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Ultrasound-assisted osmotic dehydration pretreatment before pulsed fluidized bed microwave freeze-drying (PFBMFD) of Chinese yam

机译:超声辅助渗透渗透脱水预处理在脉冲流化床微波冷冻干燥(PFBMFD)的中药

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摘要

The effect of ultrasound assisted osmotic dehydration (USOD) with 5% salt solution as the osmotic solution with pulsed fluidized bed microwave freeze-drying (PFBMFD) of Chinese yam (Dioscorea opposita Thunb.) was studied. Yam cubes were subjected to osmotic dehydration with different ultrasonic power (1.52, 2.28 and 3.04 W/ g) or without ultrasound for 10 min, and the mass transfer, water status and distribution, dielectric properties and microstructure were measured. The drying characteristics and quality attributes (color and total soluble polyphenols content, total flavones content and antioxidant capacity) of the pretreated and dried yams as well as texture, flavor and microstructure of dried yams were also studied. The USOD treatment increased the mass transfer, increased loss factor and made the water more mobile. Cell size increases were observed on the micrograph because of the application of higher ultrasonic power. Thus, the acceleration of drying and energy savings were achieved. The Page model was successfully fitted to the drying curves. Furthermore, PFBMFD dried yams with USOD pretreatment had good color and texture, reduced astringency and sourness, as well as improved antioxidant capacity when compared with fresh dried samples.
机译:超声辅助渗透脱水(USOD)用5%盐溶液作为渗透流化床微波冷冻干燥(PFBMFD)的渗透溶液(Dioscorea Opposita Thunb。)。山块立方体用不同的超声波功率(1.52,2.28和3.04W / g)或没有超声10分钟的渗透脱水,并测量传质,水位和分布,电介质性质和微观结构。还研究了预处理和干燥山药的干燥特性和质量属性(颜色和总可溶性多酚含量,总黄酮含量和抗氧化剂)以及干燥的山药的质地,风味和微观结构。 USOD治疗增加了传质,损耗因数增加,使水更加流动。由于应用更高的超声波,在显微照片上观察到细胞尺寸增加。因此,实现了干燥和节能的加速度。页面模型成功安装在干燥曲线上。此外,具有USOD预处理的PFBMFD干燥山药具有良好的颜色和质地,降低涩味和酸性,以及与新鲜干燥样品相比的抗氧化能力。

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