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The glass transition temperature concept in rice drying and tempering: Effect on drying rate

机译:水稻干燥和回火中的玻璃化温度概念:对干燥速率的影响

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Research on rice drying and tempering has shown that high drying temperatures (up to 60degrees C) and high moisture removal rates (up to 6 percentage points moisture content) can be used without reducing milling quality as long as sufficient tempering at a temperature above the glass transition temperature (T-g) is allowed between drying passes. Using drying air temperatures above the T-g of the rice significantly reduces drying and tempering durations since kernel moisture diffusivity is much higher above T-g. Understanding the effects of glass transition is important in optimizing the drying and tempering processes in terms of overall required drying durations to achieve given moisture removals. The objective of this study was to investigate the effect of T-g on drying rates when using drying air temperatures above and below T-g. Both medium-grain and long-grain rice was harvested during 2000 and dried under various air conditions above and below the T-g of the rice. Results showed that rice dried significantly faster above T-g than below T-g. In addition, high temperature/low relative humidity drying air conditions, which result in a low equilibrium moisture content, apparently caused the surface of the kernel to transition from a rubbery to a glassy state and reduced the drying rate.
机译:对稻米干燥和回火的研究表明,只要在高于玻璃的温度下进行足够的回火,就可以使用较高的干燥温度(最高60摄氏度)和较高的水分去除率(最高水分含量6个百分点)而不会降低研磨质量在两次干燥之间允许转变温度(Tg)。使用高于稻米T-g的干燥空气温度会大大减少干燥和回火的时间,因为籽粒的水分扩散率要比T-g高得多。就实现给定的水分去除所需的总干燥时间而言,了解玻璃化转变的影响对于优化干燥和回火过程非常重要。这项研究的目的是研究使用高于和低于T-g的干燥空气温度时T-g对干燥速率的影响。 2000年收获了中粒米和长粒米,并在各种空气条件下将稻米的T-g上下加热。结果表明,米在T-g以上的干燥明显快于T-g以下。另外,导致平衡水分含量低的高温/低相对湿度的干燥空气条件显然导致籽粒表面从橡胶态转变为玻璃态并降低了干燥速率。

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