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Development of techniques for storing rough rice in cold regions (Part 1) - storage of rough rice at country elevator with natural heat radiation in winter

机译:寒冷地区储存粗米的技术的发展(第1部分) - 冬季天然热辐射粗糙米饭储存

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摘要

An on-farm experiment in which 361 metric tons of rough rice was stored in a silo from November until July was conducted at a country elevator in Hokkaido to develop new techniques for storing rough rice in cold regions. The temperature of the rough rice near the inner silo wall decreased to below ice point (5°C) due to natural heat radiation in winter, which the temperature of the rough rice in the center of the silo was maintained at almost the same temperature as that at the beginning of storage (5°C). Ventilation in the upper vacant space of the silo prevented moisture condensation on the inside surface of the silo during storage. When the cold rough rice was unloaded from the silo in summer, an unheated forced-air drier was used to increase the temperature of rough rice to above the dew point temperature of surrounding air. During the unloading and rewarming process, the moisture content of the rough rice increased due to moisture condensation on the grain from the air. However, the husks first absorbed the condensation and then the moisture slowly permeated into the brown rice kernel. Thus the rewarming process didn't cause any fissures in the brown rice. The results of the experiment indicate that condensation on rough rice doesn't give rise to any problems.
机译:一个农场实验,其中361公吨稻米储存在11月,储存于7月,直到7月在北海道的一个国家电梯上进行,开发用于在寒冷地区储存粗糙的米饭的新技术。由于冬季天然热辐射,内部筒仓壁附近的粗糙米饭的温度降低到冰点(5°C),筒仓中央的粗糙米温度保持在几乎相同的温度在存储开始(5°C)。在筒仓的上部空位空间中的通风阻止了在储存期间筒仓内表面上的水分凝结。当夏季从筒仓卸下冷粗糙的米饭时,将使用未加热的强制空气干燥器将粗糙水稻温度提高到周围空气的露点温度。在卸载和复活过程中,由于空气中的谷物的水分凝结,粗糙水稻的水分含量增加。然而,壳体首先吸收缩合,然后水分缓慢渗透到糙米核中。因此,再蜂的过程没有造成糙米中的任何裂缝。实验结果表明,粗糙水稻的凝结不会产生任何问题。

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