High phosphorous oolitic hematite ore is one of typical intractable iron ores in China, and the conventional beneficiation methods are found to be impracticable to , remove phosphorus from the ore effectively. Better ...
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High phosphorous oolitic hematite ore is one of typical intractable iron ores in China, and the conventional beneficiation methods are found to be impracticable to , remove phosphorus from the ore effectively. Better beneficiation index were gotten by direct reduction roasting with dephosphorization agent followed by two stages of grinding and magnetic separation. P content decreases from 0.82% in the raw ore to 0.06% in the magnetic concentrate, and the total iron grade increases from 43.65% to 90.23%, the recovery of iron can reach 87%. Mechanisms of phosphorus removal in the beneficiation of high phosphorous oolitic hematite ore by direct reduction roasting with dephosphorization agent were studied using XRD, SEM and EPMA. The results showed that about 20% of the apatite in the raw ore transferred into phosphorus and volatilized with the gas in the process of reduction roasting, while the rest 80% apatite was not involved in the reaction of generation of phosphorus, and remained as apatite in the roasted products, which was removed to tailings by grinding and magnetic separation. A small amount of phosphorus existed in the magnetic concentrate as apatite. The oolitic texture of raw ore was partly changed during roasting, resulting in the formation of nepheline in the reaction between the dephosphorization agent, SiO2 and Al2O3 in the raw ore, which greatly improved the liberation degree of minerals in the roasted products, and it was beneficial to the subsequent grinding and magnetic separation.
基于颗粒流理论和PFC3D程序,建立Lac du Bonnet花岗岩的BPM模型,施加周期性边界条件。通过使周期性空间扭曲变形,保持恒定的平均应力p和Lode角q,进行真三轴试验,提出一种修正Mohr-Coulomb准则形状函数的新方法。建立试样的三维强度包络...
详细信息
基于颗粒流理论和PFC3D程序,建立Lac du Bonnet花岗岩的BPM模型,施加周期性边界条件。通过使周期性空间扭曲变形,保持恒定的平均应力p和Lode角q,进行真三轴试验,提出一种修正Mohr-Coulomb准则形状函数的新方法。建立试样的三维强度包络面,并从三轴平面、双轴平面和p平面3个角度,探讨Mohr-Coulomb准则的局限性:(1)Mohr-Coulomb准则预测的单轴抗拉强度偏大。(2)Mohr-Coulomb准则未考虑中间主应力的影响。(3)Mohr-Coulomb准则适用范围有限,在30 30s-°
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