The Energy Mix
Subscribe
Donate
  • Topics
    • Buildings & Infrastructure
    • Climate Equity & Justice
      • Energy Poverty
      • Indigenous Rights & Reconciliation
    • Climate Finance
      • Community Climate Finance
      • Finance & Investment
      • Insurance & Liability
      • Subsidies
    • Climate Impacts & Adaptation
      • Biodiversity & Habitat
      • Drought & Wildfires
      • Forests & Deforestation
      • Health & Safety
      • Heat & Temperature
      • Ice Loss & Sea Level Rise
      • Severe Storms & Flooding
    • Emissions
      • Carbon Levels & Measurement
      • CCS & Negative Emissions
      • Methane
    • Energy
      • Renewables
      • Fossil Fuels
      • Hydrogen
      • Nuclear
      • Batteries & Storage
      • Energy Efficiency
      • Power Grids
    • Food & Agriculture
    • Industry
      • Data Centres & Tech
      • Critical Minerals & Mining
      • Petrochemicals & Plastics
    • Policy & Politics
      • Carbon Pricing
      • COP Conferences
      • Elections
      • Energy Politics
      • International Security & War
      • Legal & Regulatory
    • Research & Innovation
      • International Agencies & Studies
      • Research & Development
    • Society & Culture
      • Climate Action
      • Mis/Disinformation & Greenwashing
      • Jobs & Training
      • Leisure & Recreation
      • Media, Messaging, & Public Opinion
    • Transportation & Mobility
      • Electric Vehicles
      • Shipping & Aviation
      • Transit
      • Walking, Biking & Micromobility
  • Regions
    • Africa
    • Arctic & Antarctica
    • Asia
    • Australia
    • Canada
    • International
    • Mexico & the Caribbean
    • Middle East
    • Oceans
    • Small Island States
    • South & Central America
    • Subnational
    • United States
    • UK & Europe
  • Special Coverage
    • The Weekender
    • IEA2026
    • Canada’s Major Projects Office
    • Hidden Wonder Valley
    • COP30
    • Cities & Communities
    • Heat & Power
    • Community Climate Finance
  • More Resources
    • Climate Glossary
    • What If We Changed the Conversation on Climate Change?
    • Eco-Anxiety
  • About
  • Contact
No Result
View All Result
The Energy Mix
  • Topics
    • Buildings & Infrastructure
    • Climate Equity & Justice
      • Energy Poverty
      • Indigenous Rights & Reconciliation
    • Climate Finance
      • Community Climate Finance
      • Finance & Investment
      • Insurance & Liability
      • Subsidies
    • Climate Impacts & Adaptation
      • Biodiversity & Habitat
      • Drought & Wildfires
      • Forests & Deforestation
      • Health & Safety
      • Heat & Temperature
      • Ice Loss & Sea Level Rise
      • Severe Storms & Flooding
    • Emissions
      • Carbon Levels & Measurement
      • CCS & Negative Emissions
      • Methane
    • Energy
      • Renewables
      • Fossil Fuels
      • Hydrogen
      • Nuclear
      • Batteries & Storage
      • Energy Efficiency
      • Power Grids
    • Food & Agriculture
    • Industry
      • Data Centres & Tech
      • Critical Minerals & Mining
      • Petrochemicals & Plastics
    • Policy & Politics
      • Carbon Pricing
      • COP Conferences
      • Elections
      • Energy Politics
      • International Security & War
      • Legal & Regulatory
    • Research & Innovation
      • International Agencies & Studies
      • Research & Development
    • Society & Culture
      • Climate Action
      • Mis/Disinformation & Greenwashing
      • Jobs & Training
      • Leisure & Recreation
      • Media, Messaging, & Public Opinion
    • Transportation & Mobility
      • Electric Vehicles
      • Shipping & Aviation
      • Transit
      • Walking, Biking & Micromobility
  • Regions
    • Africa
    • Arctic & Antarctica
    • Asia
    • Australia
    • Canada
    • International
    • Mexico & the Caribbean
    • Middle East
    • Oceans
    • Small Island States
    • South & Central America
    • Subnational
    • United States
    • UK & Europe
  • Special Coverage
    • The Weekender
    • IEA2026
    • Canada’s Major Projects Office
    • Hidden Wonder Valley
    • COP30
    • Cities & Communities
    • Heat & Power
    • Community Climate Finance
  • More Resources
    • Climate Glossary
    • What If We Changed the Conversation on Climate Change?
    • Eco-Anxiety
  • About
  • Contact
Subscribe
Donate
The Energy Mix
Subscribe

