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A novel process based on gas filled membrane absorption to recover cyanide in gold mining

机译:一种基于充气膜吸收法回收金矿中氰化物的新工艺

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In the last ten years, the operational costs in the gold and silver cyanidation processes have increased, fundamen tally, due to the treatment of ores which contains high cyanide soluble metals, such as zinc, copper, and nickel, among others, increasing the cyanide consumption along with the increase in cyanide price. Additionally, the high cyanide consumptions in gold operations have increased the cyanide contents in leach tailings, forcing the inclusion of processes to recover or eliminate cyanide. For these reasons, a membrane contactor operation to recover cyanide from gold mining, using gas filled membrane absorption is proposed in this study, performing laboratory tests in order to determine the throughput of this process and the most relevant parameters, which affect the cyanide recovery. Gas Filled Membrane Absorption (GFMA) process can extract cyanide, using an ab sorption solution of NaOH. In this process, previously reported for wastewater treatment, a hydrophobic mem brane with its pores filled with air separates an aqueous stream containing cyanide and receives a solution with a high pH value. These aqueous solutions cannot penetrate into the membrane pores, promoting the cyanide transfer from the cyanidation solution to the receiving solution. The experimental results show cyanide recover ies higher than 90% in extraction times of approximately 10 min, achieving an average cyanide transfer rate of 0.01 kg m~(-2) h~(-1) and identifying the pH, feed flow rate and copper concentration as the most influential param eters on the performance of the process. Furthermore, a phenomenological transport model was developed in order to explain the critical steps of the cyanide transfer in the GFMA process. This model was validated by means of the comparison with the experi mental results of cyanide extraction with the presence of Cu(I) and Zn(II) ions, obtaining a statistical error lower than 10%. Thus, the gas filled membrane absorption process can recover cyanide, with similar performance to the current cyanide recovery processes, and could involve a smaller size of the equipment due to the high transfer surface area per volume that membrane contactors have.
机译:在过去的十年中,由于处理含有高氰化物可溶性金属(例如锌,铜和镍等)的矿石,金和银氰化过程的运营成本从根本上增加了消费以及氰化物价格的上涨。此外,金矿操作中氰化物的高消耗增加了浸出尾矿中氰化物的含量,从而迫使人们采用回收或消除氰化物的方法。由于这些原因,本研究提出了一种膜接触器操作,该方法采用气体填充膜吸收法从金矿中回收氰化物,并进行实验室测试以确定该工艺的产量和影响氰化物回收的最相关参数。气体填充膜吸收(GFMA)工艺可以使用NaOH吸收溶液提取氰化物。在以前报道的用于废水处理的这一过程中,疏水性膜膜膜的孔中充满了空气,该膜膜分离出含有氰化物的水流,并接收具有高pH值的溶液。这些水溶液不能渗透到膜孔中,从而促进氰化物从氰化溶液转移到接收溶液。实验结果表明,在大约10分钟的萃取时间内,氰化物的回收率高于90%,平均氰化物转移速率为0.01 kg m〜(-2)h〜(-1),并确定了pH,进料流速和铜浓度是影响工艺性能的最重要参数。此外,为了解释在GFMA过程中氰化物转移的关键步骤,开发了一种现象学迁移模型。通过与存在Cu(I)和Zn(II)离子的氰化物萃取的实验结果进行比较,验证了该模型的准确性,其统计误差低于10%。因此,充气的膜吸收过程可以回收氰化物,其性能与目前的氰化物回收过程相似,并且由于膜接触器每单位体积具有较高的转移表面积,因此可以占用较小的设备尺寸。

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