Dept. of Food Science and Biotechnology, School of Biotechnology and Bioengineering, Kangwon Natl. Univ. Chuncheon, Kangwondo 200-701, South Korea.
J Food Sci. 2011 Aug;76(6):E444-9. doi: 10.1111/j.1750-3841.2011.02252.x. Epub 2011 Jul 5.
Mass transfer models of leaching oil from soybean (Glycine max) flour with hexane after high-pressure process (HPP) treatment were developed. High pressure (450 MPa) was applied to the soybean flour (mean diameter of flour particle: 365 μm) for 30 min before leaching the oil components in the solvent. The ratio of solvent (volume, mL) to soybean flour (mass, g), such as 1:10 and 1:20, was employed to characterize the effect of solvent ratio on the leaching rate in the batch type of extraction process. Ultraviolet absorbance at 300 nm was used to monitor the extraction rate. Saturation solubility (C(AS)) was determined to be 21.73 kg/m³. The mass transfer coefficients (k) were determined based on the 1st- and 2nd-order kinetic models. The 2nd kinetic model showed better fit. The HPP treatment showed a higher extraction rate and yield compared to the control, while the amount of solvent did not affect the extraction rate and yield. The scanning electron microscope showed that HPP-treated soybean particles included more pores than the untreated. The pores observed in the HPP-treated soybean flours might help increase the mass transfer rate of solvent and solute in the solid matrix.
High-pressure processing can help increase the extraction rate of oil from the soybean flour operated in batch systems. The conventional solid to solvent ratio (1:20) used to extract oil composition from the plant seed did not help increase the amount of oil extracted from the soybean flour.
开发了一种用己烷从经过高压处理(HPP)的大豆粉中浸提油的传质模型。在溶剂浸提油成分之前,将大豆粉(面粉颗粒的平均直径:365μm)加压至 450MPa,持续 30 分钟。溶剂(体积,mL)与大豆粉(质量,g)的比例,如 1:10 和 1:20,用于表征溶剂比对批式萃取过程中浸提率的影响。采用 300nm 紫外吸光度监测萃取率。确定饱和溶解度(C(AS))为 21.73kg/m³。基于一级和二级动力学模型确定传质系数(k)。二级动力学模型显示出更好的拟合度。与对照相比,HPP 处理显示出更高的提取率和收率,而溶剂的量并不影响提取率和收率。扫描电子显微镜显示,与未处理的相比,HPP 处理的大豆颗粒包含更多的孔。在 HPP 处理的大豆粉中观察到的孔可能有助于提高溶剂和溶质在固体基质中的传质速率。
高压处理有助于提高批式系统中从大豆粉中提取油的提取率。从植物种子中提取油成分的常规固液比(1:20)并不能帮助从大豆粉中提取更多的油。