World of clean energy ‘feasible’ by mid-century

October 9, 2014
Reading time: 3 minutes
Author: Tim Radford

International researchers, in what they believe is the most comprehensive global assessment of clean energy’s potential, report that a low-carbon system could supply the world’s electricity needs by 2050. LONDON, 10 October, 2014 − A global low-carbon energy economy is not only feasible, it could double electricity supply by 2050 while actually reducing air and water pollution, according to new research. Even though photovoltaic power requires up to 40 times more copper than conventional power plants, and wind power uses up to 14 times more iron, the world wins on a switch to low-carbon energy. These positive findings are published in the Proceedings of the National Academy of Sciences by Edgar Hertwich and Thomas Gibon, of the Norwegian University of Science and Technology Department of Energy and Process Engineering.

Get the latest climate news and analysis, direct to your inbox.

Subscribe Today

View our latest digests

Life-cycle assessment

They and international research colleagues report that they have made – as far as they know – the first global life-cycle assessment of the economic and environmental costs of renewable and other clean sources of energy in a world that responds to the threat of climate change. Other studies have looked at the costs in terms of health, pollutant emissions, land use change or the consumption of metals. The Norwegian team set out to consider the lot. There were some things they had to leave out: for instance, bioenergy, the conversion of corn, sugar cane or other crops to ethanol for fuel, because that would also require a comprehensive assessment of the food system; and nuclear energy, because they could not reconcile what they called “conflicting results of competing assessment approaches”. But they tried to consider the whole-life costs of solar power, wind power, hydropower and gas and coal generators that used carbon capture and storage to reduce greenhouse gas emissions. They took into account the demand for aluminium, copper, nickel and steel, metallurgical grade silicon, flat glass, zinc and clinker. They thought about the comparative costs of “clean” and “dirty” power generation, and they considered the impact of greenhouse gases, particulate matter, toxicity in ecosystems, and the eutrophication– the overwhelming blooms of plankton − of the rivers and lakes. They also assessed the impact of such future power plants on the use of land, and they made allowances for the economic benefits of increasing amounts of renewable power in the extraction and refinement of minerals needed to make yet more renewable power.

More efficient

Then they contemplated two scenarios: one in which global electricity production rose by 134% by 2050, with fossil fuels accounting for two-thirds of the total; and one in which electricity demand in 2050 rises by 13% less because energy use becomes more efficient. They found that to generate new sources of power, demand for iron and steel might increase by only 10%. Photovoltaic systems would require between 11 and 40 times the amount of copper that is needed for conventional generators, but even so, the demand by 2050 would add up to just two years’ worth of current copper production. Their conclusion? Energy production-related climate change mitigation targets are achievable, given a slight increase in the demand for iron and cement, and will reduce the current emission rates of air pollutants. “Only two years of current global copper and one year of iron will suffice to build a low-carbon energy system capable of supplying the world’s electricity needs by 2050,” the authors say. – Climate News Network







in Climate News Network

Trending Stories

Alberta Premier Danielle Smith and Minister of Technology and Innovation Nate Glubish introduced, at a news conference in Edmonton on December 4, 2024, the province’s new data strategy. (photography by Chris Schwarz/Government of Alberta)
Data Centres & Tech

Smith Tells Albertans to ‘Lock In’ Power Prices Before Meta Data Centre Joins Grid

September 1, 2026
42.2k
Jay Phagan/flickr
Pipelines / Rail Transport

West Coast Pipeline Won’t Recoup Its $43.7B Cost as Global Oil Demand Weakens

September 2, 2026
2.2k
Smoke from the Long Lake wildfires in Nova Scotia, August 24, 2025. (A Disappearing Act/flickr)
Heat & Temperature

What a Supercharged El Niño Could Mean for Canada

May 18, 2026
2.3k

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

I agree to the Terms & Conditions and Privacy Policy.

