Université d'Avignon et des Pays de Vaucluse, INRA, UMR408, Avignon, France.
Anal Bioanal Chem. 2012 Aug;404(3):679-82. doi: 10.1007/s00216-012-5983-x. Epub 2012 Apr 19.
One of the principal objectives of sustainable and green processing development remains the dissemination and teaching of green chemistry in colleges, high schools, and academic laboratories. This paper describes simple glassware that illustrates the phenomenon of extraction in a conventional microwave oven as energy source and a process for green analytical chemistry. Simple glassware comprising a Dean-Stark apparatus (for extraction of aromatic plant material and recovery of essential oils and distilled water) and a Vigreux column (as an air-cooled condenser inside the microwave oven) was designed as an in-situ extraction vessel inside a microwave oven. The efficiency of this experiment was validated for extraction of essential oils from 30 g fresh orange peel, a by-product in the production of orange juice. Every laboratory throughout the world can use this equipment. The microwave power is 100 W and the irradiation time 15 min. The method is performed at atmospheric pressure without added solvent or water and furnishes essential oils similar to those obtained by conventional hydro or steam distillation. By use of GC-MS, 22 compounds in orange peel were separated and identified; the main compounds were limonene (72.1%), β-pinene (8.4%), and γ-terpinene (6.9%). This procedure is appropriate for the teaching laboratory, does not require any special microwave equipment, and enables the students to learn the skills of extraction, and chromatographic and spectroscopic analysis. They are also exposed to a dramatic visual example of rapid, sustainable, and green extraction of an essential oil, and are introduced to successful sustainable and green analytical chemistry.
可持续和绿色加工发展的主要目标之一仍然是在学院、高中和学术实验室中传播和教授绿色化学。本文描述了一种简单的玻璃器皿,该器皿展示了在传统微波炉作为能源的萃取现象,以及一种绿色分析化学的方法。简单的玻璃器皿包括Dean-Stark 仪器(用于萃取芳香植物材料和回收精油和蒸馏水)和 Vigreux 柱(作为微波烤箱内的风冷冷凝器),被设计为微波烤箱内的原位萃取容器。该实验的效率通过从 30 克新鲜橙皮(橙汁生产中的副产物)中提取精油进行了验证。世界各地的每个实验室都可以使用这种设备。微波功率为 100 W,辐照时间为 15 分钟。该方法在大气压力下进行,无需添加溶剂或水,并且提供与传统水或蒸汽蒸馏获得的精油相似的精油。通过使用 GC-MS,从橙皮中分离并鉴定了 22 种化合物;主要化合物为柠檬烯(72.1%)、β-蒎烯(8.4%)和γ-萜品烯(6.9%)。该程序适用于教学实验室,不需要任何特殊的微波设备,使学生能够学习萃取、色谱和光谱分析技能。他们还接触到一个快速、可持续和绿色提取精油的生动例子,并引入成功的可持续和绿色分析化学。