Shiono Takashi, Yamamoto Kenichiro, Yotsumoto Yuko, Yoshida Aruto
a Research Laboratories for Beverage Technologies, Research & Development Division , Kirin Company, Ltd. , Yokohama , Japan.
Biosci Biotechnol Biochem. 2017 Aug;81(8):1591-1597. doi: 10.1080/09168451.2017.1340087. Epub 2017 Jun 16.
The growth in health-conscious consumers continues to drive the demand for a wide variety of decaffeinated beverages. We previously developed a new technology using montmorillonite (MMT) in selective decaffeination of tea extract. This study evaluated and compared decaffeination of coffee extract using MMT and activated carbon (AC). MMT adsorbed caffeine without significant adsorption of caffeoylquinic acids (CQAs), feruloylquinic acids (FQAs), dicaffeoylquinic acids (di-CQAs), or caffeoylquinic lactones (CQLs). AC adsorbed caffeine, chlorogenic acids (CGAs) and CQLs simultaneously. The results suggested that the adsorption selectivity for caffeine in coffee extract is higher in MMT than AC. The caffeine adsorption isotherms of MMT in coffee extract fitted well to the Langmuir adsorption model. The adsorption properties in coffee extracts from the same species were comparable, regardless of roasting level and locality of growth. Our findings suggest that MMT is a useful adsorbent in the decaffeination of a wide range of coffee extracts.
注重健康的消费者数量不断增加,持续推动着对各种无咖啡因饮料的需求。我们之前开发了一种利用蒙脱石(MMT)对茶提取物进行选择性脱咖啡因的新技术。本研究评估并比较了使用MMT和活性炭(AC)对咖啡提取物进行脱咖啡因的效果。MMT吸附咖啡因,而对咖啡酰奎尼酸(CQAs)、阿魏酰奎尼酸(FQAs)、二咖啡酰奎尼酸(二-CQAs)或咖啡酰奎尼酸内酯(CQLs)无明显吸附。AC同时吸附咖啡因、绿原酸(CGAs)和CQLs。结果表明,MMT对咖啡提取物中咖啡因的吸附选择性高于AC。MMT在咖啡提取物中的咖啡因吸附等温线与朗缪尔吸附模型拟合良好。无论烘焙程度和生长地点如何,同一品种咖啡提取物的吸附特性具有可比性。我们的研究结果表明,MMT是广泛咖啡提取物脱咖啡因过程中的一种有用吸附剂。