不同工艺水源对铜矿粗选浮选效率的影响:Sarcheshmeh 铜厂(伊朗)案例研究

Amir Mousa Soufiabadi, Reza Dehghan, Milad Nejadaria, Mehdi Safari, A. Hassanzadeh, H. Khoshdast
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引用次数: 0

摘要

本研究调查了不同来源的工艺用水对 Sarcheshmeh 铜矿制备的硫化铜矿石浮选效率的影响。为此,研究人员制备了工厂淡水、铜钼精矿浓缩池溢流、铜精矿浓缩池溢流、循环水池以及淡水和循环水混合物的样本,并对其进行了表征。浮选试验是在与选矿厂粗选回路相同的条件下进行的,并在所有试验期间保持恒定。铜、铁、钼和二氧化硅的品位和回收率被选为浮选试验的冶金响应。对结果进行了统计分析,以评估从实验结果中得出的水源对浮选性能影响的相对重要性。结果表明,铜精矿浓缩池溢流对浮选效率的影响最大,因此精矿中铜的品位和回收率分别降低了约 10%和 75%,铁的品位和回收率分别降低了约 10%和 6%,而硅的品位和回收率分别提高了 0.1%和 12%,钼的品位和回收率分别提高了 3%和 25%。产生这种效果的原因是,该水源中悬浮固体颗粒以及 Cu2+、Mo2+ 和 Fe2+ 阳离子含量较高,增加了对煤矸石矿物的包覆效果和夹带率。钼浮选效果的改善还归因于工厂中可能存在浮选过程中产生的残余柴油。由于所有工艺水源中的含量相对相等,因此很难确定阴离子和溶解盐离子的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of different process water sources on rougher flotation efficiency of a copper ore: A case study at Sarcheshmeh Copper Complex (Iran)
In this research, the effect of different sources of process water on the flotation efficiency of copper sulfide ore prepared from the Sarcheshmeh copper mine was investigated. For this purpose, samples of fresh water to the plant, overflows of copper-molybdenum concentrate thickener, copper concentrate thickener, and recycled water pool as well as a mixture of fresh water and recycled water were prepared and characterized. Flotation tests were performed under the same conditions as the plant’s rougher circuit and were kept constant during all experiments. Grade and recovery of copper, iron, molybdenum, and silica were selected as the metallurgical response of flotation tests. The results were subjected to statistical analysis to assess the relative significance of which water source affects the flotation performance as evaluated from the experimental results. The results showed that the copper concentrate thickener overflow had the greatest effect on the flotation efficiency, so the grade and recovery decreased by about 10% and 75% for copper, and 10% and 6% for iron in the concentrate, respectively, while the grade and recovery increased up to 0.1% and 12% for silica, and 3% and 25% for molybdenum, respectively. The reason for this effect was attributed to the high content of suspended solid particles, and Cu2+, Mo2+, and Fe2+ cations in this water source that increased the coating effect over gangue minerals and entrainment rate. The improvement of molybdenum flotation was also ascribed to the possible presence of residual diesel oil from the flotation process in the plant. Due to the relatively equal amount in all sources of process water, the effect of anions and ions of dissolved salts was difficult.
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