College of Food and Bioengineering, South China University of Technology, Guangzhou 510640, China.
J Agric Food Chem. 2015 May 13;63(18):4597-605. doi: 10.1021/acs.jafc.5b00461. Epub 2015 May 1.
Lutein is an important pigment of Chlorella pyrenoidosa with many beneficial functions in human health. The main purpose of this study was to extract lutein from C. pyrenoidosa using ultrasound-enhanced subcritical CO2 extraction (USCCE). Effects of operating conditions on the extraction, including extraction pretreatment, temperature, pressure, time, CO2 flow rate, and ultrasonic power, were investigated, and an orthogonal experiment was designed to study the effects of extraction pressure, temperature, cosolvent amount, and time on the extraction yields. The USCCE method was compared with other extraction methods in terms of the yields of lutein and the microstructure of C. pyrenoidosa powder by scanning electron microscopy. A maximal extraction yield of 124.01 mg lutein/100 g crude material was achieved under optimal conditions of extraction temperature at 27 °C, extraction pressure at 21 MPa, cosolvent amount at 1.5 mL/g ethanol, and ultrasound power at 1000 W. Compared to other methods, USCCE could significantly increase the lutein extraction yield at lower extraction temperature and pressure. Furthermore, the kinetic models of USCCE and subcritical CO2 extraction (SCCE) of lutein from C. pyrenoidosa were set as E = 130.64 × (1 - e(-0.6599t)) and E = 101.82 × (1 - e(-0.5683t)), respectively. The differences of parameters in the kinetic models indicate that ultrasound was able to enhance the extraction process of SCCE.
叶黄素是栅藻的一种重要色素,对人体健康有许多有益的功能。本研究的主要目的是采用超声强化亚临界 CO2 萃取(USCCE)从栅藻中提取叶黄素。考察了提取预处理、温度、压力、时间、CO2 流速和超声功率等操作条件对提取的影响,并设计了正交实验,研究了提取压力、温度、夹带剂用量和时间对提取率的影响。通过扫描电子显微镜观察叶黄素的提取率和栅藻粉的微观结构,比较了 USCCE 方法与其他提取方法的差异。在最佳提取条件下,提取温度为 27°C,提取压力为 21 MPa,夹带剂用量为 1.5 mL/g 乙醇,超声功率为 1000 W,叶黄素的最大提取率为 124.01 mg/100 g 粗提物。与其他方法相比,USCCE 可以在较低的提取温度和压力下显著提高叶黄素的提取率。此外,建立了 USCCE 和 SCCE 从栅藻中提取叶黄素的动力学模型,分别为 E = 130.64×(1 - e(-0.6599t))和 E = 101.82×(1 - e(-0.5683t))。动力学模型中参数的差异表明,超声能够增强 SCCE 的提取过程。