酸性焦油废弃物与煤混合选矿

Eksergi Pub Date : 2022-07-31 DOI:10.31315/e.v19i2.6346
D. Musademba, D. Simbi, P. K. Kuipa
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引用次数: 0

摘要

探讨了酸焦油废与煤共混选矿的可能性。首先根据近似分析确定酸焦油和煤样品的材料特性以及混合物的材料特性是至关重要的。酸焦油废煤配煤比例分别为3:1、1:1和1:3。结果表明,与煤相比,酸焦油废渣挥发分和水分含量高,灰分和碳含量低。与煤相比;当配比为3:1时,灰分和固定碳分别减少56.9%和7.6%,而挥发分则增加38.1%。当混合比例为1:3时,则相反。结果表明,以1:1的掺合比例掺合后,挥发物和灰分含量分别降低8.3%和52.7%,固定碳含量提高4.2%。混合比例的选择是固定碳和挥发物之间的权衡。如果挥发性物质有任何意义,那么3:1的混合物将是理想的;这种混合物有助于使煤更容易着火。另一方面,1:3的二元混合物产生更高的固定碳分数,其效果是提高燃料的热值,这是燃烧的一个极好的因素。然而,总的来说,将煤与酸焦油废料混合以提高可持续性具有经济意义。
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Acid Tar Waste Beneficiation Through Blending with Coal
The possibility of blending acid tar waste with coal as a beneficiation method was explored in this work. It was essential to first establish the material properties of the acid tar and coal samples together with that of the blends in terms of proximate analyses. The acid tar waste to coal blending ratios of 3:1, 1:1 and 1:3 were used. It was observed that acid tar waste exhibited high volatile and moisture content with low ash and carbon content when compared with coal. When compared with coal; a 3:1 blending ratio exhibited 56.9 % and 7.6 % reduction in ash and fixed carbon respectively and on the contrary a 38.1 % increase in volatile matter was observed. An opposite trend was obtained with 1:3 blend ratio. The 1:1 blend ratio was found to decrease the volatile and ash content by 8.3 % and 52.7 % respectively whilst fixed carbon boosted by 4.2 %. The choice for the blending ratio to apply is a trade-off between fixed carbon and volatile matter. If volatile matter is of any significance then a 3:1 mixture would be ideal; such a mixture will aid in easier ignition of coal.  On the other hand a 1:3 binary mixture yields a higher fixed carbon fraction, whose effect is to boost the calorific value of the fuel, an excellent factor for combustion. Overall however, it makes economic sense to blend coal with acid tar waste for enhancing sustainability.
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