Abstract
[Objective] To establish a method for authenticity identification of camellia seed oil. [Methods] The fatty acid composition of camellia seed oil and six common vegetable oils are determined by gas chromatography. Principal component analysis (PCA) is employed to explore the distribution patterns of fatty acids among the vegetable oils and to screen for potentially adulterated oils. Partial least squares discriminant analysis (PLS-DA) is applied to establish a model between fatty acid profiles and actual adulterated oils. Finally, multiple stepwise linear regression analysis is used to establish quantitative analysis models for adulteration in camellia seed oil. [Results] Among the six common vegetable oils, olive oil and peanut oil exhibit fatty acid compositions most similar to that of camellia seed oil, and are therefore selected as potential adulterants. The PLS-DA model could discriminate adulterated oils with adulteration levels no lower than 5%, and identify characteristic fatty acids for olive oil adulteration (palmitic acid, behenic acid, linoleic acid, palmitoleic acid and stearic acid) and for peanut oil adulteration (oleic acid, linoleic acid and palmitic acid). The quantitative models established by stepwise linear regression for olive oil and peanut oil adulteration in camellia seed oil achieve correlation coefficients (R2) greater than 0.9 for both models. The limits of detection (sensitivities) for the two models are 5% and 2%, respectively, and the method repeatabilities range from 0.7% to 6.0% and from 0.8% to 3.3%, respectively. The errors between predicted and actual values range from −1.93% to 2.08% and from −0.79% to 0.15%, respectively. [Conclusion] This comprehensive technical strategy, encompassing screening, qualitative discrimination, and quantitative analysis, provides a complete solution for the authenticity assessment of camellia seed oil.
Publication Date
7-25-2026
First Page
68
Last Page
76
DOI
10.13652/j.spjx.1003.5788.2025.80697
Recommended Citation
Minting, Luo; Zhihang, Wu; Tengxin, Hu; and Qingpeng, Xu
(2026)
"Migration volume determination and migration patterns of 11 antioxidants from degradable polylactic acid straws,"
Food and Machinery: Vol. 42:
Iss.
7, Article 8.
DOI: 10.13652/j.spjx.1003.5788.2025.80697
Available at:
https://www.ifoodmm.cn/journal/vol42/iss7/8
References
[1] 刁晓倩,翁云宣,宋鑫宇,等.国内外生物降解塑料产业发展现状 [J].中国塑料,2020,34(5):123-135.Diao X Q,Weng Y X,Song X Y,et al.Current development situation of biodegradable plastic industry in China and abroad[J].China Plastics,2020,34(5):123-135.
[2] 朱天戈,杨勇.可生物降解塑料行业及标准化现状浅析 [J].新材料产业,2021 (6):21-25.Zhu T G,Yang R.Brief analysis of the biodegradable plastics industry and standardization status [J].Advanced Materials Industry,2021 (6):21-25.
[3] 彭强,高挺,劳志超,等.可生物降解塑料研究进展 [J].橡塑技术与装备,2024,50(8):56-64.Peng Q,Gao T,Lao Z C,et al.Research progress on biodegradable plastics [J].China Rubber/Plastics Technology and Equipment,2024,50(8):56-64.[4] Auras R A,Lim L T,Selke S E M,et al.Poly (lactic acid ):synthesis,structures,properties,processing,applications,and end of life [M].New York:John Wiley & Sons,2022:3-9.
[5] 刘丰颉,李伟,彭新洋,等.聚乳酸的制备、改性及应用进展研究[J].塑料科技,2024,52(5):156-160.Liu F J,Li W,Peng X Y,et al.Study on preparation,modification and application progress of polylactic acid [J].Plastics Science and Technology,2024,52(5):156-160.
[6] 俞学如,陈森,梁思嘉,等.可降解塑料的使用现状及其潜在环境风险 [J].环境化学,2023,42(1):29-40.Yu X R,Chen S,Liang S J,et al.Current use of biodegradable plastics and their potential environmental risks [J].Environmental Chemistry,2023,42(1):29-40.
[7] De Albuquerque T L,Marques J E J,De Queiroz L P,et al.Polylactic acid production from biotechnological routes:a review [J].International Journal of Biological Macromolecules,2021,186:933-951.
[8] 李鑫榕,梁诗滟,胥菲菲,等.新型生物可降解材料聚乳酸的研究进展 [J].广州化工,2024,52(22):10-12.Li X R,Liang S Y,Xu F F,et al.Research progress on new biodegradable material polylactic acid [J].Guangzhou Chemical Industry,2024,52(22):10-12.
[9] 胡预龙,张如强,李文俊,等.生物可降解食品包装材料的研究进展 [J].精细化工,2025, 42(6):1 211-1 220.Hu Y L,Zhang R Q,Li W J,et al.Research progress on biodegradable food packaging materials [J].Fine Chemicals,2025,42(6):1 211-1 220.
[10] 江星.可降解材料在一次性吸管方面的应用研究趋势 [J].大众标准化,2025 (12):112-114.Jiang X.Research trends in the application of degradable materials for disposable straws [J].Popular Standardization,2025 (12):112-114.
[11] 胡云,刘源.可生物降解食品接触材料中非有意添加物的鉴定和风险评估研究进展 [J].食品科学,2023,44(17):363-372.Hu Y,Liu Y.Research progress in the identification and health risk assessment of non-intentionally added substances in biodegradable food contact materials [J].Food Science,2023,44(17):363-372.
[12] 曾莉,林黛琴,聂绍丽,等.可降解食品接触材料及制品性能和风险分析 [J].江西化工,2023,39(5):1-6.Zeng L,Lin D Q,Nie S L,et al.Performance and risk analysis of degradable food contact materials and products [J].Jiangxi Chemical Industry,2023,39(5):1-6.
