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Pilot-scale Studies of Ash and Sulfur Removal from Fine Coal by Using the Cylojet Flotation Cell

机译:利用Cylojet浮选池从细煤中去除灰和硫的中试研究

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This article presents the results of pilot-scale studies of ash and sulfur removal from a Turkish coal by using the cyclojet flotation cell. The cyclojet cell, which was developed by H. Hacifazlioglu and I. Toroglu in 2006, utilizes an alternative jet flotation technique. Apart from being based on the working principle of jet flotation, the cyclojet cell incorporates centrifugal forces into the flotation process, thus providing an excellent separation for ash and pyritic sulfur removal. The most important parameters for the removal of ash and pyritic sulfur in the cycojet cell are the length of the conical jet, frother type, wash water rate, and froth thickness. With decreasing the conical jet length and increasing the wash water rate and froth thickness, there is an increase in the removal of pyritic sulfur. On the other hand, the frothing agents MIBC produced better results in terms of pyritic sulfur removal in the cyclojet cell. Under optimal conditions, the cyclojet cell removed 61.25% of the pyritic sulfur and 73.98% of the ash with a combustible recovery value of 71.10% without any need for a depressant.
机译:本文介绍了使用环流浮选池对土耳其煤中的灰分和硫去除进行中试研究的结果。 H. Hacifazlioglu和I. Toroglu在2006年开发的环流喷射池利用了一种替代的浮选技术。除了基于喷射浮选的工作原理之外,环流式喷射池还将离心力纳入浮选过程中,从而为灰分和黄铁矿硫的去除提供了出色的分离效果。在cycojet池中去除灰分和黄铁矿硫的最重要参数是圆锥形射流的长度,起泡器类型,洗涤水速度和泡沫厚度。随着锥形射流长度的减小和洗涤水速率和泡沫厚度的增加,黄铁矿硫的去除增加。另一方面,就环喷室中的硫铁脱硫而言,起泡剂MIBC产生了更好的结果。在最佳条件下,回旋喷射池无需任何抑制剂即可除去61.25%的硫铁矿硫和73.98%的灰分,可燃回收值为71.10%。

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