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首页> 外文期刊>RSC Advances >Microwave roasting with size grading based on the influence of carbon on vanadium extraction from stone coal via microwave roasting-acid leaching
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Microwave roasting with size grading based on the influence of carbon on vanadium extraction from stone coal via microwave roasting-acid leaching

机译:基于碳对石炭通过微波焙烧-酸浸提钒的影响,进行大小分级的微波焙烧

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Carbon in stone coal has a double-edged function in the microwave roasting-acid leaching of stone coal; it provides stone coal with good heating characteristics, but it hinders the oxidization of vanadium and causes the sintering phenomenon. Adjustment of the particle size and microwave input power is performed to use the advantages of carbon and avoid its disadvantages. Fine particles are not suitable for direct microwave roasting due to their low heating rate, low final temperature and serious sintering phenomenon. However, for coarse particles, a high microwave input power causes more carbon to be retained in the stone coal in the heating stage to obtain a high heating rate and final temperature. These carbon particles are removed in the temperature holding stage because of the unique cracks and pores of coarse particles under the high microwave input power condition. Comprehensively considering the heating characteristics and vanadium leaching efficiency of stone coal, a 1–3 mm particle size and 1200–1800 W microwave input power are suitable for the microwave roasting of stone coal. The vanadium leaching efficiency of the roasted sample in this condition is 14% higher than the roasted sample without size grading.
机译:石煤中的碳在石炭的微波焙烧-酸浸中具有双重作用。它为石煤提供了良好的加热特性,但阻碍了钒的氧化并引起烧结现象。进行粒径和微波输入功率的调节是为了利用碳的优点并避免其缺点。细颗粒由于它们的低加热速率,低最终温度和严重的烧结现象而不适用于直接微波焙烧。但是,对于粗颗粒而言,高微波输入功率会导致更多的碳在加热阶段保留在石煤中,从而获得较高的加热速率和最终温度。由于在高微波输入功率条件下粗颗粒的独特裂纹和孔洞,这些碳颗粒在保温阶段被去除。综合考虑石煤的加热特性和钒的浸出效率,1-3 mm的粒径和1200-1800 W的微波输入功率适用于石煤的微波焙烧。在这种条件下,焙烧样品的钒浸出效率比没有分级的焙烧样品高14%。

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