[13] 朱李娜,曹慧,王瑾,等.HPLC-MS/MS 法测定可降解食品接触材料中有机磷阻燃剂向食品模拟物的迁移 [J].食品与机械,2025,41(10):223-234.Zhu L N,Cao H,Wang J,et al.Migration of organophosphate flame retardants from biodegradable food contact materials into food simulants by HPLC-MS/MS [J].Food & Machinery,2025,41(10):223-234.
[14] Zhang L Y,Wei C Q,Yang J P.Application research of degradable materials for food contact products and related quality and safety requirements [J].Journal of Food Safety & Quality,2020,11(7):2 303-2 308.
[15] 张株瑞,杨青华,童星,等.基于 FT-IR和GC-MS分析市售PLA吸管中挥发性物质 [J].食品科学,2022,43(24):258-265.Zhang Z R,Yang Q H,Tong X,et al.Analysis of volatiles in commercially available polylactic acid straws using Fourier transform infrared spectroscopy and gas chromatography-mass spectrometry [J].Food Science,2022,43(24):258-265.
[16] 吴景杰,叶蕾,支朝晖,等.基于 UHPLC-QTOF MS 的PLA吸管中未知物的筛查识别 [J].分析测试学报,2021,40(11):1 627-1 632.Wu J J,Ye L,Zhi Z H,et al.Identification of migrants from polylactic acid straws by ultrahigh performance liquid chromatography-quadrupole time-of-flight mass spectrometry[J].Journal of Instrumental Analysis,2021,40(11):1 627-1 632.
[17] 张株瑞.聚乳酸吸管中挥发性有机物的筛查与初级芳香胺的迁移研究 [D].广州:暨南大学,2023:8-19.Zhang Z R.Screening of volatile organic compounds in polylactic acid straws and migration of primary aromatic amines [D].Guangzhou:Jinan University,2023:8-19.
[18] 诸葛海涛,张阳,闻诚,等.LC-MS法测定可降解塑料包装产品中紫外吸收剂和抗氧化剂的迁移量 [J].中国高新科技,2022 (21):131-133.Zhuge H T,Zhang Y,Wen C,et al.Determination of the migration of ultraviolet absorbers and antioxidants in biodegradable plastics packaging products by LC-MS [J].China High-Tech,2022 (21):131-133.
[19] 蔡翔宇,陈璐,吴玉杰,等.高效液相色谱—串联质谱法同时测定聚对苯二甲酸乙二醇酯 /聚乙烯复合食品接触材料中16种抗氧化剂特定迁移量 [J].食品安全质量检测学报,2021,12(15):5 974-5 982.Cai X Y,Chen L,Wu Y J,et al.Simultaneous determination of specific migration limits of 16 kinds of antioxidants in food contact polyethylene glycol terephthalate/polyethylene composite materials by high performance liquid chromatography-tandem mass spectrometry [J].Journal of Food Safety & Quality,2021,12(15):5 974-5 982.
[20] 王燕飞,郑伟龙,张帅,等.食品塑料接触材料中有害物质的迁移研究现状 [J].化工管理,2023 (12):158-161.Wang Y F,Zheng W L,Zhang S,et al.Research status of migration of harmful substances in food plastic contact materials [J].Chemical Enterprise Management,2023 (12):158-161.
[21] 刘泽,王玮,孙枫林,等.食品接触塑料中抗氧化剂迁移及潜在危害的研究进展 [J].预防医学论坛,2023,29(3):233-240.Liu Z,Wang W,Sun F L,et al.Research progress on migration and potential hazards of antioxidants in food contact plastics[J].Preventive Medicine Tribune,2023,29(3):233-240.
[22] 董犇,黎梓城,汪龙飞,等.超高效液相色谱—串联质谱法同时测定食品接触材料及制品中 9种抗氧化剂迁移量 [J].分析测试学报,2021,40(3):377-382.Dong B,Li Z C,Wang L F,et al.Simultaneous determination of specific migration amounts of 9 antioxidants in plastic food contact materials by ultrahigh performance liquid chromatography-tandem mass spectrometry [J].Journal of Instrumental Analysis,2021,40(3):377-382.
[23] 蒲晨露,李根.食品接触材料中污染物分析技术的研究进展[J].中国塑料,2023,37(2):113-120.Pu C L,Li G.Research progress in analytic technology of contaminants in food packaging [J].China Plastics,2023,37(2):113-120.
[24] 胡云,邹勇平,周元元,等.高效液相色谱法测定聚乳酸吸管中甲醛迁移量 [J].食品与机械,2024,40(2):51-56,90.Hu Y,Zou Y P,Zhou Y Y,et al.Migration quality of formaldehyde in the polylactic acid straw detected by HPLC[J].Food & Machinery,2024,40(2):51-56,90.
[25] 陶强,吴雄杰,朱东波,等.食品接触用生物可降解塑料吸管的安全性分析 [J].塑料工业,2025,53(5):120-125.Tao Q,Wu X J,Zhu D B,et al.Safety analysis of biodegradable plastic straws for food contact [J].China Plastics Industry,2025,53(5):120-125.
[26] 陈彦荣,张博,韩颜蓉,等.生物质基食品包装材料研究进展[J].食品与机械,2025,41(10):203-212.Chen Y R,Zhang B,Han Y R,et al.Research progress of biomass-based food packaging materials [J].Food & Machinery,2025,41(10):203-212.
[27] 母广明.聚乳酸改性复合材料的制备及性能研究 [D].长春:长春工业大学,2025:35-49.Mu G M.Study on the preparation and properties of polylactic acid modified composites [D].Changchun:Changchun University of Technology,2025:35-49.
