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中国精品科技期刊2020

不同杀菌条件对鱼羊鲜品质及风味物质的影响

Impact of Different Sterilization Conditions on the Quality Attributes and Flavor Profile of Fish and Mutton Dishes

  • 摘要: 本研究基于等效杀菌强度(F0=12)理论,系统比较了115 ℃/42 min、118 ℃/30 min、121 ℃/11 min三组高温高压杀菌及9 kGy辐照杀菌对鱼羊鲜产品品质及风味的影响。通过测定粗蛋白质、粗脂肪、硫代巴比妥酸值(Thiobarbituric Acid Reactive Substances,TBARS)、游离氨基酸、呈味核苷酸、电子舌、气相色谱-离子迁移谱(Gas Chromatography-Mass Spectromrtry,GC-IMS)及感官特性等指标,深入解析不同杀菌方式对鱼羊鲜的影响。结果表明:相较于高温处理,辐照处理对粗蛋白质和粗脂肪含量的影响较小,且其味精当量值(Equivalent Umami Concentration,EUC)下降率最低(33.99%),表明鲜味保留较好。GC-IMS检测显示辐照处理诱导产生了丁醛、2-甲基丁醛等典型辐照异味物质,导致其感官评分显著降低(P<0.05),仅为71分。高温处理显著促进了蛋白质水解,其游离氨基酸总量显著高于辐照组(P<0.05)。在等效F0值下,不同温时组合的高温处理对风味影响存在显著差异:115 ℃/42 min(低温长时)处理导致游离氨基酸总量损失了24.30%、鲜味氨基酸总量下降了35.61%及肌苷酸(Inosine Monophosphate,IMP)含量显著降低了65.79%,风味劣变最严重;而118 ℃/30 min处理组则展现出最高的EUC值(10.74 mg MSG/g)及感官接受度。综上,在保证等效杀菌强度的前提下,118 ℃/30 min高温高压杀菌是鱼羊鲜产品最优的杀菌工艺,可在有效杀菌的同时最大程度地维持其风味品质。本研究为鱼羊鲜类产品的杀菌工艺优化提供了重要理论依据。

     

    Abstract: Based on the equivalent sterilization intensity theory (F0=12), this study systematically compared the effects of three high-temperature and high-pressure (HTHP) sterilization treatments (115 ℃/42 min, 118 ℃/30 min, 121 ℃/11 min) and 9 kGy irradiation sterilization on the quality of fish-lamb composite products. A comprehensive analysis of key flavor compounds was conducted by measuring crude protein, crude fat, thiobarbituric acid reactive substances (TBARS), free amino acids, flavor nucleotides, electronic tongue response, gas chromatography-ion mobility spectrometry (GC-IMS), and sensory characteristics. The results indicated that compared to HTHP treatments, irradiation had a lesser impact on crude protein and crude fat content, and exhibited the smallest reduction in equivalent umami concentration (EUC) (33.99%), suggesting better umami retention. However, GC-IMS analysis revealed that irradiation induced the formation of typical off-flavor compounds, such as butanal and 2-methylbutanal, which led to a significantly lower sensory score (P<0.05) of only 71. HTHP sterilization significantly promoted protein hydrolysis, resulting in a significantly higher total free amino acid content compared to the irradiation group (P<0.05). Under the equivalent F0 value, different temperature-time combinations of HTHP treatments significantly affected the flavor profile. The 115 ℃/42 min (low-temperature long-time) treatment caused the most severe flavor deterioration, characterized by a 24.30% loss in total free amino acids, a 35.61% decrease in umami amino acids, and a significant 65.79% reduction in inosine monophosphate (IMP) content. In contrast, the 118 ℃/30 min treatment group demonstrated the highest EUC value (10.74 mg MSG/g) and sensory acceptability. In conclusion, under the prerequisite of ensuring equivalent sterilization intensity, the 118 ℃/30 min HTHP process is identified as the optimal sterilization method for the fish-lamb product, effectively ensuring microbial safety while preserving its flavor quality. This study provides an important theoretical basis for the optimization of sterilization processes for similar fish-lamb composite products.

     

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