HE Wen-xuan1, HONG Gui-shui2, FANG Run1, CAI Xian-chun2, HUANG Sheng2
1. Department of Chemistry and Chemical Engineering, Minjiang University, Fuzhou 350108, China 2. Fujian Provincial Administration for Industry and Commerce, Fuzhou 350003, China
Abstract:Because both refined “waste oil” and the third category “waste oil” known as frying old oil experience a longer history at temperature higher than 200 ℃ compared to the vegetable oil. In this study, the relative change rates of content of conjugated fatty acid glycerides, content of tans-fatty acid glycerides and unsaturation were investigated after being at high temperature for several hours by using FTIR-ATR in order to find out specific targets for “waste oil”. The results show that (1) Starting from 160 ℃, the contents of conjugated fatty acids glycerides and trans-fatty acid glycerids in the vegetable oils increase but unsaturation decreases with heating temperature and heating time increasing. (2) When heating temperature reaches 200 ℃ or more, the heating time up to four hours or longer, the three indicators(conjugated fatty glycerids,trans-fatty acid glycerids and unsaturation) of six kinds of vegetable oils have substantial changes. (3) The content of linoleic acid in the vegetable oil has some contributions to the change amplitude of contents of conjugated fatty acid glycerides, and the content of oleic acid in the vegetable oil has some contributions to the change amplitude of content of trans-fatty acid glycerides. (4) In addition, during the warranty period change amplitudes of three indicators are relative small compared with the case of after being at high temperature for several hours. Unsaturation decrease and content of conjugated fatty acid glycerides increase with storage-time increasing. However, unlike the case of after being at high temperature for several hours, the content of trans-fatty acid glycerids decreases with storage-time increasing. Experimental results show that three index value and its variation can be used as specific indicators for refined “waste oil” and “waste oil”.
何文绚1,洪贵水2,方 润1,蔡仙春2,黄 声2 . 地沟油特异性指标研究 [J]. 光谱学与光谱分析, 2015, 35(01): 76-82.
HE Wen-xuan1, HONG Gui-shui2, FANG Run1, CAI Xian-chun2, HUANG Sheng2 . Research on Specific Indicators of Waste Oil . SPECTROSCOPY AND SPECTRAL ANALYSIS, 2015, 35(01): 76-82.
[1] HUANG Jun(黄 军). Master’s Thesis of Nanchang University(南昌大学硕士学位论文), 2008. 14. [2] ZHANG Qiang,CHEN Qiu-sheng,LIU Ye-tong,et al(张 强,陈秋生,刘烨潼, 等). Cereals and Oils(粮食与油脂), 2010,9:39. [3] WANG Le, LI Yong, HU Jian-hua(王 乐, 黎 勇, 胡健华). China Oils and Fats(中国油脂), 2008, 33(10). [4] HUANG Dao-ping,PENG Jin,XIE Yan-xiang, et al(黄道平, 彭 进, 谢燕湘,等). Chin. J. Health Lab. Technol.(中国卫生检验杂志), 2006, 16(2): 151. [5] WU Hui-qin,HUANG Xiao-lan,CHEN Jiang-han, et al(吴惠勤,黄晓兰,陈江韩,等). Journal of Instrumental Analysis (分析测试学), 2012, 31(1):1. [6] LIU Wei, YIN Ping-he, ZHAO-Ling(刘 薇, 尹平河, 赵 玲). China Oils and Fats(中国油脂), 2005, 30(5):24. [7] XU Xiu-li,REN He-ling,LI Na,et al(许秀丽, 任荷玲, 李 娜, 等). Journal of Inspection and Quarantine(检验检疫学刊),2012, 22(4):25. [8] ZHOU Yong-sheng,LUO Shi-ping,KONG Yong(周永生, 罗士平, 孔 泳). Chinese Journal of Chromatography(色谱),2012, 30(2):207. [9] WANG Long-xing, JIN Jing, WANG Shu-qiu, et al(王龙星, 金 静, 王淑秋,等). Chinese Journal of Chromatography(色谱),2012, 30(11):1094. [10] Gianluca Picariello, Antonello Paduano, Raffaele Sacchi, et al. J. Agric. Food Chem., 2009, 57: 5391. [11] Alfred A Christy. Chemistry and Physics of Lipids, 2009, 161: 86. [12] LIU Yuan-fa, MU Zhao,SHAN Liang, et al(刘元法, 穆 昭, 单 良,等). Journal of the Chinese Cereals and Oils Association(中国粮油学报),2010, 25(6):51. [13] Frédéric Destaillats,Paul Angers. Lipids.,2002, 37(4):435. [14] Pierre Juanéda, Stéphanie Brac de la Pérrière, Jean-Louis Sébédio. JAOCS.,2003,80(9):937. [15] PANG Jian-yu, YIN Ping-he,YU Han-hao, et al(潘剑宇, 尹平河, 余汉豪,等). Food Science(食品科学),2003, 24(8):27.