙酰氧基榄香醇(0 - 4.4%)在DT为840分钟时达到最大值。精油成分的产量随蒸馏时间增加而增加。只有芳樟醇/反式水合桧烯在DT为360分钟时达到最大产量。以下成分在DT为720分钟时获得最大产量:α-侧柏烯、α-蒎烯、莰烯、桧烯、月桂烯、α-萜品烯、对伞花烃、柠檬烯、γ-萜品烯、萜品油烯和4 - 松油醇。在DT为840分钟时,顺式水合桧烯、前盖尔烯 - B、γ-衣兰油烯、δ-杜松烯达到最大值。在DT为960分钟时,β-蒎烯、榄香醇、α-桉叶醇/β-桉叶醇、8-α-乙酰氧基榄香醇达到最大产量。这些变化通过米氏方程或幂(凸)非线性回归模型得到了充分的模拟。与在DT为40、160或960分钟时采集的样品相比,DT为480分钟时的油显示出更高的抗氧化活性。这些结果表明,通过改变蒸馏时间,从雄性 scopulorum 杜松中获得具有不同成分和抗氧化能力的精油具有潜力。本研究可作为一篇参考文献,用于比较使用不同蒸馏时间长度的报告结果。