食品科学 ›› 2026, Vol. 47 ›› Issue (14): 267-278.doi: 10.7506/spkx1002-6630-20260101-003

• 成分分析 • 上一篇    

基于化学计量法分析不同市售酱油熬制“复制酱油”的风味特征差异

闵心悦,刘欣,乔明锋,易宇文,何莲,李想,张浩   

  1. (1.四川旅游学院 食品营养与健康四川省高校重点实验室,四川?成都 610100;2.潍坊市检验检测中心,山东?潍坊 261000;3.四川旅游学院 烹饪科学高校重点实验室,四川?成都 610100;4.四川旅游学院?川菜人工智能四川省哲学与社会科学重点实验室,四川?成都 610100)
  • 发布日期:2026-08-24
  • 基金资助:
    食品营养与健康四川省高等学校重点实验室开放基金项目(FN25Y12); 川菜人工智能重点实验室开放基金项目(CR25Y03);肉类加工四川省重点实验室开放基金项目(24-R-16); 四川旅游学院大学生创新创业训练计划资助项目(S202611552068)

Analysis of Differences in Flavor Characteristics of Replicated Composite Soy Sauces Produced by Boiling Different Commercial Soy Sauces Using Chemometrics

MIN Xinyue, LIU Xin, QIAO Mingfeng, YI Yuwen, HE Lian, LI Xiang, ZHANG Hao   

  1. (1. Food Nutrition and Health Key Laboratory of Sichuan Universities, Sichuan Tourism University, Chengdu 610100, China; 2. Weifang Inspection and Testing Centre, Weifang 261000, China; 3. Culinary Science Key Laboratory of Sichuan Province, Sichuan Tourism University, Chengdu 610100, China; 4. Key Laboratory of Sichuan Cuisine Artificial Intelligence, Sichuan Tourism University, Chengdu 610100, China)
  • Published:2026-08-24

摘要: 为探寻川菜秘制“复制酱油”风味特征形成机理,以5 种市售酱油熬制的“复制酱油”为研究对象,采用电子舌、电子鼻结合气相色谱-离子迁移谱(gas chromatography-ion mobility spectrometry,GC-IMS)分析化合物变化。电子舌结果显示不同样品酸味强度值差异较大,电子鼻能辨别样品气味特征。GC-IMS检出68 种化合物,萜品油烯、柠檬烯、月桂烯、β-蒎烯、α-水芹烯和1,4-桉叶素源自葱、姜、干香料,表明添加香辛料熬制“复制酱油”具有风味叠加作用。熬制过程中,香辛料中的萜烯类物质受热转化,同时红糖与酱油中的氨基酸发生美拉德反应和Strecker降解,生成酮类、醇类、杂环化合物及含硫化合物等风味物质,其中红糖中的2,3-丁二醇、2-甲基丁醇和异丁醇呈现甜香气息,有助于降低酱油咸味感知;偏最小二乘回归分析表明香辛料与红糖的添加会显著增强“复制酱油”的整体风味复杂度与味觉层次感。研究从风味化学角度分析了“复制酱油”风味形成机制,为其标准化生产与风味调控提供理论依据。

关键词: 复制酱油;电子鼻;电子舌;气相色谱-离子迁移谱;风味特征;化学计量法

Abstract: To investigate the formation mechanism of the flavor characteristics of Sichuan cuisine’s signature “replicated composite soy sauce”, five commercial soy sauces were used to prepare “replicated composite soy sauce” samples. The changes in their chemical composition were analyzed using an electronic tongue (E-tongue), an electronic nose (E-nose), and gas chromatography-ion mobility spectrometry (GC-IMS). E-tongue results indicated significant differences in sourness intensity among samples, while the E-nose effectively distinguished their aroma profiles. GC-IMS analysis detected a total of 68 compounds. Terpinolene, limonene, myrcene, β-pinene, α-phellandrene, and 1,4-cineole were found to originate from scallions, ginger, and dried spices, indicating that adding spices during processing enhanced the flavor complexity. During processing, terpenes from spices underwent thermal transformation, while brown sugar and amino acids in soy sauce participated in the Maillard reaction and Strecker degradation, generating ketones, alcohols, heterocyclic compounds, and sulfur-containing flavor substances. Among them, 2,3-butanediol, 2-methylbutanol, and isobutanol from brown sugar contributed to sweet aroma notes, which helped reduce the perception of saltiness. Partial least squares regression (PLSR) analysis showed that the addition of spices and brown sugar significantly enhanced the overall flavor complexity and taste layering of “replicated composite soy sauce”. This study provides a theoretical basis for the standardized production and flavor modulation.

Key words: replicated composite soy sauce; electronic nose; electronic tongue; gas chromatography-ion mobility spectrometry; flavor profile; chemometrics

中图分类号: