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首页> 外文期刊>Journal of Mining and Metallurgy, Section B: Metallurgy >Sulphuric acid leaching of low/medium grade managanese ores using a novel nitrogeneous reductant-NH3NH2HSO4
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Sulphuric acid leaching of low/medium grade managanese ores using a novel nitrogeneous reductant-NH3NH2HSO4

机译:使用新型含氮还原剂-NH3NH2HSO4的硫酸浸出低/中品位锰矿

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Low and medium grade land as well sea based manganese ores were used for manganese extraction in H2SO4 - NH3NH2HSO4 (hydrazine sulphate) medium For land based Mn ores, only Mn recovery is important but for sea nodules which contain substantial amounts Co, Ni, and Cu, their recovery is equally important. In the present studies four samples used were: Indian ocean manganese nodules, medium and low grade Mn ores of Gujarat, and low grade Mn ore of Orissa, India. The Mn content of these ores varied from 15 to 39%. The objective of this work is to establish a reductant which can be used for leaching Mn from all types of ores. The optimum conditions established for nodules by varying parameters such as time, temperature, pulp density, H2SO4 and NH3NH2HSO4 concentrations were: pulp density 10%, time 0.5h, temperature 110oC, NH3NH2HSO4 3.25 g/10g, H2SO4 2.0% (v/v) for 96.9% Mn, 85.25% Cu, 92.58% Ni and 76.5% Co extractions. More than 92% Mn could be leached from different types of ores by varying amount of reductant and acid concentration at 35oC. Depending on Mn content 1.0 to 1.2 times stochiometric amount of reductant and 1.5 to 1.8 times sulphuric acid were required for >92% Mn extraction.
机译:在H2SO4-NH3NH2HSO4(硫酸肼)介质中,使用了中低品位陆基以及海基锰矿石进行锰萃取对于陆基Mn矿石,仅Mn的回收很重要,但对于含大量Co,Ni和Cu的海结核而言,它们的恢复同样重要。在本研究中,使用了四个样本:印度洋锰结核,古吉拉特邦的中低品位锰矿和印度奥里萨邦的低品位锰矿。这些矿石的锰含量从15%到39%不等。这项工作的目的是建立一种还原剂,该还原剂可用于从所有类型的矿石中浸出锰。通过改变时间,温度,纸浆密度,H2SO4和NH3NH2HSO4浓度等参数为结核确定的最佳条件为:纸浆密度10%,时间0.5h,温度110oC,NH3NH2HSO4 3.25 g / 10g,H2SO4 2.0%(v / v) 96.9%的锰,85.25%的铜,92.58%的镍和76.5%的钴萃取。通过改变35oC的还原剂和酸浓度,可以从不同类型的矿石中浸出92%以上的Mn。取决于Mn含量,> 92%的Mn提取需要1.0至1.2倍化学计量的还原剂和1.5至1.8倍硫酸。

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