色谱 ›› 2026, Vol. 44 ›› Issue (7): 821-826.DOI: 10.3724/SP.J.1123.2025.09030

• 教学研究 • 上一篇    下一篇

仪器分析实验设计与实践:多次顶空萃取-气相色谱-质谱测定野菊花中的龙脑和樟脑

李会香, 蒋文韬, 周立航, 郑翰, 刘莎莎, 雷杰*()   

  1. 复旦大学化学系,上海 200433
  • 收稿日期:2025-10-22 出版日期:2026-07-08 发布日期:2026-07-09
  • 通讯作者: *Tel:021-55665593,E-mail:jielei@fudan.edu.cn.
  • 基金资助:
    基础学科拔尖学生培养试验计划2.0;教育部化学“101计划”-化学测量学实验课程建设项目;教育部第三批虚拟教研室建设试点-“101计划”化学测量学实验课程虚拟教研室;复旦大学“强国之路”思政大课“践行”课题

Design and practice of instrumental analysis experiment: determination of borneol and camphor in Chrysanthemum by multiple headspace extraction-gas chromatography- mass spectrometry

LI Huixiang, JIANG Wentao, ZHOU Lihang, ZHENG Han, LIU Shasha, LEI Jie*()   

  1. Department of Chemistry,Fudan University,Shanghai 200433,China
  • Received:2025-10-22 Online:2026-07-08 Published:2026-07-09
  • Supported by:
    Top Students in Basic Disciplines Training Program 2.0;Ministry of Education Chemistry “101 Project”-Chemical Metrology Experimental Course Construction Project;Ministry of Education Third Batch of Virtual Teaching and Research Office Pilot Construction-“101 Project” Chemical Metrology Experimental Course Virtual Teaching and Research Office;“Putting into Practice” Project of Fudan University’s “Strengthening the Nation” Ideological and Political Course

摘要:

本研究在原有实验及科研课题基础上,通过拓展仪器功能设计了一个本科仪器分析实验,旨在引导师生深入理解并重视样品前处理技术在分析流程中的关键作用。实验以野菊花为分析对象,建立了一种基于多次顶空萃取-气相色谱-质谱(MHE-GC-MS)联用测定其中樟脑与龙脑含量的分析方法。通过系统优化顶空平衡温度与平衡时间等关键参数,确定最佳前处理条件为顶空平衡温度100 ℃、平衡时间20 min。方法学验证表明,目标化合物具有良好的线性关系,相关系数(R2)为0.981 2~0.999 2。应用所建立的方法测得野菊花中樟脑与龙脑的含量分别为0.917 4 mg/g与0.944 2 mg/g,结果显著高于传统水蒸馏-溶剂萃取法,体现了MHE技术近乎完全萃取的优势。本实验作为一项综合探究性教学项目,成功融入仪器分析实验课程,有效培养了学生在方法开发、条件优化与数据处理等方面的综合实践能力与科学思维。本研究提出的教学方法无需增加实验试剂等,具有较好的普适性、可拓展性和推广价值,可为仪器分析实验教学改革提供有益参考。

关键词: 多次顶空萃取, 气相色谱-质谱, 樟脑, 龙脑, 野菊花, 实验教学

Abstract:

On the basis of previous experiments and research projects, this study developed an undergraduate instrumental analysis experiment by expanding the functionality of existing instruments. The primary objective was to enhance awareness among both instructors and students regarding the importance of sample pretreatment. Using Chrysanthemum as the analytical sample, an analytical method for determining the content of camphor and borneol was established based on multiple headspace extraction-gas chromatography-mass spectrometry (MHE-GC-MS). By systematically optimizing key parameters such as headspace equilibration temperature and time, the optimal pretreatment conditions were determined as an equilibration temperature of 100 ℃ and an equilibration time of 20 min. Method validation demonstrated that both the liquid and solid external standard methods exhibit good linear relationships, correlation coefficients (R²) ranging from 0.981 2 to 0.999 2. Using the established method, the measured contents of camphor and borneol in Chrysanthemum were 0.917 4 mg/g and 0.944 2 mg/g, respectively. These results are significantly higher than those obtained by traditional hydrodistillation-solvent extraction, reflecting the near-complete extraction advantage of MHE. As a comprehensive inquiry-based teaching project, this experiment has been successfully integrated into the instrumental analysis laboratory course, effectively cultivating students’ comprehensive practical skills and scientific thinking in method development, condition optimization, and data processing. The proposed teaching method does not require additional experimental reagents and demonstrates good universality, extendibility, and promotability, providing valuable insights for the reform of instrumental analysis laboratory teaching.

Key words: multiple headspace extraction (MHE), gas chromatography-mass spectrometry (GC-MS), camphor, borneol, Chrysanthemum, experimental teaching

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