利用超声波辅助从汉娜叶(Lawsonia inermis L.)中提取天然染料的优化和动力学研究

Achmad Qodim Syafaatullah, Dwi Setyorini, Melani Ganing, Renova Panjaitan, Ni’matul Azizah
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引用次数: 0

摘要

Lawson inermis L.叶片中所含的劳森染料呈橘红色,可用作织物染料。溶剂为乙醇,因为乙醇可以吸附与劳森结合在一起的黄酮类化合物。超声波辅助萃取法通过破坏细胞壁来强化萃取过程,从而促进所需溶质的快速萃取。本研究调查了材料与溶剂比率、乙醇浓度和萃取时间的影响。研究结果使用紫外可见分光光度计进行分析,以确定劳森提取物的产量。本研究采用了面心复合设计法(FCCCD),以获得最佳分析结果和提取条件。本研究的自变量为成分与溶剂的比例(0.02-0.06 克/克)、乙醇浓度(20-60%)和提取时间(5-15 分钟)。最佳萃取条件为:配比为 0.02 克/克,乙醇浓度为 60%,萃取时间为 15 分钟,预测模型产率为 15.417%。在此条件下的实际产率为 15.4934%。此外,还对萃取动力学模型进行了分析,以研究和预测最佳劳森萃取结果。根据拉格伦方程,采用一阶和二阶进行了萃取动力学计算。最合适的萃取动力学模型是二阶,其决定系数值或 R2 值为 1,这表明阶次动力学模型方程代表了实际情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization and Kinetics Extraction of Natural Dyes from Henna Leaves (Lawsonia inermis L.) with Ultrasonic Assistance
The Lawson dye contained in the leaves of Lawsonia inermis L. has a red-orange color, which can be used as a fabric dye. The solvent is ethanol because it can attract flavonoid compounds bound to Lawson. The ultrasonic-assisted extraction method is employed to enhance the extraction process by breaking down cell walls, thereby facilitating a more rapid extraction of the desired solute. This study investigated the effects of material-to-solvent ratio, ethanol concentration, and extraction time. The research results were analyzed using a UV-Visible spectrophotometer to determine the yield of Lawson extract. The Face-Centered Composite Design (FCCCD) method was applied to this study to obtain optimal analysis results and extraction conditions. The independent variables in this study were the ratio of ingredients to solvent (0.02-0.06 g/g), ethanol concentration (20-60%), and extraction time (5-15 minutes). The optimal extraction conditions were obtained at a ratio of 0.02 g/g, an ethanol concentration of 60%, and an extraction time of 15 minutes, with a predicted model yield of 15.417%. The actual yield under these conditions was found to be 15.4934%. Furthermore, the extraction kinetics model was analyzed to study and predict the optimal Lawson extraction results. Extraction kinetics calculations were carried out using first-order and second-order based on the Lagergren equation. The most suitable extraction kinetic model is second-order with a determinant coefficient value, or the value of R2 is 1, which indicates that the order kinetic model equation represents the actual conditions.
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