亚临界水萃取姜渣中生物活性物质的动力学模拟

M. E. Yulianto, B. Jos, B. Budiyono
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引用次数: 0

摘要

动力学建模在亚临界水提取生姜废液中姜黄酚和姜辣素等生物活性化合物的研究中发挥了关键作用。液固萃取动力学可以预测萃取现象,提高萃取效果。本研究的目的是建立浸出动力学的数学模型,并确定在亚临界水相的姜浆中提取姜酚和姜辣素的速率常数(k)。研究分建模和实验两个阶段进行。通过对拟一阶、拟二阶萃取动力学模型和分布系数模型的比较进行建模。利用Matlab对模型进行了假设,并用实验数据对模型进行了验证。在140℃、3.5 bar的压力下,对生姜废渣中的姜酚和姜辣素进行了亚临界水提工艺。提取液从萃余液中分离,采用HPLC-MS进行分析。结果表明,拟一级动力学模型较好地描述了亚临界水萃取现象,姜辣素的回归值为0.9882,姜辣素的回归值为0.9682。姜辣素和姜酚的提取速率常数(k)分别为0.1101和0.3130。说明姜辣素的提取率高于姜辣素的提取率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetic Modelling of Liquid-Solid Extraction of Bioactive Compounds from Ginger Waste using Subcritical Water
Kinetic modelling played a key role in the development of subcritical water extraction for bioactive compounds such as: shogaol and gingerol from ginger waste. Liquid-solid extraction kinetics could predict the extraction phenomenon and increase the efficacy of extraction process. The aim of this study was to develop a mathematical model of leaching kinetics and determine the rate constant of extraction process (k) of shogaol and gingerol in ginger pulp which is in the subcritical water phase. The research was carried out in two work stages, namely modeling and experimentation. The modeling was done by comparing three extraction kinetic models, namely pseudo first order, pseudo second order and the distribution coefficient. The model was postulated and validated with experimental data using Matlab. The subcritical water extraction process of shogaol and gingerol in ginger waste was occurred at 140 ℃ with a pressure of 3.5 bar. The extracts had been separated from raffinate and further analyzed using HPLC-MS. The results showed that the pseudo first order kinetic model described well the phenomenon of subcritical water extraction with regression values was 0.9882 for gingerol and 0.9682 for shogaol respectively. The rate constant of extraction process (k) for gingerol and shogaol were 0.1101  and 0.3130 , respectively. This showed that the shogaol extraction rate was higher than the gingerol extraction rate.
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