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국회도서관 홈으로 정보검색 소장정보 검색

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동의어 포함

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Title Page 2

Contents 5

초록 10

Abstract 11

Ⅰ. Introduction 12

1.1. Research Background 12

1.2. Research Goals and Objectives 13

1.3. Scope of the Research 14

1.4. Structure of the Thesis 15

Ⅱ. Theoretical Background and Renewable Energy in Russia and South Korea 16

2.1. Theoretical Foundations of the Research 16

2.2. Current State of Renewable Energy in Russia 20

2.3. Current State of Renewable Energy in South Korea 23

2.4. Comparative Analysis of Renewable Energy Development in Russia and South Korea 26

Ⅲ. Research Methodology 28

3.1. Research Design 28

3.2. Methods of Data Collection and Analysis 30

3.3. Selection of Research Objects 31

Ⅳ. Hydrogen Energy: Comparative Analysis of Russia and South Korea 33

4.1. Hydrogen Production Technologies in Russia and South Korea 33

4.1.1. Hydrogen Production Technologies in Russia: Current and Prospective Solutions 33

4.1.2. Hydrogen Production Technologies in South Korea: Current and Prospective Solutions 35

4.1.3. Comparison of Efficiency and Technological Approaches 38

4.2. Hydrogen Energy Infrastructure: Current Status and Development 40

4.2.1. Infrastructure Development in Russia (Production, Transportation, Utilization) 40

4.2.2. Infrastructure Development in South Korea (Production, Transportation, Utilization) 43

4.2.3. Comparative Analysis: Scale, Investments, and Government Support 45

4.3. Economic Aspects of Hydrogen Energy 47

4.3.1. Government Policy and Financing in Russia 47

4.3.2. Government Policy and Financing in South Korea 49

4.3.3. Comparison of Economic Models and Market Prospects 51

4.4. International Cooperation and Impact of Global Trends 53

4.4.1. Interaction of Russia and South Korea with Global Partners 53

4.4.2. Comparative Analysis of International Integration 55

4.5. Main Barriers and Development Prospects 56

4.5.1. Analysis of Key Barriers in Russia and South Korea 56

4.5.2. Prospective Solutions for Overcoming Barriers 58

Ⅴ. Results and Discussion 61

5.1. General Comparative Overview of Hydrogen Energy Development in Russia and South Korea 61

5.2. SWOT Analysis of Hydrogen Energy 64

Ⅵ. Conclusion 68

6.1. Summary of the Research 68

6.2. Implications 69

6.3. Limitations 71

6.4. Future Research Directions 72

REFERENCES 74

List of Tables 8

Table 2.1. Overview of hydrogen types and their production characteristics 17

Table 4.1. Comparison of hydrogen production technologies in Russia and South... 38

Table 4.2. South Korea's hydrogen infrastructure development indicators through... 44

Table 4.3. Comparative analysis of hydrogen infrastructure in Russia and South... 45

Table 4.4. Comparison of the current and target cost of hydrogen in South Korea 50

Table 4.5. Comparison of Russian and South Korean economic models for... 52

Table 4.6. Comparative analysis of the international integration of Russia and South... 55

Table 5.1. Comparative analysis of hydrogen energy development in Russia and... 61

Table 5.2. SWOT analysis of hydrogen energy in Russia 64

Table 5.3. SWOT analysis of hydrogen energy in South Korea 65

List of Figures 9

Figure 2.1. Growth dynamics of installed RES capacity in Russia (2014-2024) 21

Figure 2.2. Dynamics of investments in RES in Russia and expected volumes by... 22

Figure 2.3. Forecast of installed RES capacity in Russia until 2035 22

Figure 2.4. Forecast of the share of RES in the structure of electricity... 23

Figure 2.5. Share of renewables in South Korea's energy mix compared to other... 24

Figure 2.6. Evolution of South Korea's energy mix projected to 2038 24

Figure 4.2. Geographical distribution of hydrogen energy projects in Russia (as of... 41

초록보기

 본 논문은 글로벌 탈탄소화 맥락에서 러시아와 한국의 수소에너지 발전 현황을 비교 분석하는 데 목적이 있다. 연구를 통해 두 국가가 수소 기술 도입과 관련하여 가진 공통점과 차이점, 강점과 약점, 그리고 향후 전망과 과제를 명확히 하고자 하였다. 저자는 현재 활용되고 있는 수소 생산 기술(그린수소, 블루수소, 그레이수소)을 상세히 검토하고, 양국의 국가 전략을 SWOT 분석을 통해 비교하였으며, 수소 에너지 분야에서의 정부 지원 메커니즘과 국제 협력 현황을 분석하였다. 연구 결과, 한국은 명확한 국가 목표와 수소 시장의 인프라가 잘 구축되어 있으나, 러시아는 풍부한 천연자원과 기술적 잠재력을 가지고 있지만 인프라 및 제도적 제약 요인이 존재함을 확인하였다. 본 논문의 제언은 양국이 각자 가진 잠재력을 효과적으로 활용하여 탈탄소화 목표를 실현하는 데 기여할 것이다.