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首页> 外文期刊>Drying technology: An International Journal >Changes in physicochemical properties of rice in response to high-temperature fluidized bed drying and tempering
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Changes in physicochemical properties of rice in response to high-temperature fluidized bed drying and tempering

机译:大米响应高温流化床干燥和回火物理化学性质的变化

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The effects of high-temperature fluidized bed drying and tempering on pasting, gelatinization, crystalline and microstructural properties of long-grain Vietnamese rice cultivar A10 were examined. The freshly harvest paddy (33% wet basis) was dried at two drying temperatures (80 and 90 degrees C) and two drying durations (2.5 and 3.0 min) using a custom-made lab-scale batch fluidized bed dryer. The dried rice was immediately tempered in sealed containers at 75 and 86 degrees C for various tempering durations (0, 30, 40, and 60 min), followed by thin-layer drying at 35 degrees C to reduce moisture level to 14% wet basis. Characterization of pasting, gelatinization, crystallinity, and microstructure of the dried rice was undertaken using rapid visco analyzer, differential scanning calorimetry, X-ray diffraction (XRD), and environmental scanning electron microscopy (ESEM), respectively. Pasting properties and gelatinization enthalpy decreased with higher drying temperature and longer tempering time while pasting and gelatinization temperatures increased. Degree of crystallinity changed slightly, however, a shift from A-type to A+V-type XRD pattern was observed. ESEM observation demonstrated some degree of collapse of the rice microstructure. The kernel integrity appeared to be enhanced by the gel network formed during partial gelatinization of starch, corroborating with the changes in pasting and gelatinization properties of the fluidized bed dried and tempered rice.
机译:研究了高温流化床干燥和回火对越南越南水稻品种A10的粘贴,糊化,晶体和微观结构性能的影响。使用定制的实验室级批流化床干燥器,在两个干燥温度(80℃)和两个干燥持续时间(2.5和3.0分钟)下进行新鲜收获的稻谷(33%湿的基础)。在75和86℃下立即回火干燥的水稻,用于各种回火持续时间(0,30,40和60分钟),然后在35℃下进行薄层干燥,以将水分水平降低至14%湿法。使用快速粘合剂分析仪,差分扫描量热法,X射线衍射(XRD)和环境扫描电子显微镜(ESEM)进行干燥水稻的粘贴,糊化,结晶度和微观结构的表征。粘贴性质和凝胶化焓随着较高的干燥温度和较长的回火时间而降低,而粘贴和凝胶化温度增加。结晶度略微发生变化程度,然而,观察到从型到A型+ V型XRD图案的偏移。 ESEM观察显示了米微观结构的一定程度的崩溃。在淀粉的部分凝胶化期间形成的凝胶网络似乎通过形成的凝胶网络来增强,以使流化床干燥和升温水稻的糊状和糊化性能的变化来增强。

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