Zhang Shanying, Pan Yong-Gui, Zheng Lili, Yang Yang, Zheng Xiaoyan, Ai Binling, Xu Zhimin, Sheng Zhanwu
Haikou Experimental Station Chinese Academy of Tropical Agricultural Sciences Haikou China.
College of Food Science Hainan University Haikou China.
Food Sci Nutr. 2019 Feb 11;7(3):1004-1016. doi: 10.1002/fsn3.924. eCollection 2019 Mar.
This study evaluated the physicochemical properties of oils extracted from steam-exploded camellia seed ( Abel.). Steam pressure, resident time, fatty acid composition, total phenolics, tocopherol, squalene, and sterol contents, and volatile compounds were determined. H NMR and FTIR spectra were performed for the structure of camellia seed oil. This study has found the highest yield of oil was 86.56% and was obtained when steam explosion pretreatment was at 1.6 MPa 30 s. Oil extracted by steam explosion pretreatment exhibited favorable physicochemical properties and stronger antioxidant activities compared to untreated oil. The compositions of fatty acid were similar between treated and untreated camellia seed oil. According to the H NMR and FTIR analyses, the functional groups of the oils were not significantly affected by the steam explosion pretreatment. Furans such as 2-pentyl-furan, 2-furanmethanol, and 3-methyl-furan were produced from stream-exploded camellia seed. Scanning electron microscopy revealed that steam explosion pretreatment efficiently promoted the release of oil by destroying the cell structure of camellia seed. Therefore, steam explosion can be an effective method for the camellia seed oil extraction.
本研究评估了蒸汽爆破油茶籽(阿贝尔)所提取油脂的理化性质。测定了蒸汽压力、停留时间、脂肪酸组成、总酚、生育酚、角鲨烯和甾醇含量以及挥发性化合物。对油茶籽油的结构进行了核磁共振氢谱(¹H NMR)和傅里叶变换红外光谱(FTIR)分析。本研究发现,当蒸汽爆破预处理条件为1.6兆帕30秒时,油脂产量最高,为86.56%。与未处理的油脂相比,经蒸汽爆破预处理提取的油脂具有良好的理化性质和更强的抗氧化活性。处理过的油茶籽油和未处理的油茶籽油的脂肪酸组成相似。根据¹H NMR和FTIR分析,蒸汽爆破预处理对油脂的官能团没有显著影响。蒸汽爆破油茶籽产生了如2-戊基呋喃、2-呋喃甲醇和3-甲基呋喃等呋喃类物质。扫描电子显微镜显示,蒸汽爆破预处理通过破坏油茶籽的细胞结构有效地促进了油脂的释放。因此,蒸汽爆破可以成为一种有效的油茶籽油脂提取方法。