열역학적 방안에 의한 아연 함유 폐수의 침전 처리에 대한 온도 영향 연구
It was examined the effect of temperature on the precipitation treatment of zinc-ion containing wastewater quantitatively by thermodynamic estimation. The thermodynamic calculation was carried out employing theoretical equations such as Gibbs free energy equation, Nernst equation, and van’t Hoff equ...
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Published in | 한국수처리학회지, 27(5) pp. 41 - 50 |
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Main Authors | , , |
Format | Journal Article |
Language | Korean |
Published |
한국수처리학회
31.10.2019
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Subjects | |
Online Access | Get full text |
ISSN | 1225-7192 2289-0076 |
DOI | 10.17640/KSWST.2019.27.5.41 |
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Abstract | It was examined the effect of temperature on the precipitation treatment of zinc-ion containing wastewater quantitatively by thermodynamic estimation. The thermodynamic calculation was carried out employing theoretical equations such as Gibbs free energy equation, Nernst equation, and van’t Hoff equation, and the change of equilibrium constant according to temperature was derived based on standard enthalpy values. The stable region of Zn(OH)2 was determined by the boundary pH between Zn2+ ion and Zn(OH)2, and the area of the stable region of Zn(OH)2 was observed to decrease as temperature increases. As temperature rises from 288 K to 318 K by 10 K intervals, the boundary pH between Zn2+ and Zn(OH)2 was investigated to change as pH 5.51, 5.75, 5.98, and 6.19, and the precipitate formation tendency of Zn2+ ion was estimated to be changed as 96%, 93%, and 90% at each temperature by taking the precipitate formation tendency of Zn2+ ion at 288 K as 100%. KCI Citation Count: 0 |
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AbstractList | It was examined the effect of temperature on the precipitation treatment of zinc-ion containing wastewater quantitatively by thermodynamic estimation. The thermodynamic calculation was carried out employing theoretical equations such as Gibbs free energy equation, Nernst equation, and van’t Hoff equation, and the change of equilibrium constant according to temperature was derived based on standard enthalpy values. The stable region of Zn(OH)2 was determined by the boundary pH between Zn2+ ion and Zn(OH)2, and the area of the stable region of Zn(OH)2 was observed to decrease as temperature increases. As temperature rises from 288 K to 318 K by 10 K intervals, the boundary pH between Zn2+ and Zn(OH)2 was investigated to change as pH 5.51, 5.75, 5.98, and 6.19, and the precipitate formation tendency of Zn2+ ion was estimated to be changed as 96%, 93%, and 90% at each temperature by taking the precipitate formation tendency of Zn2+ ion at 288 K as 100%. KCI Citation Count: 0 |
Author | 손희원 강슬기 김동수 |
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DocumentTitleAlternate | A Study on the Effect of Temperature on the Precipitation Treatment of Zinc-containing Wastewater by Thermodynamic Estimation |
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Title | 열역학적 방안에 의한 아연 함유 폐수의 침전 처리에 대한 온도 영향 연구 |
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