The primary isolation technique of α-farnesene from apples wasobtained, which was of potential to be used to continue to study the biologicaleffect of α-farnesene. 2. The methods of α-farnesene measurement were improved.
2.改进了 a-法尼烯的测定技术。
参考来源 - 苹果果皮中αCompared with the fixed one, either metal or glass fluidized bed showed promising advantages in many aspects, such as reaction time, efficiency, content and yield of (E)-β-Farnesene.
与固定床相比,无论是金属流化床还是玻璃流化床合成蚜虫报警信息素,反应时间由6-8h缩短到1-2h,反应速率提高,(E)-β-法尼烯含量及收率提高。
参考来源 - 蚜虫报警信息素的绿色合成及应用研究·2,447,543篇论文数据,部分数据来源于NoteExpress
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