1 이용두, "살포농약의 토양중에서 거동 및 농약의 활성탄 흡착능 평가" 한국수처리학회 14 (14): 25-32, 2006
2 유준원, "살충제 Fenitrothion의 효과적인 분해를 위한 연구" 대한화학회 53 (53): 218-223, 2009
3 J. Fu, "Treatment of Simulated Wastewater Containing Reactive Red 195 by Zero-valent Iron/Activated Carbon Combined with Microwave Discharge Electrodeless lamp/sodium hypochlorite" 22 (22): 512-, 2010
4 S. J. Lee, "Residual Analysis of Pesticide Fenitrothion in Agricultural Products by Gas Chromatography(GC)" Kongju National University 2005
5 V. Plagentz, "Remediation of Ground Water Containing Chlorinated and Brominated Hydrocarbons, Benzene and Chromate by Sequential Treatment using ZVI and GAC" 49 : 684-, 2006
6 A. S. Derbalah, "Photocatalytic Removal of Fenitrothion in Pure and Natural Waters by Photo-Fenton Reaction" 57 : 635-, 2004
7 P. Bayer, "Modelling of Sequential Groundwater Treatment with Zero Valent Iron and Granular Activated Carbon" 78 : 129-, 2005
8 D. J. Munch, "Methods Development and Implementation for the National Pesticide Survey" 24 : 1446-, 1990
9 이용두, "Fenitrothion의 분해특성" 한국물환경학회 17 (17): 637-642, 2001
10 D. I. Lee, "Fenitrothion과 Tebuconazole의 입상 활성탄 및 차콜에 의한 흡착과 용탈에 관한 연구" 20 (20): 47-, 2006
1 이용두, "살포농약의 토양중에서 거동 및 농약의 활성탄 흡착능 평가" 한국수처리학회 14 (14): 25-32, 2006
2 유준원, "살충제 Fenitrothion의 효과적인 분해를 위한 연구" 대한화학회 53 (53): 218-223, 2009
3 J. Fu, "Treatment of Simulated Wastewater Containing Reactive Red 195 by Zero-valent Iron/Activated Carbon Combined with Microwave Discharge Electrodeless lamp/sodium hypochlorite" 22 (22): 512-, 2010
4 S. J. Lee, "Residual Analysis of Pesticide Fenitrothion in Agricultural Products by Gas Chromatography(GC)" Kongju National University 2005
5 V. Plagentz, "Remediation of Ground Water Containing Chlorinated and Brominated Hydrocarbons, Benzene and Chromate by Sequential Treatment using ZVI and GAC" 49 : 684-, 2006
6 A. S. Derbalah, "Photocatalytic Removal of Fenitrothion in Pure and Natural Waters by Photo-Fenton Reaction" 57 : 635-, 2004
7 P. Bayer, "Modelling of Sequential Groundwater Treatment with Zero Valent Iron and Granular Activated Carbon" 78 : 129-, 2005
8 D. J. Munch, "Methods Development and Implementation for the National Pesticide Survey" 24 : 1446-, 1990
9 이용두, "Fenitrothion의 분해특성" 한국물환경학회 17 (17): 637-642, 2001
10 D. I. Lee, "Fenitrothion과 Tebuconazole의 입상 활성탄 및 차콜에 의한 흡착과 용탈에 관한 연구" 20 (20): 47-, 2006
11 C. H. Choi, "Environmental Effects of Residual Agricultural Chemicals in Golf Course Area" Kwangwoon University 2005
12 S. S. Oh, "Effect of Activated Carbon , Orpar or Zeolite on Leaching Loss of Fenitrothion, Triadimefon and Diniconazole in Model Green of Golf Course" 44 (44): 97-, 2001
13 H. Katsumata, "Degradation of Fenitrothion by Ultrasound/Ferrioxalate /UV System" 17 : 200-, 2010
14 H. Liu, "Degradation of Azo dye Acid Orange 7 in water by Fe0/Granular Activated Carbon System in the Presence of Ultrasound" 144 : 180-, 2007
15 R. Kober, "Coupled in-situ Reactors using Fe0 and Activated Carbon for the Remediation of Complex Contaminant Mixtures in Groundwater" 2634-, 2001
16 M. C. Chang, "An Integrated Technique using Zero valent Iron and UV/H2O2 Sequential Process for Complete Decolorization and Mineralization of C. I. Acid Black 24 Wastewater" 138 : 574-, 2006
17 S. K. Kam, "Adsorption of Phosphamidon and Fenitrothion on Natural Zeolite" 26 : 89-, 2002
18 Y. D. Lee, "Adsorption Characteristics of Pesticides with Activated Carbons" 29 (29): 47-, 2005