Hydrophobic flocculation and Box-Wilson experimental design for beneficiating fine coal

被引:17
|
作者
Ucbeyiay, H. [1 ]
机构
[1] Selcuk Univ, Dept Min Engn, Seydisehir Ahmet Cengiz Engn Fac, Seydisehir, Konya, Turkey
关键词
Coal; Hydrophobic flocculation; Box-Wilson design; Bridging liquids; Inorganic dispersants; OIL AGGLOMERATION; LIQUID BRIDGES; FLOTATION; CELESTITE;
D O I
10.1016/j.fuproc.2012.09.020
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
The purpose of this study is twofold: first, to determine the appropriate bridging liquid, pH, stirring speed and dispersant for hydrophobic flocculation of coal. Kerosene, n-heptane, benzole and n-hexane were used as bridging liquids. The coal suspension could be flocculated better by kerosene compared to the other bridging liquids at natural pH value of coal. From the experiments carried out to determine the effect of stirring speed on the hydrophobic flocculation of coal suspension, it was found that a stirring speed of 750 rpm was required to achieve the maximum combustible recovery and minimum ash content values of flocculated coal particles. The effects of sodium silicate, sodium hexametaphosphate, sodium phosphate and sodium pyrophosphate used as inorganic dispersants on the hydrophobic flocculation of coal were also studied. Sodium silicate was more effective than the other dispersants in the presence of kerosene. The best results were obtained with a concentration of 1 g/dm(3) sodium silicate and 4 g/dm(3) concentration of kerosene. It was determined that a clean coal having an ash content of 1033% with a combustible recovery of 89.54%. The second fold of study is the Box Wilson experimental design method and it was employed to evaluate the effects of important variables such as bridging liquid concentration (kerosene), dispersant (sodium silicate) concentration and stirring speed on the hydrophobic flocculation of coal. Response function coefficients were determined by the regression analysis of experimental data and the predictions were found to be in good agreement with the experimental results. Similar to the results of the first fold of experimental studies, the optimum kerosene concentration, sodium silicate concentration and stirring speed were determined as 4 g/dm(3), 1 g/dm(3) and 750 rpm, respectively, when considering combustible recovery and ash content. (c) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:1 / 8
页数:8
相关论文
共 33 条
  • [1] Hydrophobic flocculation flotation for beneficiating fine coal and minerals
    Song, SX
    Valdivieso, AL
    SEPARATION SCIENCE AND TECHNOLOGY, 1998, 33 (08) : 1195 - 1212
  • [2] OPTIMIZATION OF COAL FLOCCULATION WITH AN ANIONIC FLOCCULANT USING A BOX-WILSON STATISTICAL DESIGN METHOD
    Sonmez, Ibrahim
    Cebeci, Yakup
    Senol, Dilek
    PHYSICOCHEMICAL PROBLEMS OF MINERAL PROCESSING, 2014, 50 (02): : 811 - 822
  • [3] Application of the Box-Wilson experimental design method for the spherical oil agglomeration of coal
    Cebeci, Y
    Sönmez, I
    FUEL, 2006, 85 (03) : 289 - 297
  • [4] Evaluation of Box-Wilson experimental design in flotation research
    Yalcin, T
    TRANSACTIONS OF THE INSTITUTION OF MINING AND METALLURGY SECTION C-MINERAL PROCESSING AND EXTRACTIVE METALLURGY, 1999, 108 : C109 - C112
  • [5] AMINO ACID SUPPLEMENTATION OF OATS - APPLICATION OF BOX-WILSON EXPERIMENTAL DESIGN
    BRUINS, HW
    HENSLEY, GW
    STOUT, PR
    FEDERATION PROCEEDINGS, 1963, 22 (02) : 552 - &
  • [6] Modeling of n-decane dehydrogenation using Box-Wilson experimental design
    Basrur, AG
    Rajeshwer, D
    Gokak, DT
    Rao, GS
    Krishnamurthy, KR
    RECENT ADVANCES IN BASIC AND APPLIED ASPECTS OF INDUSTRIAL CATALYSIS, 1998, 113 : 809 - 814
  • [8] Optimization of sulfuric acid leaching of roasted chalcopyrite concentrate with Box-Wilson experimental design
    Sonmez, Ibrahim
    Sahbudak, Kemal
    Kartal, Levent
    Alkan, Bulent
    SN APPLIED SCIENCES, 2020, 2 (09):
  • [9] Treatment of a Petrochemical Industry Wastewater by a Solar Oxidation Process Using The Box-Wilson Experimental Design Method
    Parilti, Neval Baycan
    EKOLOJI, 2010, 19 (77): : 9 - 15
  • [10] Selective flocculation of fine coal with hydrophobic Mycobacterium phlei
    Misra, M.
    Smith, R.W.
    Dubel, J.
    Chen, S.
    Minerals and Metallurgical Processing, 1993, 10 (01): : 20 - 23