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Carrier-microencapsulation using Al-catecholate complex to suppress arsenopyrite oxidation: Evaluation of the coating stability under simulated weathering conditions

机译:使用儿茶酚酸铝配合物抑制毒砂黄铁矿氧化的载体微囊化:在模拟风化条件下评估涂层稳定性

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Arsenopyrite (FeAsS) is the most common primary arsenic-sulfide mineral in nature, and its oxidation causes the release of toxic arsenic (As). To mitigate these problems, carrier-microencapsulation (CME), a technique that passivates sulfide minerals by covering their surfaces with a protective coating, has been developed. In the previous study of authors on CME, Al-catecholate complex significantly suppressed arsenopyrite oxidation via electron donating effects of the complex and the formation of an Al-oxyhydroxide coating. For the application of this technique to real tailings, however, further study should be carried out to elucidate long-term effectiveness of the coating to suppress arsenopyrite oxidation. This study investigates the stability of the coating formed on arsenopyrite by Al-based CME using weathering tests. The Al-oxyhydroxide coating suppressed arsenopyrite oxidation until about 50 days of the experiment, but after this, the amounts of oxidation products like dissolved S and As increased due to the gradual dissolution of the coating with time as a result of the low pH of leachate. This suggests that co-disposal of Al-based CME-treated arsenopyrite with minerals that have appropriate neutralization potentials, so that the pH is maintained at around 5 to 8 where Al-oxyhydroxide is stable.
机译:毒砂(FeAsS)是自然界中最常见的主要硫化砷矿物,其氧化作用会释放出有毒的砷(As)。为了减轻这些问题,已经开发了载体微囊化(CME),该技术通过用保护性涂层覆盖硫化物矿物的表面来钝化硫化物矿物。在先前关于CME的研究中,儿茶酚酸铝配合物通过电子给体作用和羟基氧化铝涂层的形成显着抑制了毒砂的氧化。为了将该技术应用于实际尾矿,应该进行进一步的研究以阐明涂层抑制毒砂黄铁矿氧化的长期有效性。这项研究使用耐候性试验研究了铝基CME在毒砂上形成的涂层的稳定性。氢氧化铝涂层抑制砷黄铁矿的氧化直至实验进行约50天,但此后,由于渗出液pH值低,涂层随时间逐渐溶解,使诸如溶解的S和As等氧化产物的量增加。这表明铝基CME处理的毒砂与具有适当中和电位的矿物共同处置,因此pH值保持在5至8左右,而氢氧化铝是稳定的。

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