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A Novel Approach for Improving Column Flotation of Fine and Coarse Coal

机译:一种改善粗,细煤柱浮选的新方法

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Froth flotation, applied to the separation of solid particulates, has been practiced commercially for a long time in the coal and mineral industries. The potential benefits of establishing a deep froth, especially in column flotation have been shown by a number of researchers, and that includes demonstrating that the froth phase is much more efficient at mineral upgrading than is the pulp phase. This approach could be useful in where the particles have difficulty in reporting from pulp phase to froth phase. Hence, it is expected that introduction of particles into the froth phase will significantly improve the grade and recovery of particles. In this paper, a novel way of operating a flotation column was implemented, and the results were compared to those when operating the same column in the conventional fashion. Tests were conducted with both fine and coarse coals. Feeding into the froth zone enhances bubble-particle contact as observed by a higher product yield of 79.4% compared to a conventional column flotation yield of 73.4%, both at about 9% product ash. It was also observed that the novel froth feed improved the recovery of coarse (+ 1 mm) coal particles from 0.9 weight percent to 2.2 weight percent compared to the conventional way of feeding slurry to pulp. Similarly, recovery of 1×0.6 mm particles improved from 4.6 weight percent to 8.3 weight percent at the same ash level. Positive results were also obtained by external reflux of a portion of the concentrate back into the top of the column. The potential to simultaneously achieve improvement in both recovery and grade can be explained by application of conventional mass transfer concepts, analogous to developments in two-phase foam fractionation.
机译:泡沫浮选,用于分离固体颗粒,已经在煤炭和矿物工业中进行了很长时间的商业实践。许多研究人员已经证明了建立深层泡沫的潜在好处,尤其是在柱浮选中,并且包括证明泡沫相在矿质提升方面比纸浆相更有效。这种方法在颗粒难以从纸浆相向泡沫相报告的情况下可能有用。因此,预期将颗粒引入泡沫相将显着改善颗粒的等级和回收率。在本文中,实施了一种新颖的操作浮选塔的方法,并将结果与​​以常规方式操作同一浮选塔的结果进行了比较。用细煤和粗煤进行测试。如在约9%的产品灰分下,与常规的柱浮选产率(73.4%)相比更高的产品产率(79.4%)观察到,进料到泡沫区增强了气泡-颗粒接触。还观察到,与将浆液进料到纸浆的常规方式相比,新型泡沫进料将粗(+ 1mm)煤颗粒的回收率从0.9重量%提高至2.2重量%。类似地,在相同灰分水平下,1×0.6 mm颗粒的回收率从4.6重量%提高到8.3重量%。通过将一部分浓缩物外部回流回到塔顶也获得了积极的结果。类似于两相泡沫分离技术的发展,可以通过应用传统的传质概念来解释同时提高回收率和分级的潜力。

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