Department of Chemical Engineering, Faculty of Engineering, Islamic University of Madinah, Madinah, Saudi Arabia.
Department of Chemical and Materials Engineering, Faculty of Engineering, King Abdulaziz University, Jeddah, 21589, Saudi Arabia.
Chemosphere. 2023 Oct;338:139623. doi: 10.1016/j.chemosphere.2023.139623. Epub 2023 Jul 22.
This work presents an integrated approach for the extraction of lipids from marine macroalgae using RSM optimization and thermo-kinetic analysis. The lipids were extracted from marine macroalgal biomass using a Soxhlet extractor. The Soxhlet extraction parameters, including temperature (60-80 °C), solvent-to-algae ratio (3:1-7:1), algal particle size (0.05-0.25 mm), and extraction time (60-180 min), were optimized using RSM to achieve the maximum possible lipid extraction yield from marine macroalgae. The highest lipid extraction yield of 12.76% was obtained using the optimized conditions, which included an extraction temperature of 72 °C, a solvent-to-algae ratio of 5:1, an algal particle size of 0.16 mm, and an extraction time of 134 min. The kinetic analysis revealed an activation energy of 52.79 kJ mol-1 for the Soxhlet extraction process. The thermodynamic analysis of the Soxhlet extraction process demonstrated the following results: ΔH = 49.98 kJ mol-1, ΔS = -128.24 J K-1 mol-1, and ΔG = 93.98 kJ mol-1. The GC-MS analysis confirmed that the extracted algal lipids exhibited a composition of 14.20% palmitic acid, 4.89% stearic acid, and 76.97% oleic acid. The physiochemical analysis ensured that the extracted algal lipids possess excellent qualities, making them desirable for sustainable biofuel production.
本工作提出了一种利用响应面法优化和热动力学分析从海洋大型藻类中提取脂质的综合方法。使用索氏提取器从海洋大型藻类生物质中提取脂质。通过响应面法优化了索氏提取的参数,包括温度(60-80°C)、溶剂与藻类的比例(3:1-7:1)、藻类颗粒大小(0.05-0.25mm)和提取时间(60-180min),以从海洋大型藻类中获得最大可能的脂质提取产率。使用优化条件,即提取温度为 72°C、溶剂与藻类的比例为 5:1、藻类颗粒大小为 0.16mm 和提取时间为 134min,获得了最高的脂质提取产率 12.76%。动力学分析表明,索氏提取过程的活化能为 52.79kJ/mol。索氏提取过程的热力学分析结果如下:ΔH=49.98kJ/mol、ΔS=-128.24J/K/mol 和 ΔG=93.98kJ/mol。GC-MS 分析证实,提取的藻类脂质的组成包括 14.20%的棕榈酸、4.89%的硬脂酸和 76.97%的油酸。理化分析确保了提取的藻类脂质具有优良的品质,使其成为可持续生物燃料生产的理想选择。