Kim Tak-Hyun | Advanced Energy & Environment Research Team, Korea Institute of Industrial Technology
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概要
- Kim Tak-Hyunの詳細を見る
- 同名の論文著者
- Advanced Energy & Environment Research Team, Korea Institute of Industrial Technologyの論文著者
関連著者
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LEE Jinwon
Department of Electrical Engineering and Computer Science, KAIST
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Kim T‐h
Advanced Energy & Environment Research Team Korea Institute Of Industrial Technology
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Lee J
Department Of Chemical Engineering Kwangwoon University
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Lee Jinwon
National Research Laboratory Of Plant Functional Genomics Division Of Molecular And Life Sciences Po
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Lee Jinwon
Department Of Electrical Engineering And Computer Science Kaist
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Kim S‐w
Advanced Energy & Environment Research Team Korea Institute Of Industrial Technology
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Park Chulhwan
Advanced Energy & Environment Research Team Korea Institute Of Industrial Technology:department
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KIM SEUNG-WOOK
Department of Chemical and Biological Engineering, Korea University
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KIM TAK-HYUN
Advanced Energy and Environment Research Team, Korea Institute of Industrial Technology
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KIM SANGYONG
Advanced Energy and Environment Research Team, Korea Institute of Industrial Technology
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Kim Seung-wook
Department Of Chemical And Biological Engineering Korea University
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Kim Tak-Hyun
Advanced Energy & Environment Research Team, Korea Institute of Industrial Technology
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Kim Sangyong
Advanced Energy & Environment Research Team, Korea Institute of Industrial Technology
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KIM SUN-HWAN
Explosives Development DIV, Hanwha Corporation
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KIM JEONGSIK
Advanced Energy & Environment Research Team, Korea Institute of Industrial Technology
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LEE MYUNGGU
Advanced Energy & Environment Research Team, Korea Institute of Industrial Technology
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Lee Myunggu
Advanced Energy & Environment Research Team Korea Institute Of Industrial Technology:department
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Kim Jeongsik
Advanced Energy & Environment Research Team Korea Institute Of Industrial Technology:department
著作論文
- Optimization for Biodegradation of 2,4,6-Trinitrotoluene (TNT) by Pseudomonas putida(ENVIRONMENTAL BIOTECHNOLOGY)
- Effects of Various Pretreatments for Enhanced Anaerobic Digestion with Waste Activated Sludge
- COD Reduction and Decolorization of Textile Effluent Using a Combined Process(ENVIRONMENTAL BIOTECHNOLOGY)
- Biokinetic Parameter Estimation for Degradation of 2,4,6-Trinitrotoluene (TNT) with Pseudomonas putida KP-T201(ENVIRONMENTAL BIOTECHNOLOGY)