Chemat Aziadé, Touraud Didier, Müller Rainer, Kunz Werner, Fabiano-Tixier Anne-Sylvie
INRAE, UMR 408, Avignon University, F-84000 Avignon, France.
Institute of Physical and Theoretical Chemistry, University of Regensburg, 93040 Regensburg, Germany.
Molecules. 2024 Mar 15;29(6):1318. doi: 10.3390/molecules29061318.
Coffee silverskin is a byproduct of the coffee industry, appearing in large quantities during the roasting step. In this work, a sober and simple water process is proposed, using extractions cycles, to produce valuable products including (a) an extract rich in caffeine, (b) possibly pure caffeine, and (c) insoluble fibers. The hypothetical number of necessary cycles was calculated and compared to the number of cycles used experimentally. Two types of cycles, with and without water compensation, were compared for their water consumption and the amount of caffeine extracted. The use of cycles, with the resulting product from a previous extraction as a solvent for fresh biomass, drove a significant rise in the content of caffeine determined by a UV-visible detector with a spectrophotometer and ultra-performance liquid chromatography (UPLC). After 11 extraction cycles with water compensation, we obtained an extract 4.5 times more concentrated in caffeine (4.25 mg/mL) than after a single extraction (1.03 mg/mL).
咖啡银皮是咖啡行业的一种副产品,在烘焙过程中大量出现。在这项工作中,提出了一种简单的水提取工艺,通过多次提取循环,生产有价值的产品,包括(a)富含咖啡因的提取物,(b)可能是纯咖啡因,以及(c)不溶性纤维。计算了所需的假设循环次数,并与实验中使用的循环次数进行了比较。比较了两种类型的循环,即有水补偿和无水补偿的循环,比较了它们的水消耗和提取的咖啡因量。使用循环,将前一次提取的产物作为新鲜生物质的溶剂,通过紫外可见分光光度计和超高效液相色谱(UPLC)测定,咖啡因含量显著增加。经过11次有水补偿的提取循环后,我们得到的提取物中咖啡因浓度(4.25mg/mL)是单次提取后(1.03mg/mL)的4.5倍。