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Influence of operating conditions on the removal of metals and sulfate from copper acid mine drainage by nanofiltration

机译:经营条件对纳米滤灰铜酸矿区排水除去金属和硫酸盐的影响

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摘要

The primary objective of this investigation was to evaluate the ability of two commercial spiral-wound membranes (NF90 and NF270) to remove metals and sulfate from acid mine drainage from an active copper mine. The structural and surface properties of the membranes, hydrodynamic conditions, polarization, and filtration resistance had a significant influence on the effectiveness of the treatment. The obtained results demonstrated a good removal capacity in both membranes ( 94%) at a low operating pressure (15 bar). The increase in pressure had a strong impact on permeate flux, concentration polarization, and contaminant removal rate; however, the increase in the value of the Reynolds number exhibited had no significant effects. The NF270 membrane was selected to perform concentration and long-term tests as it demonstrated a high treatment capacity, high rejections, low resistance, and low polarization at moderate pressures. The permeate flux in the concentration and continuous operation tests decreased by similar to 45% and similar to 12%, respectively, due to the increases in resistance of similar to 63% and similar to 13%, respectively, while rejection exhibited a slight increase in both tests. The model parameters successfully identified the convective and diffusive contributions to ions transport in all experiments.
机译:本研究的主要目的是评估两种商用螺旋伤口膜(NF90和NF270)的能力从活性铜矿中除去酸性矿渗流中的金属和硫酸盐。膜,流体动力学,偏振和过滤抗性的结构和表面性质对治疗的有效性产生了显着的影响。所得结果在低操作压力(15巴)处的膜(& 94%)中的良好去除能力(15 bar)。压力的增加对渗透剂通量,浓度极化和污染物去除率产生了强烈影响;然而,表现出的雷诺数值的增加没有显着影响。选择NF270膜以进行浓度和长期试验,因为它在中等压力下表现出高处理能力,高抑制,低电阻和低偏振。浓度和连续操作试验中的渗透通量分别降低了45%且相似的12%,由于耐久性的增加,分别具有63%,而抑制率分别表现出略微增加这两个测试。模型参数成功地确定了对各种实验中的离子运输的对流和扩散贡献。

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