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Clarification of the reaction at the solution interface of pyrite during oil agglomeration for developing desulfurization and coal cleaning efficiency

机译:澄清油团聚过程中黄铁矿溶液界面的反应,以提高脱硫和煤的清除效率

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Recently, large amounts of waste fine coals have been produced which are difficult to treat because of the high ash content and inorganic sulfuric compounds. In order to make efficient use of waste fine coal, the retrieval technique is necessary for recovery of coal combustible content from fine waste coals. Nowadays a floatation process is able to operate, but it is impractical for developing countries due to high costs. An oil agglomeration process can deal with these problems. In this study, we investigate the mechanism of the solution interface reaction on oil agglomeration in order to separate pyrite sulfur effectively from waste fine coal. For this purpose, we adjusted the pH of the solution of oil agglomeration experiments to the basic condition, which changed the surface characteristics to hydrophilicity from hydrophobicity. Furthermore, pH and dissolved oxygen changes of the solution were continually monitored and free ferric ions of the waste liquid were measured by flame atomic absorption spectrometry. These factors have a relationship with the oxidation and surface reaction of pyrite sulfur in the solution. Under high basic conditions, pyrite sulfur reduction indicated high values since the pyrite surface became hydrophilic due to covering of the surface of the pyrite sulfur by ferric hydroxide. As a result, the pyrite content did not recover together with hydrophobic carbonaceous content especially under high basic conditions. However, coal cleaning efficiency, especially of combustible matter recovery, dropped under these conditions due to increased ion intensity.
机译:近来,由于高的灰分含量和无机硫化合物,已经产生了难以处理的大量废粉煤。为了有效地利用废粉煤,回收技术对于从废粉煤中回收煤中的可燃物是必不可少的。如今,浮选过程已经可以运行,但是由于成本高昂,对于发展中国家来说这是不切实际的。油团聚过程可以解决这些问题。在这项研究中,我们研究了溶液界面反应对油团聚的作用机理,以便从废粉煤中有效分离出黄铁矿硫。为此,我们将油团聚实验溶液的pH值调整为基本条件,从而将表面特性从疏水性变为亲水性。此外,连续监测溶液的pH和溶解氧变化,并通过火焰原子吸收光谱法测量废液中的自由铁离子。这些因素与溶液中黄铁矿硫的氧化和表面反应有关。在高碱性条件下,由于黄铁矿表面由于氢氧化铁覆盖黄铁矿硫的表面而变得亲水,因此黄铁矿硫的还原显示出高值。结果,黄铁矿含量没有与疏水碳含量一起恢复,特别是在高碱性条件下。然而,由于离子强度的增加,在这些条件下,煤的清洁效率,特别是可燃物的回收效率下降。

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