首页> 外文会议>nternational Symposium on Precious Metals >IMPACT OF RECYCLING CYANIDE AND ITS REACTION PRODUCTS ON UPSTREAM UNIT OPERATIONS
【24h】

IMPACT OF RECYCLING CYANIDE AND ITS REACTION PRODUCTS ON UPSTREAM UNIT OPERATIONS

机译:回收氰化物及其反应产物对上游单元操作的影响

获取原文
获取外文期刊封面目录资料

摘要

A typical operations outcome to dealing with the environmental and economic issues associated with cyanide in gold plant tailings streams involves the recycle of cyanide and its associated reaction products. This recycle stream may take the form of return dam water or tailings thickener overflow to the mill, or a cyanide recovery stream to the leach from a SART (sulfidization-acidification-recycling-thickening) or AVR (acidification-volatilization-reneutralization) circuit. The chemical composition and cyanide speciation of these solutions may be relatively complex, containing various metal cyanide species, thiocyanate, cyanate and other breakdown products. Several of these species are reported to have a deleterious effect on upstream unit operations. For example, while cyanide is in common use as a depressant for pyrite in mineral flotation, ferrocyanide and thiocyanate ions have also been shown to exhibit a depressant action in some cases. Primary flotation recovery of gold can thus be compromised and may be responsible for significant lost revenue, particularly from high-grade refractory gold operations. Bioleaching plants tend to separate cyanide circuits to an independent water balance to ensure that no cyanide or thiocyanate returns to inflict dire consequences on the bacterial population. Tolerable levels of these ions are exceedingly low, creating a risk factor and constraining water balance flexibility. Milling-in-cyanide has been periodically mooted as a beneficial circuit modification, particularly in operations that have tailings thickening, SART or dolomitic ore from which significant levels of free and complexed cyanides and thiocyanates are present. Potential consequences include unwanted side reactions with freshly activated mineral surfaces within mills operating at elevated temperatures and significant cyanide losses under these conditions. The evidence for the effects of recycled cyanides and associated species on upstream gold processing circuits have to date not been assessed in a systematic fashion. This paper presents a review of the available literature and analysis of associated data in these areas. Common arguments from operators justifying certain process plant configurations, modifications and operating setpoints around recycle streams are examined. Impacts of cyanide recycle on milling, flotation and bioleaching are quantified in the context of exemplary case studies. The various literature and case study flowsheets provide a useful analysis of the application of recycle streams to operating plant flowsheets, often requiring creative or inelegant solutions. In the current work, plant operating data is analyzed to quantify some of these effects; moreover, a simulation model has been developed to further quantify and explain some of these effects and provide insight into the decision-making process for plant designers and operators alike.
机译:处理与金植物尾矿流中氰化物相关的环境和经济问题的典型作业结果涉及氰化物的回收及其相关的反应产物。该循环流可以从SART(亚硫化酸化 - 再循环 - 增稠)或AVR(酸化 - 挥发 - rENCEUTIZ大学)电路中以氰化物增稠剂溢出到研磨机或氰化物回收流的形式。这些溶液的化学成分和氰化物物种可以是相对复杂的,含有各种金属氰化物物种,硫氰酸酯,氰酸酯和其他分解产物。据报道,这些物种中有几种对上游单位运营产生有害影响。例如,虽然氰化物是矿物浮选中的黄铁矿抑制剂的常见用途,但在某些情况下也已经显示了铁偶氰化物和硫氰酸酯离子在某些情况下表现出抑制作用作用。因此,黄金的主要浮选恢复可能会受到损害,并且可能负责显着损失的收入,特别是来自高档耐火金作业。生物浸入植物倾向于将氰化物电路分离为独立的水平衡,以确保没有氰化物或硫氰酸酯返回对细菌种群的可怕后果造成恐怖后果。可容许的这些离子的水平非常低,产生风险因素和限制水平衡柔性。碾磨氰化物已定期被称为有益的电路改性,特别是在具有尾矿增厚的操作中,SART或Dolomit矿石存在于此,存在显着的自由和复合氰化物和硫氰酸酯。潜在后果包括在在升高温度和这些条件下在升高的温度和显着的氰化物损失下与新鲜活性的矿物表面进行不需要的副反应。迄今为止,迄今为止,迄今为止,迄今为止还没有以系统的方式评估循环氰化物和相关物种对上游金处理电路影响的证据。本文提出了对这些领域相关数据的可用文献和分析的审查。检查循环流围绕回收流的某些过程工厂配置,修改和操作设定值的运算符的常见争论。在示例性案例研究的背景下,量化氰化物再循环对碾磨,浮选和生物浸出的影响。各种文献和案例研究流程表提供了对循环流到运营植物流程的应用的有用分析,通常需要创造性或不合解的解决方案。在当前的工作中,分析了工厂操作数据以量化其中一些效果;此外,已经开发了一种模拟模型来进一步量化和解释其中一些效果,并提供对工厂设计师和运营商的决策过程的洞察。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号