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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >The effect of electric field intensification on vanadium extraction from shale via microwave roasting-acid leching process
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The effect of electric field intensification on vanadium extraction from shale via microwave roasting-acid leching process

机译:电磁场强化对通过微波焙烧酸碱法从页岩钒提取的影响

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摘要

In this work, simulations and actual experiments were combined to investigate the electric field (E-field) intensification on vanadium extraction from shale via microwave roasting-acid leching process. In microwave field, the highest E-field intensity occurred around the contact interface of adjacent shale particles and was about 40 times the value of a single particle. It enabled the contact interface to rapidly rise to 1800 ?C within 60 s. Between pure muscovite particles, the E-field intensification also occurred but there was no associated hot spot. The E-field intensification phenomenon in muscovite particles reduced the temperature of the decomposition reaction of muscovite by nearly 200 ? and increased the oxidation efficiency of V3+ by nearly 3 times. The hot spots accompanied by the E-field intensification in shale particles promote this enhanced effect and lowered the observing roasting temperature.
机译:本文采用模拟和实际实验相结合的方法,研究了微波焙烧-酸浸提页岩提钒过程中电场的强化作用。在微波场中,最大电场强度出现在相邻页岩颗粒的接触界面附近,约为单个颗粒的40倍。它使接触界面迅速上升到1800?C在60秒内。在纯白云母颗粒之间,也发生了电场增强,但没有相关热点。白云母颗粒中的电场增强现象使白云母分解反应的温度降低了近200℃?使V3+的氧化效率提高近3倍。伴随着页岩颗粒中电场增强的热点促进了这种增强效应,并降低了观察到的焙烧温度。

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