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      활성탄에 의한 난분해성 염료인 Eosin Y의 흡착 = Adsorption of Non-degradable Eosin Y by Activated Carbon

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      https://www.riss.kr/link?id=A60097421

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      다국어 초록 (Multilingual Abstract)

      The adsorption behavior of Eosin Y on activated carbon (AC) in batch system was investigated. The adsorption isotherm could be well fitted by the Langmuir adsorption equation. The kinetics of adsorption followed the pseudo-second-order model. The temp...

      The adsorption behavior of Eosin Y on activated carbon (AC) in batch system was investigated. The adsorption isotherm could be well fitted by the Langmuir adsorption equation. The kinetics of adsorption followed the pseudo-second-order model. The temperature variation was used to evaluate the values of free energy (ΔGo), enthalpy (ΔHo) and entropy (ΔSo). The positive value of enthalpy change ΔH° for the process confirms the endothermic nature of the process and more favourable at higher temperature, the positive entropy of adsorption ΔS° reflects the affinity of the AC material toward Eosin Y and the negative free energy values ΔG° indicate that the adsorption process is spontaneous. With the increase of the amount of AC, removal efficiency of Eosin Y was increased, but adsorption capacity was decreased. And adsorption capacity was increased with the decrease of particle size. With the increase of the amount of AC, removal efficiency of Eosin Y was increased, but adsorption capacity was decreased. And adsorption capacity was increased with the decrease of particle size.

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      참고문헌 (Reference)

      1 Carliell, C. M, "Treatment of exhausted reactive dye bath effluent using anaerobic digestion: Laboratory and full scale trials" 22 : 225-233, 1996

      2 Budavari, S, "The Merck Index, 11th ed" Merck& Co. Inc 564-, 1996

      3 Gurr, E., "Synthetic Dyes in Biology, Medicine and Chemistry, 1st ed" Academic Press 134-165, 1971

      4 Choy, K. K. H., "Sorption of acid dyes from effluents using activated carbon" 27 : 57-71, 1999

      5 Huang, X. Y, "Removal of anionic dye Eosin Y from aqueous solution using ethylenediamine modified chitosan" 84 : 1350-1356, 2011

      6 Sulak, M. T, "Removal of Astrazon Yellow 7GL from aqueous solutions by adsorption onto wheat bran" 98 : 2590-2598, 2007

      7 Robinson, T., "Remediation of dyes in textile effluent: acritical review on current treatment technologieswith a proposed alternative" 77 : 247-255, 2001

      8 Du, W. L., "Preparation, characterization and adsorptionproperties of chitosan nanoparticles for Eosin Y asa model anionic dye" 153 : 152-156, 2008

      9 Crini, G, "Non-conventional low-cost adsorbents for dye removal: a review" 97 : 1061-1085, 2006

      10 McMullan, G., "Microbial decolourisation and degradation of textile dyes" 56 : 81-87, 2001

      1 Carliell, C. M, "Treatment of exhausted reactive dye bath effluent using anaerobic digestion: Laboratory and full scale trials" 22 : 225-233, 1996

      2 Budavari, S, "The Merck Index, 11th ed" Merck& Co. Inc 564-, 1996

      3 Gurr, E., "Synthetic Dyes in Biology, Medicine and Chemistry, 1st ed" Academic Press 134-165, 1971

      4 Choy, K. K. H., "Sorption of acid dyes from effluents using activated carbon" 27 : 57-71, 1999

      5 Huang, X. Y, "Removal of anionic dye Eosin Y from aqueous solution using ethylenediamine modified chitosan" 84 : 1350-1356, 2011

      6 Sulak, M. T, "Removal of Astrazon Yellow 7GL from aqueous solutions by adsorption onto wheat bran" 98 : 2590-2598, 2007

      7 Robinson, T., "Remediation of dyes in textile effluent: acritical review on current treatment technologieswith a proposed alternative" 77 : 247-255, 2001

      8 Du, W. L., "Preparation, characterization and adsorptionproperties of chitosan nanoparticles for Eosin Y asa model anionic dye" 153 : 152-156, 2008

      9 Crini, G, "Non-conventional low-cost adsorbents for dye removal: a review" 97 : 1061-1085, 2006

      10 McMullan, G., "Microbial decolourisation and degradation of textile dyes" 56 : 81-87, 2001

      11 Slokar, Y. M., "Methods of decoloration of textile wastewaters" 37 : 355-356, 1999

      12 Weber, W. J., "Kinetics of adsorption on carbon solution" 89 : 31-39, 1963

      13 Manju, G. N., "Evaluation of coconut husk carbon for the removal of arsenic from water" 32 : 3062-3070, 1998

      14 Asfour, H. M, "Equilibrium studies on adsorption of basicdyes on hardwood" 35 : 21-27, 2010

      15 Mittal, A. K., "Biosorption of cationic dyes by dead Macro fungus fomitopsis Carnea: Batch Studies" 34 : 81-87, 1996

      16 Zumriye, A., "Application of biosorption for the removal of organic pollutants: a Review" 40 : 997-1026, 2005

      17 Lee, J. J, "Adsorption removal of Eosin Y by granular activated carbon (in korean)" 16 : 277-283, 2010

      18 Vargas, A. M. M., "Adsorption of methylene blue on activated carbon produced from flamboyant pods (Delonix regia): Study of adsorption isotherms and kinetic models" 168 : 722-730, 2011

      19 Ismadji, S., "Adsorption of flavour esters on granular activated carbon" 78 : 892-901, 2000

      20 Purkait, M. K., "Adsorption of eosin dye on activated carbon and its surfactant based desorption" 76 : 135-142, 2005

      21 Do, D. D, "Adsorption Analysis: Equilibria and Kinetics" Imperial College Press 1998

      22 환경부 수질보전국 산업폐수과, "'04 공장폐수의 발생과 처리" 나래인쇄 287-, 2005

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      학술지 이력

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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.37 0.37 0.38
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.36 0.35 0.525 0.1
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