采用溶出环方法的某金选矿厂建模与仿真

IF 1.3 4区 工程技术 Q4 CHEMISTRY, PHYSICAL Physicochemical Problems of Mineral Processing Pub Date : 2023-05-22 DOI:10.37190/ppmp/166377
Erdem Özdemir, Richard Dixon, Juha Saari, Diana Kasymova, Berivan Tunc, Danish Bilal, Enkhzul Bayarmagnai, Aleksandra Lang, Kaija Koskenkorva, Jaakko Larkomaa
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引用次数: 0

摘要

矿物加工应用越来越多地使用循环水来保护淡水自然资源并遵守环境法规。然而,在工艺水中积累的阴离子、阳离子和试剂可能会影响工厂的浮选性能和生产连续性。因此,可能需要采取许多成本措施来减轻循环水的影响。通常,对于一个新建项目,工艺水的性质及其对浮选性能的影响是未知的。通常,其结果是过程工厂的过度扩张,并带来额外的财务成本。本文的实验方法侧重于在任何新建项目的粉碎和浮选过程中创造更接近实际工艺用水的测试水。研究的范围包括创造可能的工艺水,进行浮选实验和模拟。为了验证溶解环法,在芬兰实验室选择了难选金浮选厂条件。将溶解环浮选动力学模拟结果与实际厂体质量平衡进行了比较。对比结果表明,溶解环法生成的工艺水除SO4浓度不同外,其物理化学性质与现场实际工艺水基本相同。此外,将实验数据与工厂质量平衡研究的模拟结果进行对比,结果表明,模拟结果中的金品位和回收率低于实际工厂质量平衡。
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Modeling and simulation of a gold concentrator plant implementing a dissolution loop method
Mineral processing applications increasingly use recycled water to preserve freshwater natural resources and comply with environmental regulations. However, accumulating anions, cations, and reagents in the process water may affect plant flotation performance and production continuity. Therefore, many cost actions may be needed to mitigate the recycled water effects. Typically, the process water properties and their effects on flotation performance are unknown for a greenfield project. Often, the result is an over-scaling up of the process plant with an additional financial cost. The experimental methodology in the paper focuses on creating water for testing that is closer to the actual process water during the comminution and flotation process for any greenfield project. The scope of the study consists of creating possible process water, conducting flotation experiments, and simulation. In order to validate the dissolution loop method, refractory gold flotation plant conditions were selected in our Finland laboratory. The simulation results of dissolution loop flotation kinetics were compared with the actual plant mass balance. According to the comparative results, the process water created by the dissolution loop method has the same physical and chemical properties as the actual process water at the site except for SO4 -concentration. Moreover, comparing the simulation results of the experimental data and plant mass balance studies shows that the gold grade and recovery results in the simulation were lower than the actual plant mass balance.
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来源期刊
Physicochemical Problems of Mineral Processing
Physicochemical Problems of Mineral Processing CHEMISTRY, PHYSICAL-MINING & MINERAL PROCESSING
自引率
6.70%
发文量
99
期刊介绍: Physicochemical Problems of Mineral Processing is an international, open access journal which covers theoretical approaches and their practical applications in all aspects of mineral processing and extractive metallurgy. Criteria for publication in the Physicochemical Problems of Mineral Processing journal are novelty, quality and current interest. Manuscripts which only make routine use of minor extensions to well established methodologies are not appropriate for the journal. Topics of interest Analytical techniques and applied mineralogy Computer applications Comminution, classification and sorting Froth flotation Solid-liquid separation Gravity concentration Magnetic and electric separation Hydro and biohydrometallurgy Extractive metallurgy Recycling and mineral wastes Environmental aspects of mineral processing and other mineral processing related subjects.
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