Pyrolysis-Gas Chromatography/Mass Spectrometry Analysis of Oils from Different Sources

Qi Qiu, Yiting Zhang

Abstract


Regenerated gutter oil (i.e., waste oil) accounts for 10% of the edible oil market, which has caused serious food safety issues. Currently, there is no standard protocol for the identification of the gutter oil. In this study, the pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS) method was employed to analyze eleven oil samples including edible vegetable oils (tea oil, corn oil, olive oil, sunflower oil, peanut oil and blend vegetable oil) and waste oils (used frying oil, lard, chicken fat, inferior oil and kitchen waste grease). Three factors of pyrolysis temperature, reaction time and sample volume were investigated to optimize the analytical parameters. The optimal pyrolysis conditions were determined to be 600°C, 1 min and an injection volume of 0.3 μL. Five characteristic components (tetradecane, z,z-9,12-octadecadienoic acid, decanoic acid-2-propenyl ester, 17-octadecenoic acid, and z-9-octadecenoic acid) were found in all oil samples. The existence of C11-C16 olefins in the pyrolytic products of the animal fats and the other low-quality oils could be utilized to distinguish vegetable oils from gutter oils.

 


Keywords


Pyrolysis; Gutter oil; GC/MS; Waste oil; Olefins

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References


Li, J., Cui, N., and Liu, J. (2017). Gutter oil: an overview of Chinese food safety issues and policies. Global Health Promotion, 24(3), 75-78. DOI: 10.1177/1757975915623733

Lu, F., and Wu, X. (2014). China food safety hits the “gutterâ€. Food Control, 41, 134-138. DOI: https://doi.org/10.1016/j.foodcont.2014.01.019

López-Díez, E. C., Bianchi, G., and Goodacre, R. (2003). Rapid Quantitative Assessment of the Adulteration of Virgin Olive Oils with Hazelnut Oils Using Raman Spectroscopy and Chemometrics. Journal of agricultural and food chemistry, 51(21), 6145-6150. DOI: 10.1021/jf034493d

Lin, C., Liao, C., Zhang, Y., Xu, L., Wang, Y., Fu, C., Yang, K., Wang, J., He, J., and Wang, Y. (2018). Optofluidic gutter oil discrimination based on a hybrid-waveguide coupler in fibre. Lab on a Chip, 18(4), 595-600. DOI: 10.1039/c8lc00008e

Tian, K., Wang, W., Yao, Y., Nie, X., Lu, A., Wu, Y., and Han, C. (2018). Rapid identification of gutter oil by detecting the capsaicin using surface enhanced Raman spectroscopy. Journal of Raman Spectroscopy, 49(3), 472-481. DOI: https://doi.org/10.1002/jrs.5306

Zhang, B., Wu, J., Yang, C., Qiu, Q., Yan, Q., Li, R., Wang, B., Wu, J., and Ding, Y. (2018). Recent Developments in Commercial Processes for Refining Bio-Feedstocks to Renewable Diesel. BioEnergy Research, 11(3), 689-702. DOI: 10.1007/s12155-018-9927-y

Qiu, Q., Cai, Y., Ye, Q., and Lv, W. (2019). Catalytic Pyrolysis of Kapok Fiber for Production of Olefins. Trends in Renewable Energy, 5(2), 218-228. DOI: 10.17737/tre.2019.5.2.0097

Zhang, B., and Wang, Y. (2013). Biomass Processing, Conversion and Biorefinery, Nova Science Publishers, Inc., New York.

Yang, C., Li, R., Qiu, Q., Yang, H., Zhang, Y., Yang, B., Wu, J., Li, B., Wang, W., Ding, Y., and Zhang, B. (2020). Pyrolytic behaviors of Scenedesmus obliquus over potassium fluoride on alumina. Fuel, 263, 116724. DOI: https://doi.org/10.1016/j.fuel.2019.116724




DOI: http://dx.doi.org/10.17737/tre.2021.7.1.00127

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