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Separation of Pyritic Sulfur from Egyptian Coal Using Falcon Concentrator

机译:使用Falcon选矿厂从埃及煤炭中分离硫铁矿硫

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Pyritic sulfur separation of El-Maghara coal ore was studied using Falcon concentrator model SB40-VFD as an enhanced centigugal gravity separator. The coal sample was ground to below 100 mu m to reach liberation between pyrite and coal. Optimization of the separation process has been studied using central composite rotatable design (CCRD) and response surface method (RSM). The studied working factors were the back-water pressure (psi) and rotation frequency (Hz) and their interactions, where the feeding rate and pulp density were kept constant through all experiments. A model describing the relation between pyritic sulfur separation efficiency percentage and the previously mentioned operating variables and their interactions, have been designed. Results showed that maximum separation efficiency reached 70.61%, with decreasing total sulfur, and pyritic sulfur contents reaching 1.72% and 0.48% from original assays reaching 2.90% and 1.60%, respectively. That maximum separation efficiency was attained at 78.38Hz rotation frequency (rotor speed 2282rpm, 300g) and 3.90psi back-water pressure. The amenability of pyritic sulfur separation from the Egyptian coal using Falcon concentrator are determined. Technical difficulties within the separation process are highlighted.
机译:使用Falcon SB40-VFD选矿机作为增强型离心重力分离机,对El-Maghara煤的硫铁矿硫分离进行了研究。将煤样品研磨至100微米以下,以在黄铁矿和煤之间释放。已经使用中央复合旋转设计(CCRD)和响应面方法(RSM)研究了分离过程的优化。研究的工作因素是回水压力(psi)和旋转频率(Hz)及其相互作用,在所有实验中进料速度和纸浆密度均保持恒定。设计了一个模型,描述了硫铁矿分离效率百分比与前面提到的操作变量及其相互作用之间的关系。结果表明,最大分离效率达到70.61%,总硫含量降低,黄铁矿硫含量分别从原始分析的2.90%和1.60%分别达到1.72%和0.48%。在78.38Hz的旋转频率(转子速度2282rpm,300g)和3.90psi的回水压力下达到了最大分离效率。确定了使用Falcon选矿机从埃及煤炭中分离黄铁矿硫的适宜性。突出了分离过程中的技术困难。

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