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Zinc sulfide as a solid phase additive for improving the processing characteristics of ferrihydrite residues

机译:硫化锌作为固相添加剂,用于改善亚铁酸盐残渣的加工特性

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The effect of ZnS powders as additives for improving the physical and chemical properties of fenihydrite residues has been studied in both kinetic and batch experiments. Four ZnS samples were compared: two industrial ZnS concentrates, high purity ZnS pieces, and a sample of synthetic ZnS nanoparticles. The industrial ZnS concentrates were found to be the most effective for promoting the transformation of fenihydrite to hematite, and this effect was found to be due to their lower surface charge at pH 3, which promotes formation of mixed ZnS/ferrihydrite aggregates. For the high purity ZnS samples, aggregation was not favoured, and only goethite formation was promoted. The effect of particle size of the ZnS additive was also studied, and it was found that samples of smaller average particle size were more effective in promoting phase transformation. Measurement of filtration times and moisture content of fenihydrite residues precipitated in the presence of ZnS showed only minor improvement in physical handling and indicated that better control of surface properties of the additive would be needed to optimise its effect on phase transformation.
机译:在动力学和间歇实验中都研究了ZnS粉末作为添加剂对改善菱镁矿残余物的物理和化学性质的影响。比较了四个ZnS样品:两个工业ZnS精矿,高纯度ZnS片和一个合成ZnS纳米颗粒样品。已发现工业ZnS精矿最有效地促进了菱锰矿向赤铁矿的转变,并且发现这种效果是由于其在pH 3时较低的表面电荷,这促进了ZnS /三水铁矿混合骨料的形成。对于高纯度ZnS样品,不利于聚集,仅促进针铁矿形成。还研究了ZnS添加剂粒径的影响,发现较小平均粒径的样品在促进相变方面更有效。在ZnS存在下沉淀的菱锰矿残余物的过滤时间和水分含量的测量显示,在物理处理方面仅略有改善,并表明需要更好地控制添加剂的表面性质以优化其对相变的影响。

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