Energy independence lome

Energy dependence, in general, refers to mankind's general dependence on either primary or secondary energy for energy consumption (fuel, transport, automation, etc.). In a narrower sense, it may describe the dependence of one country on energy resources from another country.
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Energy dependence, in general, refers to mankind''s general dependence on either primary or secondary energy for energy consumption (fuel, transport, automation, etc.). In a narrower sense, it may describe the dependence of one country on energy resources from another country.

Energy dependency shows the extent to which an economy relies upon imports in order to meet its energy needs. The indicator is calculated as net imports divided by the sum of gross inland energy consumption plus bunkers.

Several countries are conducting extensive research and development programs around renewable energy sources like solar, wind, water, and nuclear energy in hopes to achieve energy independence. However, because solar, wind, and water cannot always be derived as an energy source, nuclear energy is seen as a near-universal alternative that is efficient, safe, and combats the climate crisis.

Under the conceived notion that the expansion of and investment in nuclear energy power plants is a key step in the goal of achieving energy independence many countries, and companies, are supporting nuclear power research efforts.

The International Thermonuclear Experimental Reactor (ITER), located in France, is an experimental tokamak nuclear fusion reactor that is a collaboration between 35 different countries. This project was launched in 2007 and still under construction today.

In 2020, the U.S. Department of Energy awarded $160 million in initial funding to TerraPower and X-energy to build advanced nuclear reactors that will be affordable to construct and operate. Both companies are expected to produce their product within 7 years.[9]

In addition, safe and cost-effective storage of nuclear waste in the Waste Isolation Pilot Plant and full version of this underground storage in New Mexico is important for the nuclear fuel cycle.

DOE Report Includes Over 60 Actions to Enhance Supply Chain Resiliency, Spur Domestic Manufacturing Capacity, and Create Millions of Good Paying Jobs for American Workers

Demand for clean energy technologies such as wind turbines and batteries for electric vehicles has increased significantly as technology costs have plummeted over the last decade. The global clean energy market is expected to grow exponentially — reaching $23 trillion at a minimum by 2030.

Without new domestic raw materials production and manufacturing capacity, the U.S. will continue to rely on clean energy imports, exposing the nation to supply chain vulnerabilities while simultaneously losing out on the enormous job opportunities associated with the energy transition. Yet, in many cases, the United States has untapped potential to support greater domestic production.

Recent shortages of foreign-manufactured automotive semiconductor chips due to the COVID-19 pandemic have forced slowdowns at U.S. car manufacturing plants, highlighting how shortages can hurt American workers. The strategies and actions included in this report will ensure the United States has the capacity to respond quickly in the face of challenges such as global production shortages, trade disruptions, and natural disasters –and to bolster a domestic clean energy supply chain that leads the global economy.

"America''s Strategy to Secure the Supply Chain for a Robust Clean Energy Transition" provides seven key areas for boosting supply chain resiliency and rebuilding American manufacturing:

DOE has already made great progress addressing supply chain vulnerabilities and is taking significant steps to further secure our energy supply chains. Ongoing efforts include:

Critical Minerals and the National Defense Stockpile: The Departments of Energy, Defense, and State executed a memorandum of agreement (MOA) that sets the foundation for a critical minerals stockpile to support the U.S. transition to clean energy and national security needs. The MOA formalizes an interagency partnership to acquire and recycle selected materials for technologies that range from grid-scale batteries to wind turbines.

"America''s Strategy to Secure the Supply Chain for a Robust Clean Energy Transition" represents not only dozens of specific actions that DOE is taking or commits to taking, but it details a whole-of-government approach to the nation''s energy supply chain challenges and opportunities. The strategies described in the report lay out inter-agency collaboration on efforts such as small business loans, foreign investment in U.S. manufacturing, community engagement on mining for critical minerals, and port infrastructure to handle energy product shipping.

To learn more about "America''s Strategy to Secure the Supply Chain for a Robust Clean Energy Transition," view the Fact Sheet or visit to download the entire report or read the 13 other deep dive assessments that are part of the DOE response to the supply chain executive order.

On Feb. 24, 2022, the U.S. Department of Energy released America''s first comprehensive plan to ensure security and increase our energy independence. The sweeping report, "America''s Strategy to Secure the Supply Chain for a Robust Clean Energy Transition," lays out dozens of critical strategies to build a secure, resilient, and diverse domestic energy sector industrial base that will establish America''s role as a global leader in clean energy manufacturing and innovation.

The report was produced in response to President Biden''s Executive Order 14017, America''s Supply Chains and is supported by 13 deep-dive supply chain assessments across the energy sector—ranging from solar energy to semiconductors to cybersecurity. This report is part of a whole-of-government approach to chart a course for revitalizing the U.S. economy and domestic manufacturing by securing the country''s most critical supply chains.

About Energy independence lome

About Energy independence lome

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