红土
镍
热扩散率
微波食品加热
冶金
材料科学
能源消耗
窑
微波加热
微波功率
扩散
环境科学
比能量
热力学
物理
生物
量子力学
生态学
作者
Wei Lv,Yuntao Xin,R. Elliott,Jingjing Song,Xuewei Lv,Mansoor Barati
标识
DOI:10.1080/08827508.2020.1801433
摘要
The microwave drying of a Philippine nickel laterite ore was proposed as an alternative drying method to reduce the air pollution before further pyrometallurgical processing. The effect of thickness of ore bed and microwave power on the specific energy consumption and effective diffusivity were assessed. The results show that the specific energy consumption decreases with increasing the bed thickness and that the specific energy consumption exhibits a minimum at 1200 W. Besides, the increase of nickel laterite thickness and microwave power promotes the effective diffusivity. Compared with the removal of free water, crystalline water removal is proved to be much more energy-intensive. Furthermore, the specific energy consumption in microwave drying of laboratory scale is substantially higher than commercial rotary kiln drying.
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