Get the latest climate news and analysis, direct to your inbox.

Subscribe Today

A Stirring Call to Apathy

by Mitchell Beer
September 6, 2026

…

Follow Us

World of clean energy ‘feasible’ by mid-century

October 9, 2014
Reading time: 3 minutes
Author: Tim Radford

International researchers, in what they believe is the most comprehensive global assessment of clean energy’s potential, report that a low-carbon system could supply the world’s electricity needs by 2050. LONDON, 10 October, 2014 − A global low-carbon energy economy is not only feasible, it could double electricity supply by 2050 while actually reducing air and water pollution, according to new research. Even though photovoltaic power requires up to 40 times more copper than conventional power plants, and wind power uses up to 14 times more iron, the world wins on a switch to low-carbon energy. These positive findings are published in the Proceedings of the National Academy of Sciences by Edgar Hertwich and Thomas Gibon, of the Norwegian University of Science and Technology Department of Energy and Process Engineering.

Get the latest climate news and analysis, direct to your inbox.

Subscribe Today

View our latest digests

Life-cycle assessment

They and international research colleagues report that they have made – as far as they know – the first global life-cycle assessment of the economic and environmental costs of renewable and other clean sources of energy in a world that responds to the threat of climate change. Other studies have looked at the costs in terms of health, pollutant emissions, land use change or the consumption of metals. The Norwegian team set out to consider the lot. There were some things they had to leave out: for instance, bioenergy, the conversion of corn, sugar cane or other crops to ethanol for fuel, because that would also require a comprehensive assessment of the food system; and nuclear energy, because they could not reconcile what they called “conflicting results of competing assessment approaches”. But they tried to consider the whole-life costs of solar power, wind power, hydropower and gas and coal generators that used carbon capture and storage to reduce greenhouse gas emissions. They took into account the demand for aluminium, copper, nickel and steel, metallurgical grade silicon, flat glass, zinc and clinker. They thought about the comparative costs of “clean” and “dirty” power generation, and they considered the impact of greenhouse gases, particulate matter, toxicity in ecosystems, and the eutrophication– the overwhelming blooms of plankton − of the rivers and lakes. They also assessed the impact of such future power plants on the use of land, and they made allowances for the economic benefits of increasing amounts of renewable power in the extraction and refinement of minerals needed to make yet more renewable power.

More efficient

Then they contemplated two scenarios: one in which global electricity production rose by 134% by 2050, with fossil fuels accounting for two-thirds of the total; and one in which electricity demand in 2050 rises by 13% less because energy use becomes more efficient. They found that to generate new sources of power, demand for iron and steel might increase by only 10%. Photovoltaic systems would require between 11 and 40 times the amount of copper that is needed for conventional generators, but even so, the demand by 2050 would add up to just two years’ worth of current copper production. Their conclusion? Energy production-related climate change mitigation targets are achievable, given a slight increase in the demand for iron and cement, and will reduce the current emission rates of air pollutants. “Only two years of current global copper and one year of iron will suffice to build a low-carbon energy system capable of supplying the world’s electricity needs by 2050,” the authors say. – Climate News Network







in Climate News Network

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

I agree to the Terms & Conditions and Privacy Policy.

Trending Stories

Alberta Premier Danielle Smith and Minister of Technology and Innovation Nate Glubish introduced, at a news conference in Edmonton on December 4, 2024, the province’s new data strategy. (photography by Chris Schwarz/Government of Alberta)

Smith Tells Albertans to ‘Lock In’ Power Prices Before Meta Data Centre Joins Grid

September 1, 2026
42.2k
Jay Phagan/flickr

West Coast Pipeline Won’t Recoup Its $43.7B Cost as Global Oil Demand Weakens

September 2, 2026
2.2k
Smoke from the Long Lake wildfires in Nova Scotia, August 24, 2025. (A Disappearing Act/flickr)

What a Supercharged El Niño Could Mean for Canada

May 18, 2026
2.3k

A Stirring Call to Apathy

by Mitchell Beer
September 6, 2026

…

Follow Us

Copyright 2026 © Energy Mix Productions Inc. All rights reserved.

