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      KCI등재 SCOPUS SCIE

      Preparation of Spherical Activated Carbon and Their Physicochemical Properties

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      https://www.riss.kr/link?id=A104293593

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      다국어 초록 (Multilingual Abstract)

      In this study, we used coal based activated carbons as starting material and phenolic resin (PR) as a bonding agent to prepare spherical shaped activated carbons. The textural properties of SAC were characterized by BET surface area, XRD, SEM, iodine ...

      In this study, we used coal based activated carbons as starting material and phenolic resin (PR) as a bonding agent to prepare spherical shaped activated carbons. The textural properties of SAC were characterized by BET surface area, XRD, SEM, iodine adsorption, strength intensity and pressure drop. According to the results, the spherical activated carbon prepared with activated carbon and PR at a ratio of 60:40 was found to have the best formation of spherical shape, which was found in sample SAC40. After activation, SAC40 has high BET surface area, iodine adsorption capability and strength value, and lowest pressure drop.

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      참고문헌 (Reference)

      1 Japanese Industrial Standard Specifies the Testing Methods, "Testing Methods for Carbon Blocks" Japan Carbon Association 1995

      2 J. Lee, "Synthesis of a New Mesoporous Carbon and Its Application to Electrochemical Double-layer Capacitors" 21 : 2177-2178, 1999

      3 H. Tamai, "Synthesis of Extremely Large Mesoporous Activated Carbon and Its Unique Adsorption for Giant Molecules" 8 : 454-462, 1996

      4 A. Arenillas, "Surface Modification of Low Cost Carbons for Their Application in the Environmental Protection" 252 : 619-624, 2005

      5 American Society for Testing and Materials, "Standard Test Method for Determination of Iodine Number of Activated Carbon, in ASTM Committee on Standards"

      6 N. S. Roh, "Rheological Characteristics of Coal-water Mixture Fuel and Pressure Losses in Pipe Flow" 33 : 282-291, 1995

      7 J. W. Kim, "Production of Granular Activated Carbon from Waste Walnut Shell and Its Adsorption Characteristics for Cu2+ Ion" 85 : 301-315, 2001

      8 J. B. Yang, "Preparation and Properties of Phenolic Resinbased Activated Carbon Spheres with Controlled Pore Size Distribution" 40 : 911-916, 2002

      9 S. C. Kim, "Preparation and Performance of the Briquette Type Activated Carbon Based on Bituminous Coal" 3 : 218-222, 1997

      10 G. Gryglewicz, "Preparation and Characterization of Spherical Activated Carbons from Oil Agglomerated Bituminous Coal for Removing Organic Impurities from Water" 40 : 2403-2411, 2002

      1 Japanese Industrial Standard Specifies the Testing Methods, "Testing Methods for Carbon Blocks" Japan Carbon Association 1995

      2 J. Lee, "Synthesis of a New Mesoporous Carbon and Its Application to Electrochemical Double-layer Capacitors" 21 : 2177-2178, 1999

      3 H. Tamai, "Synthesis of Extremely Large Mesoporous Activated Carbon and Its Unique Adsorption for Giant Molecules" 8 : 454-462, 1996

      4 A. Arenillas, "Surface Modification of Low Cost Carbons for Their Application in the Environmental Protection" 252 : 619-624, 2005

      5 American Society for Testing and Materials, "Standard Test Method for Determination of Iodine Number of Activated Carbon, in ASTM Committee on Standards"

      6 N. S. Roh, "Rheological Characteristics of Coal-water Mixture Fuel and Pressure Losses in Pipe Flow" 33 : 282-291, 1995

      7 J. W. Kim, "Production of Granular Activated Carbon from Waste Walnut Shell and Its Adsorption Characteristics for Cu2+ Ion" 85 : 301-315, 2001

      8 J. B. Yang, "Preparation and Properties of Phenolic Resinbased Activated Carbon Spheres with Controlled Pore Size Distribution" 40 : 911-916, 2002

      9 S. C. Kim, "Preparation and Performance of the Briquette Type Activated Carbon Based on Bituminous Coal" 3 : 218-222, 1997

      10 G. Gryglewicz, "Preparation and Characterization of Spherical Activated Carbons from Oil Agglomerated Bituminous Coal for Removing Organic Impurities from Water" 40 : 2403-2411, 2002

      11 S. H. Joo, "Ordered Nanoporous Arrays of Carbon Supporting High Dispersions of Platinum Nanoparticles" 412 : 169-172, 2001

      12 A. M. Puziy, "Modeling of Heavy Metal Ion Binding by Phosphoric Acid Activated Carbon" 221 : 421-429, 2004

      13 W. Lu, "Mesoporous Activated Carbon Filaments" 35 : 427-430, 1997

      14 C. T. Hsieh, "Influence of Mesopore Volume and Adsorbate Size on Adsorption Capacities of Activated Carbons in Aqueous Solutions" 38 : 863-869, 2000

      15 M. A. de la Casa-Lillo, "Hydrogen Storage in Activated Carbons and Activated Carbon Fibers" 106 : 10930-10934, 2002

      16 S. Han, "Fabrication of New Nanoporous Carbons through Silica Templates and Their Application to the Adsorption of Bulky Dyes" 12 : 3337-3341, 2000

      17 Q. Li, "Elucidating Competitive Adsorption Mechanisms of Atrazine and NOM Using Model Compounds" 37 : 773-784, 2003

      18 F. Haghseresht, "Effects of Surface Chemistry on Aromatic Compound Adsorption from Dilute Aqueous Solutions by Activated Carbon" 106 : 10935-10943, 2002

      19 Z. Liu, "Effect of Hydrogen on the Mesopore Development of Pitch-based Spherical Activated Carbon Containing Iron During Activation by Steam" 37 : 2063-2066, 1999

      20 A. Derylo-Marczewska, "Effect of Adsorbate Structure on Adsorption from Solutions" 196 : 264-272, 2002

      21 I. Martin-Gullon, "Dynamic Pesticide Removal with Activated Carbon Fibers" 35 : 516-520, 2001

      22 H. Nakagawa, "Control of Micropore Formation in the Carbonized Ion Exchange Resin by Utilizing Pillar Effect" 37 : 1455-1461, 1999

      23 C. H. Chang, "Control Performance of Liquid Column Vibration Absorbers" 43 : 580-586, 1998

      24 Z. Yue, "Chemically Activated Carbon on a Fiberglass Substrate for Removal of Trace Atrazine From Water" 16 : 3375-3380, 2006

      25 E. M. Zippi, "Characterization and Pyrolysis of Poly(Styrene) Derivatives" 34 : 1539-1542, 1996

      26 M. Kocirik, "Carbonization of Bead-shaped Polymers for Application in Adsorption and in Composite Membranes" 39 : 1919-1928, 2001

      27 E. Frackowiak, "Carbon Materials for Supercapacitor Application" 9 : 1774-1785, 2007

      28 K. Nakagawa, "Adsorption of Phenol and Reactive Dye from Aqueous Solution on activated carbons derived from Solid Wa" 38 : 1791-1798, 2004

      29 A. Vinu, "Adsorption of Cytochrome C on New Mesoporous Carbon Molecular Sieves" 107 : 8297-8299, 2003

      30 V. M. Gunko, "Adsorbents from Waste Ion Exchange Resins" 43 : 1143-1150, 2005

      31 Y. R. Lin, "A Novel Method for Carbon Modification with Minute Polyaniline Deposition to Enhance the Capacitance of Porous Carbon Electrodes" 41 : 2865-2871, 2003

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      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2001-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      1998-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.16 0.16 0.17
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.16 0.16 0.331 0.06
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