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Veden kierrätysasteen maksimointi kaivoksen prosessivesien nanosuodatuksessa saostumanestoaineiden avulla

机译:含防污剂的矿山工艺水纳米过滤中水的回收率最大化

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摘要

Reverse osmosis and nanofiltration are among the most effective and widely used desalination and water softening technologies. They can also be used to treat mining wastewaters and are capable of producing water of extremely high purity, regardless of the high concentrations of toxic heavy metals and extreme pH and salinity. However, challenges with recovering the salts and metals from mining wastewaters in exploitable form, as well as problems with scaling still limit the process efficiency and the ratio of purified water recoverable from process waters.To address the problem of membrane scaling caused by calcium sulfate, batch filtration experiments with the Desal-5 DL nanofiltration membrane, three commercial antiscalants and actual mine process water from a copper mine were performed. The aim of these experiments was to find process conditions where maximum water recovery would be achieved before significant scaling or irreversible membrane fouling would occur and to further improve water recovery by addition of antiscalants. Water recovery of 70 % was reached with the experimental setups by optimizing process conditions. PC-504T antiscaling agent was determined to be the most effective of the three antiscalants used and the addition of 5 ppm of PC-504T allowed the water recovery to be further increased from 70 % to 85 % before major scaling was observed. In these conditions 92 % calcium rejection was achieved.
机译:反渗透和纳滤是最有效和广泛使用的脱盐和水软化技术之一。它们还可以用于处理采矿废水,并且能够生产出极高纯度的水,而无需考虑高浓度的有毒重金属以及极端的pH和盐度。然而,从采矿废水中以可开采形式回收盐和金属的挑战以及结垢问题仍然限制了工艺效率和可从工艺水中回收的纯净水的比例。为解决硫酸钙引起的膜结垢问题,使用Desal-5 DL纳滤膜,三种商业防垢剂和来自铜矿的实际矿山工艺用水进行了批量过滤实验。这些实验的目的是找到在显着结垢或不可逆的膜结垢发生之前可以实现最大水回收率的工艺条件,并通过添加防垢剂进一步改善水回收率。通过优化工艺条件,通过实验设置达到了70%的水回收率。已确定PC-504T防垢剂是所用的三种防垢剂中最有效的,在观察到主要的结垢之前,添加5 ppm的PC-504T可使水的回收率从70%进一步提高到85%。在这些条件下,实现了92%的钙截留率。

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    Hintukainen Martti Samuel;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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