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中国精品科技期刊2020

解冻方式及贮藏条件对冷冻椰子水基料品质的影响

Effects of Thawing Methods and Storage Conditions on the Quality of Frozen Coconut Water Base

  • 摘要: 超高压联合速冻加工的椰子水基料是现制茶饮行业门店中的重要加工原料,但其在门店使用过程中存在解冻方式混乱、解冻后货架期不明等问题,导致基料产品使用不当。本文系统对比了冷藏、室温、水浴和超声四种门店解冻方式及解冻后室温、低温两种贮藏条件对椰子水理化性质及营养品质的影响规律,以期为果品基料在现制茶饮门店制作中的规范使用提供参考。结果表明,四种解冻方式对椰子水的总体品质影响不大,但水浴和超声解冻能显著缩短椰子水的解冻时间(P<0.05),且在解冻的四个阶段中椰子水的品质更为均一。因此,水浴和超声解冻能有效提高解冻速率的同时保持椰子水的综合品质,适宜门店现制现用。解冻后的椰子水基料在低温贮藏5 d内的菌落总数始终低于1 lg CFU/mL,而在室温贮藏3 d后超过2 lg CFU/mL。此外,低温贮藏可有效保持椰子水的颜色和营养物质含量。然而,两种贮藏条件下椰子水的抗氧化活性均显著下降,其中室温贮藏下降更多,其自由基清除能力降幅达45.54%~56.76%。综上,从微生物安全及品质保持角度出发,椰子水基料宜采用超声或水浴方式解冻,且解冻后建议低温贮存,贮藏时间不宜超过2 d。

     

    Abstract: High-pressure processed (HPP) and quick-frozen treated coconut water base serves as an important ingredient in freshly prepared tea beverages. However, inconsistent thawing methods and the lack of clear post-thaw shelf-life guidance in retail settings may result in improper handling and utilization. The effects of four thawing methods (refrigeration, room temperature, water bath, and ultrasound) and two storage temperatures (room and low temperature) on the physicochemical characteristics and nutritional quality of coconut water base were systematically investigated to provide guidance for standardized handling. The results showed that thawing method had limited influence on overall quality parameters. Nevertheless, water bath and ultrasonic thawing significantly reduced thawing time (P<0.05) and resulted in more homogeneous quality distribution throughout the four thawing processes. These methods therefore offered practical advantages for rapid in-store preparation without adversely affecting quality attributes. The total viable count of bacteria in thawed coconut water base remained consistently lower than 1 lg CFU/mL during 5 days of low temperature storage, whereas it exceeded 2 lg CFU/mL after 3 days of room temperature storage. Furthermore, low temperature storage effectively retains the color and nutrient contents of coconut water. However, the antioxidant activity of coconut water decreased significantly under both storage conditions, with a more pronounced decline observed under room temperature storage, where the free radical scavenging capacity decreased by 45.54%~56.76%. In conclusion, from the perspectives of microbial safety and quality retention, ultrasonic thawing or water bath thawing is recommended for coconut water base. Additionally, low temperature storage is preferable after thawing, and the storage duration should not exceed 2 days.

     

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