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Preparation of Iron Ore Micro-pellets and Their Effect on Sinter Bed Permeability

机译:铁矿石微粒的制备及其对烧结床渗透性的影响

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At present around 6–7% of iron ore slimes, out of total production, are being generated and accumulated at iron ore mine sites of National Mineral Development Corporation Limited, India. The accumulated slimes of finer size and relatively inferior grade should be utilized in an economical way for sustainable mining. These slimes can be agglomerated into micro-pellets for subsequent use in sinter making through hybrid pellet sintering method. However, the micro-pellets of sufficient size and strength are required for hybrid sinter making. The green properties of the micro-pellets depend upon various parameters such as surface area, moisture, binder, etc. In this study, iron ore slimes were beneficiated through gravity, and magnetic separation and concentrate of grade 65% Fe (Total) was obtained. Since the concentrate obtained had low surface area (700–900?cm_(2)/grams) rendering it unsuitable for micro-pellet making, it was further subjected to grinding in a ball mill. The requirement of surface area for producing an optimum quality of green micro-pellets was established. The resultant micro-pellets were further used in studying sinter bed properties. The effect of moisture and size of micro-pellets on permeability of sinter bed were examined. The results confirmed that the addition of micro-pellets to the sinter mix improved the permeability of the sinter bed. The sinter bed with highest permeability of JPU 25.25 and void fraction of 36.27% was achieved with micro-pellets of size 3–6?mm at 7% moisture level. Mean granule size of sinter mix was also studied with respect to moisture content and size of the micro-pellets.
机译:目前,印度国家矿产开发有限公司(National Mineral Development Corporation Limited,India)的铁矿石矿泥在总产量中约占6–7%。为了可持续开采,应以经济的方式利用粒度更细、品位相对较低的累积矿泥。通过混合球团烧结法,这些矿泥可以凝聚成微球团,用于烧结矿生产。然而,混合烧结需要足够大小和强度的微丸。微球团的绿色特性取决于各种参数,如表面积、水分、粘合剂等。在本研究中,通过重力对铁矿石泥进行选矿,并获得65%铁(总铁)品位的磁选和精矿。由于获得的精矿表面积较低(700–900?cm_2)/g),因此不适合制作微丸,因此进一步在球磨机中进行研磨。确定了生产最佳质量绿色微丸的表面积要求。所得微丸进一步用于研究烧结床的性能。研究了水分和微丸粒径对烧结床透气性的影响。结果证实,向烧结混合料中添加微丸提高了烧结床的透气性。使用粒度为3–6?的微球团可获得透气性最高的JPU 25.25和空隙率为36.27%的烧结床?在7%的湿度水平下。还研究了烧结混合料的平均粒径与水分含量和微丸粒径的关系。

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