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Performance assessment of solvent extraction coupled with gas chromatography-mass spectrometry for the analysis of volatile components from Syringa flowers

机译:萃取与气相色谱-质谱联用分析紫丁香花中挥发性成分的性能评估

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Using gas chromatography-mass spectrometry (GC-MS) as a means of separation and identification, a solvent extraction (SE) method was first developed and used for isolating and concentrating the volatile components from Syringa flowers. Its performance was assessed by comparing it with headspace solid-phase microextraction (HS-SPME) technology, which is generally recognized as an effective means for trapping volatile substances. Four main influencing parameters, the solvent, solvent volume, extraction time and heating temperature, were optimized in order to achieve high extraction efficiency. The experimental results show that both methods exhibit their own extraction performance for Syringa emodi Wall. Among a total of 21 substances that were separated, 17 substances were identified using these two methods. Of these, 15 were identified by SE and 12 by HS-SPME. Among these 17 substances, 10 were identified by both methods and seven only by one method: five by SE and two by HS-SPME. Both methods also give different relative contents of the substances involved. These comparative results show that SE has an ability to trap the volatile components that is even better than that of HS-SPME in this case. Moreover, this method was also applied to 15 other varieties of Syringa flowers.
机译:利用气相色谱-质谱(GC-MS)作为分离和鉴定的手段,首先开发了一种溶剂萃取(SE)方法,并将其用于从丁香花中分离和浓缩挥发性成分。通过与顶空固相微萃取(HS-SPME)技术进行比较来评估其性能,该技术通常被认为是捕获挥发性物质的有效手段。优化了四个主要影响参数,溶剂,溶剂量,萃取时间和加热温度,以实现高萃取效率。实验结果表明,两种方法均能对丁香紫苏墙表现出各自的提取性能。在分离出的总共21种物质中,使用这两种方法鉴定出17种物质。其中,SE鉴定出15个,HS-SPME鉴定了12个。在这17种物质中,两种方法均鉴定出10种,一种方法仅鉴定出7种:SE鉴定出5种,HS-SPME鉴定出两种。两种方法还给出了所涉及物质的不同相对含量。这些比较结果表明,在这种情况下,SE具有捕获挥发性成分的能力,甚至比HS-SPME更好。此外,该方法还应用于其他15种丁香花。

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