首页> 外文会议>Annual Conference of Metallurgists >(9690) THE EFFECT OF NON-POLAR OIL ON BATCH FLOTATION OF FINE HEMATITE AND QUARTZ USING SODIUM OLEATE OR HYDROXAMIC ACIDS AS COLLECTORS
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(9690) THE EFFECT OF NON-POLAR OIL ON BATCH FLOTATION OF FINE HEMATITE AND QUARTZ USING SODIUM OLEATE OR HYDROXAMIC ACIDS AS COLLECTORS

机译:(9690)非极性油对细赤铁矿和石英批量浮选的效果,使用钠或羟肟酸作为收集器

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Laboratory batch flotation tests were carried out on fine (-20 μm) hematite to investigate the non-polar oil's influences when sodium oleate, octyl hydroxamic acid, or oleyl hydroxamic acid were used as a collector. Batch flotation tests were performed with artificial mixed minerals (hematite:quartz = 1:1) under natural pH condition and kerosene was utilized as the model oil. The experimental results showed that kerosene emulsion behaved differently when used in conjunction with the three collectors. Kerosene helped improve the flotation when sodium oleate or oleyl hydroxamic acid was used as a collector. Nevertheless, it reduced concentrate weight yield, grade and recovery to a noticeable extent when octyl hydroxamic acid was used as a collector, especially at low dosages. In addition, single hematite batch flotation kinetics tests coupled with water recovery measurement were carried out to study the role of kerosene at different collector dosages. It was observed that water drainage and the resulting froth destabilization by kerosene was dominant at low collector dosages, especially in the flotation using octyl hydroxamic acid. At higher collector dosages, the water drainage and froth destabilization effect by kerosene was possibly counter-balanced by the higher hematite hydrophobicity and bubble surface tension gradient, which led to more stable froth layer.
机译:实验室批量浮选试验在细(-20μm)赤液上进行,以研究非极性油的影响,酸钠油酸钠,辛基羟肟酸或油氨基酸作为收集器时。在天然pH条件下用人造混合矿物(赤铁矿:石英= 1:1)进行批量浮选试验,用煤油作为模型油。实验结果表明,与三个收集器一起使用时煤油乳液表现不同。当使用钠油或油酰羟肟酸作为收集器时,煤油帮助改善浮选。然而,当使用辛基羟肟酸作为收集器时,它将浓缩重量,等级和恢复降低至明显的程度,特别是在低剂量下。此外,进行了与水回收测量相结合的单次赤铁矿批量浮选动力学试验,以研究煤油在不同收集剂剂量下的作用。观察到,在低收集剂剂量下,煤油的排水和由所得泡沫破坏稳定,特别是使用辛基羟肟酸的浮选。在较高的收集剂剂量下,通过核酸盐疏水性和气泡表面张力梯度,煤油的排水和泡沫破坏效果可能是反平衡的,这导致了更稳定的泡沫层。

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