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      KCI등재 SCOPUS SCIE

      Leaching kinetics of colemanite in potassium hydrogen sulphate solutions

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      https://www.riss.kr/link?id=A104709455

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      다국어 초록 (Multilingual Abstract)

      The aim of the study was to investigate the dissolution kinetics of colemanite in potassium hydrogen sulphate solutions in a mechanical agitation system and to declare an alternative reactant to produce boric acid. Reaction temperature, concentration of potassium hydrogen sulphate, stirring speed, solid/liquid ratio and colemanite particle size were selected as parameters on the dissolution rate of colemanite. The experimental results were successfully correlated by linear regression using Statistica Package Program. Dissolution curves were evaluated in order to test shrinking core models for solid–fluid systems. It was observed that increase in the reaction temperature and decrease in the solid/liquid ratio causes an increase the dissolution rate of colemanite. The dissolution extent is highly increased with increase the stirring speed rate between 100 and 500 rpm and the dissolution extent is slowly increased with increase the stirring speed between 500 and 700 rpm in experimental conditions. The activation energy was found to be 26.34 kJ/mol. The leaching of colemanite was controlled by diffusion through the product (or ash) layer. The rate expression associated with the dissolution rate of colemanite depending on the parameters chosen may be summarized as follows: 1 3(1 X)<sup>2/3</sup>+2(1 X)=10.41X<i>C</i><sup>1.01</sup>×<i>W</i><sup>1.55</sup>×<i>D</i><sup>1.43</sup>×(<i>S/L</i>)<sup>0.60</sup>×<i>e</i><sup>(26.34/RT)</sup>×<i>t.
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      The aim of the study was to investigate the dissolution kinetics of colemanite in potassium hydrogen sulphate solutions in a mechanical agitation system and to declare an alternative reactant to produce boric acid. Reaction temperature, concentration ...

      The aim of the study was to investigate the dissolution kinetics of colemanite in potassium hydrogen sulphate solutions in a mechanical agitation system and to declare an alternative reactant to produce boric acid. Reaction temperature, concentration of potassium hydrogen sulphate, stirring speed, solid/liquid ratio and colemanite particle size were selected as parameters on the dissolution rate of colemanite. The experimental results were successfully correlated by linear regression using Statistica Package Program. Dissolution curves were evaluated in order to test shrinking core models for solid–fluid systems. It was observed that increase in the reaction temperature and decrease in the solid/liquid ratio causes an increase the dissolution rate of colemanite. The dissolution extent is highly increased with increase the stirring speed rate between 100 and 500 rpm and the dissolution extent is slowly increased with increase the stirring speed between 500 and 700 rpm in experimental conditions. The activation energy was found to be 26.34 kJ/mol. The leaching of colemanite was controlled by diffusion through the product (or ash) layer. The rate expression associated with the dissolution rate of colemanite depending on the parameters chosen may be summarized as follows: 1 3(1 X)<sup>2/3</sup>+2(1 X)=10.41X<i>C</i><sup>1.01</sup>×<i>W</i><sup>1.55</sup>×<i>D</i><sup>1.43</sup>×(<i>S/L</i>)<sup>0.60</sup>×<i>e</i><sup>(26.34/RT)</sup>×<i>t.

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      참고문헌 (Reference)

      1 T.W. Davies, 65 : 433-440, 1991

      2 A. Gur, 24 : 467-473, 2008

      3 S. Kubilay, 2311-2319, 2008

      4 A. Gur, 354-360, 2008

      5 F. C¸avus, 44 : 8164-8170, 2005

      6 M. Alkan, 43 : 867-872, 2004

      7 O¨ . Ku¨ cu¨ k, 41 : 2853-2857, 2002

      8 E. C¸etin, 231 : 559-567, 2001

      9 H. Temur, 39 : 4114-4119, 2000

      10 A. Yartasi, 26 : 7-13, 1998

      1 T.W. Davies, 65 : 433-440, 1991

      2 A. Gur, 24 : 467-473, 2008

      3 S. Kubilay, 2311-2319, 2008

      4 A. Gur, 354-360, 2008

      5 F. C¸avus, 44 : 8164-8170, 2005

      6 M. Alkan, 43 : 867-872, 2004

      7 O¨ . Ku¨ cu¨ k, 41 : 2853-2857, 2002

      8 E. C¸etin, 231 : 559-567, 2001

      9 H. Temur, 39 : 4114-4119, 2000

      10 A. Yartasi, 26 : 7-13, 1998

      11 M. Alkan, 382-386, 1985

      12 M.M. Kocakerim, 19 : 385-392, 1988

      13 Z. Karago¨ lge, 23 : 409-413, 1992

      14 C. Kum, 36 : 259-268, 1994

      15 C. Ozmetin, 35 : 2355-2359, 1996

      16 H.P. Kemp, "The Chemistry of Borates: Part I" Borax Consolidated Ltd. 1956

      17 Soner Kuslu, "Leaching kinetics of ulexite in borax pentahydrate solutions saturated with carbon dioxide" 한국공업화학회 16 (16): 673-678, 2010

      18 Bunyamin Donmez, "Leaching kinetics of calcined magnesite in acetic acid solutions" 한국공업화학회 15 (15): 865-869, 2009

      19 F. Habashi, "Kinetics of Metallurgical Process" Metallurgie Extractive Quebec 1999

      20 E. Jackson, "Hydrometallurgical Extraction and Reclamation" Ellis Horwood Ltd 400-, 1986

      21 D.A. Sookg, "Fundamentals of Analytical Chemistry" Saunders College Publishing 1996

      22 Mehmet Muhtar Kocakerim, "Dissolution of colemanite in (NH4)2SO4 solutions" 한국화학공학회 24 (24): 55-59, 2007

      23 Aycan G?r, "Dissolution mechanism of colemanite in sulphuric acid solutions" 한국화학공학회 24 (24): 588-591, 2007

      24 O. Levenspiel, "Chemical Reaction Engineering" Wiley 1972

      25 A.A. Nemodruk, "Analytical Chemistry of Boron, vol. 1, IsraelProgram for Scientific Translations" Jerusalem 33-, 1965

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      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
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      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
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      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      2016 3.4 0.75 2.84
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      2.39 2.24 0.397 0.56
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