Department of Biological and Agricultural Engineering, Louisiana State University Agricultural Center, Baton Rouge, LA 70803, USA.
Bioresour Technol. 2011 Feb;102(3):3396-403. doi: 10.1016/j.biortech.2010.09.119. Epub 2010 Oct 8.
A 1.2 kW, 2450 MHz resonant continuous microwave processing system was designed and optimized for oil extraction from green algae (Scenedesmus obliquus). Algae-water suspension (1:1 w/w) was heated to 80 and 95°C, and subjected to extraction for up to 30 min. Maximum oil yield was achieved at 95°C and 30 min. The microwave system extracted 76-77% of total recoverable oil at 20-30 min and 95°C, compared to only 43-47% for water bath control. Extraction time and temperature had significant influence (p<0.0001) on extraction yield. Oil analysis indicated that microwaves extracted oil containing higher percentages of unsaturated and essential fatty acids (indicating higher quality). This study validates for the first time the efficiency of a continuous microwave system for extraction of lipids from algae. Higher oil yields, faster extraction rates and superior oil quality demonstrate this system's feasibility for oil extraction from a variety of feedstock.
设计并优化了一种 1.2kW、2450MHz 的谐振连续微波处理系统,用于从绿藻(斜生栅藻)中提取油脂。将藻水悬浮液(1:1w/w)加热至 80 和 95°C,并进行长达 30 分钟的提取。在 95°C 和 30 分钟时达到最大产油率。与水浴对照相比,微波系统在 20-30 分钟和 95°C 下提取了 76-77%的总可回收油,仅为 43-47%。提取时间和温度对提取产率有显著影响(p<0.0001)。油分析表明,微波提取的油含有更高比例的不饱和和必需脂肪酸(表明更高的质量)。本研究首次验证了连续微波系统从藻类中提取脂质的效率。更高的产油率、更快的提取速度和更高的油质证明了该系统从各种原料中提取油脂的可行性。