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      전기화학적 방법의 TRC(Total residual chlorine) 측정 연구(II: Pt전극 이용) = The Determination of TRC using an Electrochemical Method (II: Pt electrode)

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      https://www.riss.kr/link?id=A100031763

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      다국어 초록 (Multilingual Abstract)

      The conventional methods for total residual chlorine such as iodometry and DPD colorimetric can cause secondary pollution due to additional agents, also have a wide error range. As for alternative, electrochemical method can measure TRC(Total residual...

      The conventional methods for total residual chlorine such as iodometry and DPD colorimetric can cause secondary pollution due to additional agents, also have a wide error range. As for alternative, electrochemical method can measure TRC(Total residual chlorine), and is not required as additional agents, also very suitable for using the fields of ballast water because test time is relatively fast. Therefore, this study was investigated for changing charge by agitation, salt concentration, and temperature change. Charge showed differences based on changes of reduction peak with or without agitation. In contrast, TRC and charge were well correlated in constant agitation speed. As TRC and charge were analyzed with high correlations in constant salinity and temperature of ocean, thereby conductivity was firstly measured, and charge had high correlation for TRC in spite of changing salinity and temperature Pt electrode revealed high reliability (r2 = 0.960) because it was rarely effected by TRC, On the other hand, Au electrode appeared inadequate (r2 = 0.767) to use sensor in less than 1.0 ppm of TRC. For high accuracy and detection of TRC, Pt and Au electrodes for test time were, respectively, 14 and 22 seconds. As a result, Pt electrode was more valuable than Au electrode in terms of response time.

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      참고문헌 (Reference)

      1 김은찬, "선박평형수 처리장치의 활성물질 농도에 관한 고찰" 한국해양환경·에너지학회 15 (15): 219-226, 2012

      2 Deṡiċ, M. N., "Study of Gold-platinum and Platinum-gold Surface Modification and its Influence on Hydrogen Evolution and Oxygen Reduction" 70 : 231-242, 2005

      3 Wely, P. K., "On the change in Electrical Conductance of Seawater with Temperature" 6 : 75-78, 1964

      4 Campl, F. J. D., "Improved Free Chlorine Amperometric Sensor Chip for Drinking Water Applications" 5554 : 98-104, 2005

      5 Scialdone, O., "Electrochemical Oxidation of Organics in Water : Role of Operative Parameters in the Absence and in the Presence of NaCl" 43 : 2206-2272, 2009

      6 Körbahti, B. K., "Electrochemical Oil/water Demulsification and Purification of Bilge Water using Pt/Ir electrodes" 258 : 219-228, 2010

      7 Saputro, S., "Differential Pulse Voltammetric Determination of Free Chlorine for Water Disinfection Process" 22 : 2765-2768, 2010

      8 Kodera, F., "Determination of Free chlorine based on Anodic Voltammetry using Platinum, Gold, and Glassy carbon Electrodes" 537 : 293-298, 2005

      9 Harp, D. L., "Current Technology of Chlorine Analysis for Water and Wastewater" Hach company 17 : 2002

      1 김은찬, "선박평형수 처리장치의 활성물질 농도에 관한 고찰" 한국해양환경·에너지학회 15 (15): 219-226, 2012

      2 Deṡiċ, M. N., "Study of Gold-platinum and Platinum-gold Surface Modification and its Influence on Hydrogen Evolution and Oxygen Reduction" 70 : 231-242, 2005

      3 Wely, P. K., "On the change in Electrical Conductance of Seawater with Temperature" 6 : 75-78, 1964

      4 Campl, F. J. D., "Improved Free Chlorine Amperometric Sensor Chip for Drinking Water Applications" 5554 : 98-104, 2005

      5 Scialdone, O., "Electrochemical Oxidation of Organics in Water : Role of Operative Parameters in the Absence and in the Presence of NaCl" 43 : 2206-2272, 2009

      6 Körbahti, B. K., "Electrochemical Oil/water Demulsification and Purification of Bilge Water using Pt/Ir electrodes" 258 : 219-228, 2010

      7 Saputro, S., "Differential Pulse Voltammetric Determination of Free Chlorine for Water Disinfection Process" 22 : 2765-2768, 2010

      8 Kodera, F., "Determination of Free chlorine based on Anodic Voltammetry using Platinum, Gold, and Glassy carbon Electrodes" 537 : 293-298, 2005

      9 Harp, D. L., "Current Technology of Chlorine Analysis for Water and Wastewater" Hach company 17 : 2002

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      공동연구자 (7)

      유사연구자 (20) 활용도상위20명

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2012-01-01 학술지명변경 한글명 : 수질보전 한국물환경학회지 -> 한국물환경학회지
      외국어명 : 미등록 -> Journal of Korean Society on Water Environment
      KCI등재
      2011-12-27 학회명변경 영문명 : Korean Society on Water Quality -> Korean Society on Water Environment KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-07-22 학회명변경 영문명 : Journal Of Korean Society On Water Qulity -> Korean Society on Water Quality KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2003-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.51 0.51 0.46
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.43 0.39 0.613 0.15
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