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Optimization of the extraction process of minerals from Salvia officinalis L. using factorial design methodology

机译:优化Salvia Officinalis L的矿物质提取过程。使用阶乘设计方法

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The extraction of minerals from garden sage (Salvia officinalis L.) using water as a solvent was studied at different extraction conditions. A full factorial experiment 2(3) with replication was performed. The effects of three extraction factors, liquid/solid ratio (15 and 30 mL/g solvent volume per g of raw material), extraction temperature (40 and 100 degrees C) and extraction time (20 and 80 min) such as their interaction were evaluated by the analysis of variance and linear regression model. At the 95% confidence level all three factors were effective on Na, K, Mg, Ca, Fe, Cu, Mn, Zn, Ni, Cr and Al yields, the most important factor being the extraction time (except for Ca, Cr and Al). All regression models gave a good fit to the experimental data (R-2 99%). The content of minerals in water extracts were determined using inductively-coupled plasma atomic emission spectrometry. The optimum extraction conditions were as follows: liquid/solid ratio 15 mL/g, extraction temperature 100 degrees C, and extraction time 80 min. The data obtained were used to establish the thermodynamics of the extraction process. The Gibbs free energy change for the extraction of minerals is negative (except for Fe, Al and Cr), indicating that the process is feasible and spontaneous.
机译:在不同的提取条件下,研究了使用水作为溶剂的园林鼠尾草(Salvia Officinalis L.)的矿物质。进行完整的因子实验2(3)进行复制。三种提取因子,液/实比(15和30mL / g原料),提取温度(40和100℃)和提取时间(20和80分钟)的影响,例如它们的相互作用是方差分析和线性回归模型评估。在95%的置信水平,所有三种因素都在Na,K,Mg,Ca,Fe,Cu,Mn,Zn,Ni,Cr和Al产量上有效,最重要的因素是提取时间(CA,Cr和Cr除外al)。所有回归模型都适合实验数据(R-2& 99%)。利用电感耦合等离子体原子发射光谱法测定水提取物中矿物质的含量。最佳提取条件如下:液/实比15ml / g,提取温度100℃,提取时间80分钟。所获得的数据用于建立提取过程的热力学。矿物质提取的GIBBS自由能量变化是负的(Fe,Al和Cr除外),表明该过程是可行和自发的。

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