食品科学 ›› 2026, Vol. 47 ›› Issue (17): 224-234.doi: 10.7506/spkx1002-6630-20260302-012

• 食品工程 • 上一篇    下一篇

烹饪及复热过程对食用油脂中氯丙醇酯及缩水甘油酯含量的影响

杨琦,陈竞男,代金霞,刘伟   

  1. (河南工业大学粮油食品学院,河南?郑州 450001)
  • 出版日期:2026-09-15 发布日期:2026-09-03
  • 基金资助:
    河南省科技攻关项目(222103810061);中国博士后科学基金项目(2025M772965)

Effects of Cooking and Reheating Processes on the Contents of Chloropropanol Esters and Glycidyl Esters in Edible Oils

YANG Qi, CHEN Jingnan, DAI Jinxia, LIU Wei   

  1. (College of Food Science and Engineering, Henan University of Technology, Zhengzhou 450001, China)
  • Online:2026-09-15 Published:2026-09-03

摘要: 氯丙醇酯(monochloropropanediol esters,MCPDEs)和缩水甘油酯(glycidyl esters,GEs)是近年来食品热加工过程中备受关注的风险因子,但其在传统中式烹饪及复热过程中的生成规律尚不明确。本研究以典型中式菜肴“青椒肉丝”为研究对象,系统分析烹饪过程中温度、时间和食盐(添加量、种类及添加时机)以及不同复热方式(炒制复热与微波复热)对MCPDEs和GEs生成的影响。结果表明,高温与高盐条件会显著促进烹饪后油脂中MCPDEs及GEs的生成。在190 ℃烹饪4 min条件下,3-MCPDE、2-MCPDE和GEs含量分别增至1.11、0.41 mg/kg和1.08 mg/kg。随着食盐添加量的增加,相关风险因子含量整体呈上升趋势。随着加热时间延长,MCPDEs与GEs的变化呈现不同趋势,其中,3-MCPDE在5 min时达到峰值1.05 mg/kg,随后于6 min降至0.99 mg/kg,而GEs在6 min时持续升高至1.04 mg/kg。与风险较高的提前加盐处理相比,推迟至出锅时加盐可使3-MCPDE、2-MCPDE及GEs分别降至0.82、0.27 mg/kg和0.76 mg/kg,降幅分别为34.4%、25.0%和32.1%。在复热过程中,190 ℃炒制复热9 min时,GEs含量达1.88 mg/kg,约为微波高火复热方式的1.66 倍。说明微波复热可有效减缓相关风险因子的进一步积累。本研究揭示了中式烹饪中热负荷与氯离子对有害酯类形成的影响,提出“控温适时、出锅调味及微波复热”策略,可为降低热加工食品安全风险提供理论依据和实践参考。

关键词: 氯丙醇酯;缩水甘油酯;中式烹饪;复热方式

Abstract: monochloropropanediol esters (MCPDEs) and glycidyl esters (GEs) have attracted increasing attention as potential process contaminants generated during thermal food processing. However, their formation patterns during traditional Chinese cooking and reheating remain unclear. In this study, a typical Chinese dish, stir-fried pork with green peppers, was selected as a model system to systematically investigate the effects of cooking temperature, heating time, and salt (dosage, type, and addition timing) on the formation of MCPDEs and GEs. Furthermore, the impacts of different reheating methods (stir-frying and microwave reheating) were evaluated. The results indicated that high temperatures and high salt concentrations significantly accelerated the accumulation of MCPDEs and GEs in the oil phase. Cooking at 190 ℃ for 4 min elevated the concentrations of 3-MCPDE, 2-MCPDE and GEs to 1.11, 0.41, and 1.08 mg/kg, respectively. The concentrations of target contaminants generally rose with increasing NaCl dosage. The levels of MCPDEs and GEs displayed divergent trends upon prolonged heating: 3-MCPDE peaked at 1.05 mg/kg at 5 min and dropped to 0.99 mg/kg at 6 min, while GEs continuously increased and reached 1.04 mg/kg at 6 min. Relative to early salt addition, adding salt right before serving lowered the concentrations of 3-MCPDE, 2-MCPDE and GEs to 0.82, 0.27, and 0.76 mg/kg, with reduction percentages of 34.4%, 25.0%, and 32.1%. Stir-frying at 190 ℃ for 9 min resulted in GE levels of 1.88 mg/kg, roughly 1.66 times as high as the value obtained by high-power microwave reheating, suggesting that microwave reheating mitigated the secondary accumulation of these hazardous esters. This study elucidates the impact of thermal load and chloride ions on the formation of harmful esters in Chinese cuisine. Building on this, we propose a strategy of “moderate temperature control, late seasoning, and microwave reheating”, providing both theoretical insights and practical guidance for reducing food safety risks associated with thermal processing.

Key words: chloropropanol esters; glycidyl esters; Chinese cooking; reheating methods

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