外文原文-应用直径150mm的gMax 旋流器回路对超细粒煤分级.pdf
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1、Ultrafine coal classification using 150 mm gMax cyclone circuitsR.Q.Honakera,*,F.Boatena,G.H.LuttrellbaDepartment of Mining Engineering,University of Kentucky,Lexington,KY 40506-0107,United StatesbDepartment of Mining and Minerals Engineering,Virginia Tech,Blacksburg,VA 24061,United StatesReceived 5
2、 March 2007;accepted 6 June 2007Available online 1 August 2007AbstractA two-stage classification circuit using 150 mm diameter gMax cyclones was installed and evaluated in a coal preparation plant in aneffort to achieve a clean coal product without the use of froth flotation.Particle size separation
3、s of around 37 lm were achieved whilelimiting ultrafine bypass to less than 10%in the circuit underflow stream.As a result,approximately 81%of the ash-bearing material inthe circuit feed was rejected to the circuit overflow stream.The feed ash content was reduced from around 50%to values in the rang
4、e of2230%in the circuit underflow stream with a mass recovery of about 30%.Further reductions in the coarse product ash content werelimited due to the particle density effect and the remaining presence of a significant quantity of high-ash slime material in the coarseproduct.The typical D50for the c
5、oal particles was 40 lm while the estimated value for mineral matter was 17 lm.Based on the findingsof the study,the use of classification to recover a low-ash,coarse fraction in the feed of a fine coal circuit is limited by the density effectregardless of the ability to eliminate ultrafine bypass.?
6、2007 Elsevier Ltd.All rights reserved.Keywords:Coal;Classification;Fine particle processing;Hydrocyclones;Modeling1.IntroductionThe interest in achieving ultrafine particle size separa-tions within the range of 2550 lm has developed over thepast decade in the coal industry as a result of the need to
7、reduce or eliminate material from froth flotation feed thatis typically high in ash content,elevates chemical consump-tion in the flotation process and generally contributes tohighproductmoisturevalues.Anotherpotentialapplicationis the production of a fine clean coal product.The ash con-tents ofthen
8、ominal 150 25 lmsize fraction intheprimarycyclone of several coal preparation plants are less than 10%.As such,an efficient ultrafine particle size separation couldprovide ahigh-quality productwithouttheneed offrothflo-tation or other fine coal cleaning technologies.The most direct means of achievin
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