Effect of Air-Drying Conditions on Physico-chemical Properties of Osmotically Pre-treated Pomegranate Seeds

被引:0
作者
Brahim Bchir
Souhail Besbes
Romdhane Karoui
Hamadi Attia
Michel Paquot
Christophe Blecker
机构
[1] University of Liege,Gembloux Agro
[2] National Engineering School of Sfax,Bio Tech
[3] University of Liege,Laboratory of Food Analyses
来源
Food and Bioprocess Technology | 2012年 / 5卷
关键词
Pomegranate; Osmotic dehydration; Drying; Antioxidant activity; Differential scanning calorimetry; Texture;
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学科分类号
摘要
The drying of pomegranate seeds was investigated at 40 °C, 50 °C and 60 °C with air velocity of 2 m/s. Prior to drying, seeds were osmodehydrated in 55 °Brix sucrose solution for 20 min at 50 °C. The drying kinetics and the effects of osmotic dehydration (OD) and air-drying temperature on antioxidant capacity, total phenolics, colour and texture were determined. Analysis of variance revealed that OD and air-drying temperature have a significant influence on the quality of seeds. Both anthocyanin and total phenolic contents decreased when air-drying temperature increased. The radical diphenylpicril-hydrazyl activity showed the lowest antioxidant activity at 60 °C. Both chromatic parameters (L*, C* and h°) and browning index were affected by drying temperatures, which contributed to the discolouring of seeds. The final product has 22%, 20% and 16% of moisture; 0.630, 0.478 and 0.414 of aw; 151, 141 and 134 mg gallic acid equivalent/100 g fresh matter (FM) of total phenolics; 40, 24, 20 mg/100 g FM of anthocyanins and 46%, 39% and 31% of antioxidant activity, for drying temperatures of 40 °C, 50 °C and 60 °C, respectively. In view of these results, the temperature of 40 °C is recommended as it has the lowest impact on the quality parameters of the seeds. Differential scanning calorimetry data provided complementary information on the mobility changes of water during drying. Glass transition temperature (Tg′) depends on moisture content and as consequence, on drying conditions. In fact, Tg′ of seeds dried at 60 °C (Tg′ = −21 °C) was higher than those dried at 50 °C (Tg′ = −28 °C) or 40 °C (Tg′ = −31 °C) and osmodehydrated seeds (Tg′ = −34 °C). During OD and drying process, the texture of seeds changed. The thickness of seeds shrank by 55% at 60 °C.
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页码:1840 / 1852
页数:12
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共 176 条
[31]  
Ndiaye A(2009)Effect of osmotic dehydration pre-treatment on quality of French fries Journal of Functional Food 1 324-329
[32]  
Reynes M(2005)Avolution of antioxidant compound in lime residues during drying Journal of Food Engineering 69 307-316
[33]  
Sock O(2001)Chemical changes and antioxidant activity in pomegranate arils during fruit development Journal of Food Engineering 48 169-175
[34]  
Defilippi G(2009)Osmo-convective drying of fruits and vegetables: Technology and application Journal of Food Engineering 91 297-304
[35]  
Whitaker B(2010)Design of hot air drying for better foods Food and Bioprocess Technology 3 843-852
[36]  
Hess-Pierce B(1999)The thin-layer drying characteristics of garlic slices Trends in Food Science and Technology 10 94-100
[37]  
Kader A(2002)Pomegranate (Punica granatum) supplements: Authenticity, antioxidant and polyphenol composition Journal of Food Engineering 56 97-103
[38]  
Devic E.(2007)Influence of osmotic dehydration conditions on apple air-drying kinetics and their quality characteristics Journal of Food Engineering 81 79-87
[39]  
Guyot S.(1997)Kinetics of colour change of kiwifruits during hot air and microwave drying Journal of Food Science and Technology 34 230-232
[40]  
Daudin J.(1973)Influence of temperature on the drying kinetics, physicochemical properties, and antioxidant capacity of Aloe Vera (Aloe Barbadensis Miller) gel Process Biochemistry 8 18-20