食品科学 ›› 2026, Vol. 47 ›› Issue (14): 279-287.doi: 10.7506/spkx1002-6630-20260104-010

• 成分分析 • 上一篇    

多维分析技术评价新疆浓缩苹果汁加工过程中的风味变化

顾赛麒,梁博,周云香,丁玉庭   

  1. (1.浙江工业大学食品科学与工程学院,浙江?杭州 310014;2.全省深蓝渔业资源绿色低碳高效开发重点实验室,浙江?杭州 310014;3.国家远洋水产品加工技术研发分中心(杭州),浙江?杭州 310014;4.漳州市食品科学研究院,福建?漳州 363000)
  • 发布日期:2026-08-24
  • 基金资助:
    阿拉尔市科技攻关项目(2024SP01)

Multidimensional Evaluation of Flavor Changes in Xinjiang Concentrated Apple Juice during Processing

GU Saiqi, LIANG Bo, ZHOU Yunxiang, DING Yuting   

  1. (1. College of Food Science and Technology, Zhejiang University of Technology, Hangzhou 310014, China; 2. Key Laboratory of Green, Low-carbon and Efficient Development of Marine Fishery Resources, Hangzhou 310014, China; 3. National R&D Branch Center for Pelagic Aquatic Products Processing (Hangzhou), Hangzhou 310014, China; 4. Food Science Research Institute of Zhangzhou, Zhangzhou 363000, China)
  • Published:2026-08-24

摘要: 采用感官评价、气相色谱-离子迁移谱(gas chromatography-ion mobility spectrometry,GC-IMS)、GC-质谱(mass spectrometry,MS)、电子鼻和电子舌分析手段,对浓缩苹果汁不同加工阶段(新鲜汁、高温杀菌、酶解、超滤、浓缩)中风味物质变化规律进行多维度测定,并基于偏最小二乘判别分析(partial least squares-discriminant analysis,PLS-DA)和气味活度值(odor activity value,OAV)确定关键香气组分。结果表明:高温杀菌、超滤和浓缩处理会导致苹果汁感官评分显著下降。在整个浓缩加工过程的所有阶段样品中,GC-IMS共检测出36 种挥发物,高温杀菌和酶解后苹果汁样品挥发物种类保持稳定,超滤后乙酸-2-甲基丁酯等挥发物浓度显著下降,而浓缩后乙酸己酯等为代表的30余种挥发物完全消失。综合各个加工阶段,GC-MS共检测出48 种挥发性物质,与新鲜汁相比,苹果汁经高温杀菌、酶解、超滤和浓缩处理后,其挥发物总浓度分别减少34.1%、37.1%、62.8%和99.1%,挥发物种类由初始的35 种降至8 种,表明香气损失严重。基于PLS-DA和OAV结果,共筛选得到2-甲基丁酸乙酯等11 种变量投影重要性值>1且OAV>1的化合物,被认为是浓缩苹果汁的关键香气组分。电子鼻和电子舌主成分分析显示各加工阶段样品沿第一主成分方向定向迁移,累计方差贡献率均超过93%,超滤和浓缩样品的分布区域与新鲜汁空间距离最远,组件区分度最为明显。本研究较为全面揭示了浓缩苹果汁加工过程中风味物质品质变化规律,推测热处理的蒸发效应和超滤的物理截留可能是导致浓缩苹果汁风味损失的重要原因,可为生产企业优化加工工艺提供理论依据。

关键词: 苹果汁;风味;感官评价;气相色谱-离子迁移谱;气相色谱-质谱;电子鼻;电子舌

Abstract: Sensory evaluation, gas chromatography-ion mobility spectrometry (GC-IMS), gas chromatography-mass spectrometry (GC-MS), an electronic nose, and an electronic tongue were used for multidimensional evaluation of the changes in flavor substances in different processing stages of concentrated apple juice (crushing/juicing, high-temperature sterilization, enzymatic hydrolysis, ultrafiltration and concentration). Key aroma components were then identified based on partial least squares-discriminant analysis (PLS-DA) and odor activity values (OAV). The results showed that high-temperature sterilization, ultrafiltration, and concentration treatment significantly reduced the sensory score of apple juice. Throughout the entire processing stages, a total of 36 volatiles were detected by GC-IMS. The variety of volatiles in apple juice samples remained stable after high-temperature sterilization and enzymatic hydrolysis; the concentration of volatiles such as 2-methyl butyl acetate decreased significantly after ultrafiltration, while more than 30 volatiles such as hexyl acetate disappeared completely after concentration. Across all samples from different processing stages, a total of 48 volatile substances were detected by GC-MS. Compared with fresh juice, the total concentration of volatile substances in apple juice was reduced by 34.1%, 37.1%, 62.8%, and 99.1% after high-temperature sterilization, enzymatic hydrolysis, ultrafiltration, and concentration, respectively, and the number of volatile substances in fresh juice was 35 and decreased to 8 after concentration, indicating severe aroma loss. Based on PLS-DA and OAV results, 11 compounds with variable importance in the projection (VIP) scores > 1 and OAV > 1, such as ethyl 2-methylbutyrate, were selected as the key aroma components of concentrated apple juice. The principal component analysis of the electronic nose and electronic tongue showed that the samples from each processing stage migrated in the first principal component direction, and the cumulative variance contribution was over 93%. The distribution area of the ultrafiltered and concentrated samples was the farthest from that of fresh juice, and the component discrimination was the most obvious. This study comprehensively revealed the changing pattern of flavor substances during the processing of concentrated apple juice, and proposed that the evaporation effect of heat treatment and the physical interception effect of ultrafiltration might be principally responsible for the flavor loss of concentrated apple juice, providing a theoretical basis for fruit juice manufacturers to optimize processing technology.

Key words: apple juice; flavor; sensory evaluation; gas chromatography-ion mobility spectrometry; gas chromatography-mass spectrometry; electronic nose; electronic tongue

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