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Nuclear Power Market in Lithuania Product Image

Nuclear Power Market in Lithuania

  • Published: October 2012
  • Region: Lithuania
  • 235 Pages
  • Taiyou Research

FEATURED COMPANIES

  • Ameren Corporation
  • E.ON AG
  • E.ON Energie
  • Edf Energies Nouvelles
  • Enel SpA
  • Energoatom Concern OJSC
  • MORE

Lithuania had shut down its last nuclear reactor in the year 2009. The plant was responsible for generating 70% of its total energy needs. Recently, Lithuania and the Japanese conglomerate Hitachi concluded a concession agreement for the Visaginas Nuclear Power Plant, paving the way for the next phase of project development of what is seen as one of the most advanced nuclear generation projects in Europe.

It involves vendor equity as well as the other Baltic States. Almost 90% of the country's gas comes from Russia, at a significantly higher price than paid by other EU countries. Following closure of its second nuclear power reactor at the end of 2009, over 60% of Lithuania's electricity is imported. The country, along with its two Baltic neighbors is oriented to the West and keen to increase its independence from Russia, which accounts for 80% of its energy imports. In 2009, the government commissioned an international advisory consortium, led by the Rothschild investment bank, to prepare a business model and financing plan for the Visaginas project.

This was presented in September 2009 and adopted by the government, which proceeded to invite expressions of interest READ MORE >

Executive Summary

Chapter 1: Introduction to Nuclear Power

1. What is Nuclear Power?
1.1 Industry Definition
1.2 Overview of Nuclear Power
1.3 Current Use of Nuclear Power
1.4 Safety of Nuclear Power
1.5 Nuclear Weapons Non-proliferation

2. Why the World Needs Nuclear Power?
2.1 Primary Energy Situation
2.2 Global Power Market
2.3 Generation Options
2.4 Global Installed Capacity & Power Generation
2.5 Nuclear versus Conventional Thermal Power Sources
2.6 Role of Nuclear Power in the Global Power Industry
2.7 Environmental Impact of Nuclear Power
2.8 Does the World Really Need Nuclear Power: Exploring Other Options

Chapter 2: Analysis of the Global Nuclear Power Industry

1. Global Nuclear Power Industry
1.1 Market Profile
1.2 Market Statistics
1.3 Industry Value & Volume Analysis
1.4 Industry Capacity & Generation
1.5 Region-wise Industry Segmentation
1.6 Technological Trends in the Industry
1.7 Global Nuclear Power Industry Outlook

2. Global Nuclear Power Industry: Porter’s Five Forces Analysis
2.1 Introduction
2.2 Power of Buyers
2.3 Power of Suppliers
2.4 Competitive Rivalry
2.5 New Entrants in the Industry
2.6 Presence of Substitutes

3. Emerging Nuclear Power Markets

Chapter 3: Nuclear Power in Lithuania

1. Nuclear Power in Europe
1.1 Market Profile
1.2 Industry Statistics
1.3 Industry Value & Volume Analysis
1.4 Industry Capacity & Generation
1.5 Country-wise Industry Segmentation

2. Nuclear Power Industry in Lithuania
2.1 Market Profile
2.2 Industry Statistics
2.3 Impact of the Fukushima Nuclear Disaster
2.4 Operating & Upcoming Nuclear Reactors in Lithuania
2.5 Decommissioning of Reactors
2.6 Regulatory Framework

