Effect of slimes on the flotation recovery and kinetics of coal particles

in asia •  6 years ago 

By a News Reporter-Staff News Editor at Energy & Ecology Business -- Investigators publish new report on Fuel Research. According to news reporting from Jiangsu, People’s Republic of China, by VerticalNews journalists, research stated, “To investigate the effect of slimes on the flotation recovery and kinetics of coal particles, batch flotation and flotation rate tests were carried out using flotation mixtures including slime particles and coal particles within 0.5-0.25 mm, 0.25-0.125 mm and 0.125-0.074 mm size ranges, respectively. Six flotation kinetic models were applied to fit all the flotation test results.”

Funders for this research include China Postdoctoral Science Foundation, National Natural Science Foundation of China.

The news correspondents obtained a quote from the research from the China University of Mining and Technology, “It was found that both the flotation recovery and rate of coal particles decreased with the increase in the mass proportion of slime particles under the mixed flotation conditions, especially coarse coal particles. Compared with the flotation performance of coal particles in the individual flotation, slimes enhanced the flotation recovery of coal particles at a low mass proportion of slime particles. In contrast, slimes decreased the flotation recovery of coal particles at a high mass proportion of slime particles. Furthermore, for the coal particles in 0.5-0.25 mm size range, slimes increased its flotation rate at a low mass proportion of slime particles, otherwise slimes decreased its flotation rate.”

According to the news reporters, the research concluded: “Slimes mainly improved the flotation rate of coal particles in 0.25-0.125 mm size range, while it primarily reduced flotation rate of coal particles in 0.125-0.074 mm size range.”

For more information on this research see: Effect of slimes on the flotation recovery and kinetics of coal particles. Fuel , 2018;220():159-166. Fuel can be contacted at: Elsevier Sci Ltd, The Boulevard, Langford Lane, Kidlington, Oxford OX5 1GB, Oxon, England. (Elsevier - www.elsevier.com; Fuel - http://www.journals.elsevier.com/fuel/)

Our news journalists report that additional information may be obtained by contacting C. Ni, China Univ Min & Technol, Sch Chem Engn & Technol, Key Lab Coal Proc & Efficient Utilizat, Minist Educ, Xuzhou 221116, Jiangsu, People’s Republic of China. Additional authors for this research include X.N. Bu, W.C. Xia, Y.L. Peng and G.Y. Xie.

The direct object identifier (DOI) for that additional information is: https://doi.org/10.1016/j.fuel.2018.02.003. This DOI is a link to an online electronic document that is either free or for purchase, and can be your direct source for a journal article and its citation.

Our reports deliver fact-based news of research and discoveries from around the world. Copyright 2018, NewsRx LLC

CITATION: (2018-05-04), New Findings Reported from China University of Mining and Technology Describe Advances in Fuel Research (Effect of slimes on the flotation recovery and kinetics of coal particles), Energy & Ecology Business, 419, ISSN: 1945-6956, BUTTER® ID: 015605669

From the newsletter Energy & Ecology Business.
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