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首页> 外文期刊>Energy Sources >Recovery of Coal from Cyclone Overflow Waste Coals by Using a Combination of Jameson and Column Flotation
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Recovery of Coal from Cyclone Overflow Waste Coals by Using a Combination of Jameson and Column Flotation

机译:詹姆逊和柱浮选相结合从旋风溢流废煤中回收煤炭。

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摘要

In this study, combustible matters are recovered from high-ash waste coal separately, first by Jameson flotation and then column flotation. Although high combustible recovery can be obtained from waste coal by Jameson cell, low-ash coals could not be obtained due to low froth height. High froth depth in column flotation has increased the probability of particles dropping back from froth to pulp and very low-ash products have been obtained. However, column flotation has been relatively less successful compared to Jameson flotation in terms of coal recovery. Therefore, both cells have been combined in a common circuit system and low-ash products have been achieved with high combustible recovery values. As a result, clean coals with 7.12% ash were recovered from waste coal having 48.80% ash with 73.60% combustible recovery in the common circuit system. However, in a similar circuit system only with column flotation, coals with 7.04% ash were recovered with 67.85% combustible recovery value. On the other hand, only with Jameson cell, coals with 10.40% ash were recovered with 74.50% combustible recovery.
机译:在这项研究中,可燃物质分别从高灰分废煤中回收,首先是詹姆逊浮选,然后是柱浮选。尽管通过詹姆逊电解池可以从废煤中获得较高的可燃物回收率,但由于泡沫高度低,因此无法获得低灰分的煤。柱浮选中较高的泡沫深度增加了颗粒从泡沫回落到纸浆的可能性,并且获得了非常低灰分的产品。但是,就煤炭回收率而言,与詹姆逊浮选相比,柱浮选的成功率相对较低。因此,两个电池都被合并在一个公共电路系统中,并且获得了具有高可燃回收率值的低灰分产品。结果,在公用回路系统中,从灰分为48.80%,可燃物回收率为73.60%的废煤中回收了灰分为7.12%的清洁煤。但是,在仅进行塔浮选的类似循环系统中,以7.045%的可燃回收率回收了灰分为7.04%的煤。另一方面,仅在詹姆森电解池中,灰分为10.40%的煤被回收,可燃回收率为74.50%。

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