Chapter 4: Analysis of Major Global Players

1. Ameren Corporation
1.1 Company Overview
1.2 Business Analysis
1.3 SWOT Analysis

2. BKW FMB Energie AG
2.1 Company Overview
2.2 Business Analysis
2.3 SWOT Analysis

3. EDF Electricité de France SA
3.1 Company Overview
3.2 Business Analysis
3.3 SWOT Analysis

4. Edf Energies Nouvelles
4.1 Company Overview
4.2 Business Analysis
4.3 SWOT Analysis

5. Enel SpA
5.1 Company Overview
5.2 Business Analysis
5.3 SWOT Analysis

6. E.ON AG
6.1 Company Overview
6.2 Business Analysis
6.3 SWOT Analysis

7. Energie Baden-Wuerttemberg AG
7.1 Company Overview
7.2 Business Analysis
7.3 SWOT Analysis

8. General Electric Company
8.1 Company Overview
8.2 Business Analysis
8.3 SWOT Analysis

9. Iberdrola SA
9.1 Company Overview
9.2 Business Analysis
9.3 SWOT Analysis

10. RWE AG
10.1 Company Overview
10.2 Business Analysis
10.3 SWOT Analysis

11. Siemens AG
11.1 Company Overview
11.2 Business Analysis
11.3 SWOT Analysis

12. Vattenfall AB
12.1 Company Overview
12.2 Business Analysis
12.3 SWOT Analysis

13. E.ON Energie

14. Energoatom Concern OJSC

Chapter 5: Conclusion

1. Appendix

2. Glossary

3. Research Methodology

List of Figures

Figure 1: Share of Nuclear Power in Total Global Electricity Production (1971-2010)
Figure 2: Electricity Generation from Nuclear Power in 2010
Figure 3: World Electricity Consumption by Region
Figure 4: Load Curves for a Common Electricity Grid
Figure 5: Installed Capacity and Power Generation Worldwide (MW and GWh) 2005-2020
Figure 6: Power Generation from Various Sources (%) 2010
Figure 7: Capacity of the Global Power Market (MW) 2010-2020
Figure 8: Environmental Impact of Power Generating Resources
Figure 9: Outlook for Net Electricity Generation by Fuel Type (000s TWh) 2007-2035
Figure 10: Penetration of Nuclear Power Worldwide, 2010
Figure 11: Nuclear Reactors Operational in the World, by Country, 2011
Figure 12: Evolution of Nuclear Power Reactor Designs
Figure 13: Globally Operating Nuclear Power Reactors by Age, 2011
Figure 14: Number of Nuclear Power Reactors under Construction by Country as of 2011
Figure 15: Value of the Global Nuclear Power Industry (USD Billion) 2006-2010
Figure 16: Volume of the Global Nuclear Power Industry (Thousand GWh) 2006-2010
Figure 17: Installed Capacity and Generation in the Global Nuclear Power Industry (MW & GWh) 2005-2020
Figure 18: Region-wise Segmentation of the Global Nuclear Power Industry (%) 2010
Figure 19: Operating Nuclear Power Plants Worldwide by Generation Type, 2010
Figure 20: Operating Nuclear Power Reactors Worldwide by Region, 2010
Figure 21: Forecast Value of the Global Nuclear Power Industry (USD Billion) 2010-2015
Figure 22: Volume Forecast of the Global Nuclear Power Industry (Thousand GWh) 2010-2015
Figure 23: Porter's Five Forces Analysis of the Global Nuclear Power Industry
Figure 24: Value of the European Nuclear Power Industry (USD Billion) 2006-2010
Figure 25: Volume of the European Nuclear Power Industry (Thousand GWh) 2006-2010
Figure 26: Installed Capacity and Generation in the European Nuclear Power Industry (MW & GWh) 2005-2020
Figure 27: Segmentation of the European Nuclear Power by Country
Figure 28: Competitors of Nuclear Power
Figure 29: Pressurized Water Reactor Vessel
Figure 30: Advanced Liquid Metal Reactor
Figure 31: Radioisotope Thermoelectric Generator of Cassini Probe
Figure 32: Nuclear Fuel Cycle
Figure 33: Control Rod Assembly
Figure 34: Steel Pressure Vessel
Figure 35: Siemens Steam Turbine with Open Case
Figure 36: Sources of Nuclear Waste

List of Tables

Table 1: Installed Capacity and Power Generation Worldwide (MW and GWh) 2005-2020
Table 2: Power Generation from Various Sources (%) 2010
Table 3: Capacity of the Global Power Market (MW) 2010-2020
Table 4: Operating Nuclear Reactors in the World by Coolant Type, 2011
Table 5: Number of Nuclear Reactors Worldwide Shutdown Permanently as of 2011
Table 6: Number of Nuclear Reactors Worldwide Shutdown Permanently by Type as of 2011
Table 7: Number of Nuclear Power Reactors under Construction by Type as of 2011
Table 8: Value of the Global Nuclear Power Industry (USD Billion) 2006-2010
Table 9: Volume of the Global Nuclear Power Industry (Thousand GWh) 2006-2010
Table 10: Installed Capacity and Generation in the Global Nuclear Power Industry (MW & GWh) 2005-2020
Table 11: Region-wise Segmentation of the Global Nuclear Power Industry (%) 2010
Table 12: Planned/Under Construction Nuclear Power Plants till 2020
Table 13: Forecast Value of the Global Nuclear Power Industry (USD Billion) 2010-2015
Table 14: Volume Forecast of the Global Nuclear Power Industry (Thousand GWh) 2010-2015
Table 15: Emerging Nuclear Power Countries
Table 16: Upcoming Nuclear Power Plants in Emerging Markets
Table 17: Value of the European Nuclear Power Industry (USD Billion) 2006-2010
Table 18: Volume of the European Nuclear Power Industry (Thousand GWh) 2006-2010
Table 19: Installed Capacity and Generation in the European Nuclear Power Industry (MW & GWh) 2005-2020
Table 20: Segmentation of the European Nuclear Power by Country, 2010
Table 21: Upcoming Nuclear Power Plant in Lithuania
Table 22: Shutdown Nuclear Power Plant in Lithuania
Table 23: Waste Management for Used Fuel from Nuclear Power Reactors
Table 24: Estimates of Total Electricity Generation and the Contribution of Nuclear Power
Table 25: Nuclear Plant: Projected Electricity Costs (c/kWh)
Table 26: Economics of Fossil-Fired Electricity Generation

- Energoatom Concern OJSC
- Edf Energies Nouvelles
- EDF Electricité de France SA
- Ameren Corporation
- Enel SpA
- E.ON AG
- Energie Baden-Wuerttemberg AG
- General Electric Company
- Iberdrola SA
- RWE AG
- Siemens AG
- Vattenfall AB
- E.ON Energie

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