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      Controllability of Non-thermal Effect in Low Current Arc Plasma and Its Applications in Fuel Conversion : 저전류 아크 플라즈마에서의 저온 플라즈마 효과 제어 가능성 및 이를 이용한 연료 전환 공정

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      https://www.riss.kr/link?id=T15084534

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      목차 (Table of Contents)

      • Chapter 1. INTRODUCTION TO LOW CURRENT ARC TECHNOLOGY 1
      • 1.1. Introduction to plasma technology 2
      • 1.1.1. Artificial plasma 2
      • 1.1.2. Characteristics and classification 2
      • 1.1.3. Applications 3
      • Chapter 1. INTRODUCTION TO LOW CURRENT ARC TECHNOLOGY 1
      • 1.1. Introduction to plasma technology 2
      • 1.1.1. Artificial plasma 2
      • 1.1.2. Characteristics and classification 2
      • 1.1.3. Applications 3
      • 1.1.4. Atmospheric plasma configurations 5
      • 1.1.5. The selected plasma technology for investigation 7
      • 1.2. Existing low current arc configurations 8
      • 1.2.1. Low current and high current arc technology 8
      • 1.2.2. Low current arc configurations 10
      • 1.3. Rotating arc reactors for study 14
      • 1.3.1. The conventional rotating arc reactor 14
      • 1.3.2. The nozzle type rotating arc reactor 16
      • 1.4. The goal of the thesis 17
      • Chapter 2. THE NOZZLE TYPE ROTATING ARC PLASMA: PRINCIPLE AND CHARACTERISTICS 20
      • 2.1. Arc discharge mode 21
      • 2.1.1. Arc discharge mode in the conventional rotating arc reactor 21
      • 2.1.2. Arc discharge mode in the nozzle type rotating arc reactor 23
      • 2.2. Thermal effect: The key of arc plasma technology 25
      • 2.2.1. Effect of reactor geometry 27
      • 2.2.2. Effect of jet region 36
      • 2.2.3. The effect of discharge gases 39
      • 2.2.4. Effect of arc length 51
      • 2.2.5. Heat balance 70
      • 2.3. Non-Thermal effect in low current arcs: Controllability 74
      • 2.3.1. Introduction 74
      • 2.3.2. Experiment setup 76
      • 2.3.3. Results and discussion 77
      • 2.3.4. Remarks 86
      • 2.4. Summary 86
      • Chapter 3: APPLICATIONS 89
      • 3.1. Methane direct conversion to acetylene 90
      • 3.1.1. Introduction 90
      • 3.1.2. Experiment setup 97
      • 3.1.3. Results and discussions 98
      • 3.1.4. Remarks 107
      • 3.2. Dry reforming of methane 108
      • 3.2.1. Introduction 108
      • 3.2.2. Experiment setup 110
      • 3.2.3. Results and discussions 111
      • 3.2.4. Remarks 120
      • 3.3. Biogas auto-thermal reforming: Role of plasma 120
      • 3.3.1. Introduction 120
      • 3.3.2. Experiment setup 121
      • 3.3.3. Results and discussions 122
      • 3.3.4. Remarks 126
      • 3.4. Summary 127
      • Chapter 4. CONCLUSION 128
      • ACKNOWLEDGEMENTS 131
      • APPENDIX 134
      • 1. Reactant feeding method 135
      • 2. Experiment devices 135
      • 2.1. Plasma power supply 135
      • 2.2. Oscilloscope 136
      • 2.3. Thermocouples 137
      • 2.4. High speed cameras, timer 138
      • 2.5. GC 138
      • 3. The calculation methods 139
      • 3.1. Electric power 139
      • 3.2. Fuel conversion process 139
      • REFERENCES 145
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