• Title/Summary/Keyword: cake staling

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Effect of Bakjakyak(Paeonia japonica) Addition on the Shelf-Life and Characteristics of Rice Cake and Noodle (백작약 첨가 떡과 국수의 저장성 및 제품특성)

  • Sung, Jung-Min;Han, Young-Sil
    • Journal of the Korean Society of Food Culture
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    • v.18 no.4
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    • pp.311-319
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    • 2003
  • This study was perfomed to evaluate the shelf-life, physicochemical, sensory evaluation of rice cake and noodle mixed with Bakjakyak(Paeonia japonica) powder at different ratio. Moisture content decreased gently during storage and the decrease was less in Bakjakyak powder-added groups than the control group. The color L value decreased significantly by with increasing the Bakjakyak powder and increased during storage. Color a and b value incresed significantly by addition of Bakjakyak powder. In the total plate count, Bakjakyak powder-added group showed less growth of microorganisms compared to the control group. As a result of the sensory evaluation, rice cake and noodle with Bakjakyak were superior in color, flavor, taste, cohesiveness and overall quality than that of control group. The 3%-added group was most superior in terms of color and the 1% added group gained the highest grade in terms of flavor, taste, overall quality. The results suggested that Bakjakyak was effective in increasing the shelf-life and retarding the staling of rice cake and noodle.

Quality Changes of 'Baumkuchen' Cake with Modified Atmosphere Packaging during Storage (변형기체포장 처리에 따른 '바움쿠헨' 케이크의 저장 중 품질 특성 변화)

  • Myungho Lee;Minhwi Kim;Youn Suk Lee
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.29 no.2
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    • pp.87-94
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    • 2023
  • Fresh bakery products are widely consumed worldwide and therefore particular requirements for their quality characteristics have been established. The shelf life of bakery products is mainly subjected to microbial spoilage and staling. This study investigated the optimum conditions of modified atmosphere packaging (MAP) application to extend the shelf life of the bakery products. The gas conditions of the headspace in 'Baumkuchen' cake were 0, 30, 70, and 100% CO2 concentrations and stored at 30℃ for 5 days. The bakery samples were evaluated weight loss, hardness, color change, pH and total aerobic bacteria, yeast and molds count throughout the storage period. Values of the weight loss and hardness were increased over the storage period, meanwhile pH was significantly decreased. However, no significant color changes were observed during storage. It was also found no significant difference between the different gas treatments. Total aerobic bacteria count of the stored samples after day 5 was increased by 6.94 log CFU/g in the air filled package, compared to 6.20 log CFU/g in the 100% CO2 filled package and 6.02 log CFU/g in the 70% CO2 filled package. Yeast and molds count were 3.65 log CFU/g in air filled package, 2.66 log CFU/g in 100% CO2 filled package, 2.64 log CFU/g in 70% CO2 filled package, 2.86 log CFU/g in 30% CO2 filled package and 3.31 log CFU/g in 100% N2 filled package on day 2. In conclusion, it was shown that 70% and 100% CO2 treatments in the package were effective to reduce microbial growth.