2008
DOI: 10.1016/j.powtec.2007.05.027
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Grindability of lateritic nickel ores in Cuba

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Cited by 22 publications
(18 citation statements)
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“…The success of nickel upgrade was determined by the mineralogy of the nickel laterite (Agatzini-Leonardou et al, 2004;Onodera et al, 1987;Narasimhan et al, 1989;Acharya et al, 2010;Zhu et al, 2012;Harris et al, 2011;Tong et al, 2012). Velázquez et al (2008) studied the grindability of a binary mixture of serpentine and limonite components. The breakage rate of the limonite-serpentine blends increased with the increase of limonite content.…”
Section: Introductionmentioning
confidence: 99%
“…The success of nickel upgrade was determined by the mineralogy of the nickel laterite (Agatzini-Leonardou et al, 2004;Onodera et al, 1987;Narasimhan et al, 1989;Acharya et al, 2010;Zhu et al, 2012;Harris et al, 2011;Tong et al, 2012). Velázquez et al (2008) studied the grindability of a binary mixture of serpentine and limonite components. The breakage rate of the limonite-serpentine blends increased with the increase of limonite content.…”
Section: Introductionmentioning
confidence: 99%
“…3). Alfredo et al (Coello Velázquez et al, 2008) found that breakage behaviour of each mineral in the mixture did not depend on the mineral content. Therefore, the non-first order was most probably caused by the heterogeneity of the diasporic bauxite, namely, the silicate minerals broke fast at first, and then there was accumulation of stronger fractions in the remaining unbroken material as grinding proceeds.…”
Section: Experiments Results and Discussionmentioning
confidence: 98%
“…In the mining industry, the comminution stage can represent up to 70% of the energy consumed in a mineral processing plant [1][2][3][4][5]. With ball-mill grinding being one of the most energy-consuming techniques, setting the optimal values of the operational and mineralogical parameters for efficient grinding is a key target in mineral processing plants [6][7][8][9][10].…”
Section: Introductionmentioning
confidence: 99%