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Tidal & Offshore Solar: Reducing CO2 Emissions - News Directory 3

Tidal & Offshore Solar: Reducing CO2 Emissions

June 6, 2025 Catherine Williams Tech
News Context
At a glance
  • A comprehensive new study indicates that⁢ offshore renewable energy (ORE) sources possess teh potential to far exceed current expectations, possibly doubling the⁣ world's electricity demand.
  • the study emphasized the importance of assessing resource potential ⁣rather⁣ than focusing solely on technological maturity.
  • To achieve net-zero carbon ‍dioxide⁤ emissions,⁢ projections suggest that ⁤renewables must account for at least 60% of global energy generation by 2030 and 80% by⁣ 2050.
Original source: techxplore.com

Harnessing the power of the oceans, a new study reveals that offshore renewable energy (ORE) holds the potential to dramatically reshape the global energy landscape. researchers have ⁤uncovered previously overlooked opportunities ⁢to advance ⁣clean energy ⁣growth, possibly doubling the world’s electricity demand through strategic deployment of resources such as ⁢offshore wind, wave energy, and ⁢offshore solar. To meet net-zero goals, renewables must constitute 60% of global energy by 2030; therefore, the potential of ORE is more significant than ever. News Directory 3 has⁢ observed that the study emphasizes a critical need for increased investment in ⁣these crucial technologies. Discover ⁤what’s next in the evolution of lasting energy sources.

key Points

Table of Contents

    • key Points
  • Offshore Renewable Energy potential Could Double Global⁢ Electricity Demand
    • What’s next
    • Further reading
  • Offshore renewable energy⁢ (ORE) potential could double global electricity demand.
  • Study identifies overlooked opportunities⁤ for clean energy advancement.
  • Renewables must generate 60% of global energy by 2030 to ⁣meet net-zero goals.

Offshore Renewable Energy potential Could Double Global⁢ Electricity Demand

updated June⁢ 5, 2025

A comprehensive new study indicates that⁢ offshore renewable energy (ORE) sources possess teh potential to far exceed current expectations, possibly doubling the⁣ world’s electricity demand. Researchers at ⁢the University of Strathclyde conducted an⁢ interdisciplinary comparison of various ORE resources, revealing significant, previously ⁢overlooked opportunities ‍for clean energy development.

the study emphasized the importance of assessing resource potential ⁣rather⁣ than focusing solely on technological maturity. james Spalding, led researcher and Ph.D. student, noted the research identified significant opportunities ⁤for clean ‍energy.He added that ORE could improve clean energy access for nations dependent on fossil fuels.

To achieve net-zero carbon ‍dioxide⁤ emissions,⁢ projections suggest that ⁤renewables must account for at least 60% of global energy generation by 2030 and 80% by⁣ 2050. However,in 2019,renewable energy sources comprised only 23% of ‍the global energy supply,with less than 1% derived from ORE sources. ⁤The majority⁤ of ocean energy capacity is concentrated in Europe,originating from offshore wind,tidal current,and wave energy converters.

the research ⁤team evaluated ⁣data from six global regions: the eastern North Atlantic, Mediterranean, eastern North⁣ Pacific, coastal Asia, western North Atlantic, and the southern hemisphere.⁤ They ‍assessed six ORE ⁣sources: offshore wind, ⁢wave energy, offshore‍ solar, ocean currents, tidal range, and ocean⁤ thermal energy conversion ⁢(OTEC).

“This is the first ⁤time such a broad and interdisciplinary comparison has been possible. By standardizing ⁣data across resource types and ⁢locations, we ⁣have identified significant opportunities for clean energy that have so far been overlooked,” said James Spalding, Ph.D. student at Strathclyde.

What’s next

The ⁣findings suggest a need for increased investment and ⁣development in offshore renewable energy technologies to meet future energy demands and climate goals. Further research and⁤ development could unlock ⁤the full potential of ORE sources and accelerate the transition⁢ to a lasting energy ‍future.

Further reading

  • Spalding James et al, A global ⁤cross-resource assessment of ⁤offshore renewable energy, Renewable and Sustainable Energy⁣ Reviews ⁢ (2025). DOI: 10.1016/J.RSER.2025.115563

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