  • About
  • Contact
  • Privacy Policy and Copyright
  • Cookie Policy
No Result
View All Result
  • Topics
    • Buildings & Infrastructure
    • Climate Equity & Justice
      • Energy Poverty
      • Indigenous Rights & Reconciliation
    • Climate Finance
      • Community Climate Finance
      • Finance & Investment
      • Insurance & Liability
      • Subsidies
    • Climate Impacts & Adaptation
      • Biodiversity & Habitat
      • Drought & Wildfires
      • Forests & Deforestation
      • Health & Safety
      • Heat & Temperature
      • Ice Loss & Sea Level Rise
      • Severe Storms & Flooding
    • Emissions
      • Carbon Levels & Measurement
      • CCS & Negative Emissions
      • Methane
    • Energy
      • Renewables
      • Fossil Fuels
      • Hydrogen
      • Nuclear
      • Batteries & Storage
      • Energy Efficiency
      • Power Grids
    • Food & Agriculture
    • Industry
      • Data Centres & Tech
      • Critical Minerals & Mining
      • Petrochemicals & Plastics
    • Policy & Politics
      • Carbon Pricing
      • COP Conferences
      • Elections
      • Energy Politics
      • International Security & War
      • Legal & Regulatory
    • Research & Innovation
      • International Agencies & Studies
      • Research & Development
    • Society & Culture
      • Climate Action
      • Mis/Disinformation & Greenwashing
      • Jobs & Training
      • Leisure & Recreation
      • Media, Messaging, & Public Opinion
    • Transportation & Mobility
      • Electric Vehicles
      • Shipping & Aviation
      • Transit
      • Walking, Biking & Micromobility
  • Regions
    • Africa
    • Arctic & Antarctica
    • Asia
    • Australia
    • Canada
    • International
    • Mexico & the Caribbean
    • Middle East
    • Oceans
    • Small Island States
    • South & Central America
    • Subnational
    • United States
    • UK & Europe
  • Special Coverage
    • The Weekender
    • IEA2026
    • Canada’s Major Projects Office
    • Hidden Wonder Valley
    • COP30
    • Cities & Communities
    • Heat & Power
    • Community Climate Finance
  • More Resources
    • Climate Glossary
    • What If We Changed the Conversation on Climate Change?
    • Eco-Anxiety
  • About
  • Contact

Copyright 2025 © Smarter Shift Inc. and Energy Mix Productions Inc. All rights reserved.

Manage Cookie Consent
To provide the best experiences, we use technologies like cookies to store and/or access device information. Consenting to these technologies will allow us to process data such as browsing behaviour or unique IDs on this site. Not consenting or withdrawing consent, may adversely affect certain features and functions.
Functional Always active
The technical storage or access is strictly necessary for the legitimate purpose of enabling the use of a specific service explicitly requested by the subscriber or user, or for the sole purpose of carrying out the transmission of a communication over an electronic communications network.
Preferences
The technical storage or access is necessary for the legitimate purpose of storing preferences that are not requested by the subscriber or user.
Statistics
The technical storage or access that is used exclusively for statistical purposes. The technical storage or access that is used exclusively for anonymous statistical purposes. Without a subpoena, voluntary compliance on the part of your Internet Service Provider, or additional records from a third party, information stored or retrieved for this purpose alone cannot usually be used to identify you.
Marketing
The technical storage or access is required to create user profiles to send advertising, or to track the user on a website or across several websites for similar marketing purposes.
  • Manage options
  • Manage services
  • Manage {vendor_count} vendors
  • Read more about these purposes
View preferences
  • {title}
  • {title}
  • {title}
No Result
View All Result
  • Topics
    • Buildings & Infrastructure
    • Climate Equity & Justice
      • Energy Poverty
      • Indigenous Rights & Reconciliation
    • Climate Finance
      • Community Climate Finance
      • Finance & Investment
      • Insurance & Liability
      • Subsidies
    • Climate Impacts & Adaptation
      • Biodiversity & Habitat
      • Drought & Wildfires
      • Forests & Deforestation
      • Health & Safety
      • Heat & Temperature
      • Ice Loss & Sea Level Rise
      • Severe Storms & Flooding
    • Emissions
      • Carbon Levels & Measurement
      • CCS & Negative Emissions
      • Methane
    • Energy
      • Renewables
      • Fossil Fuels
      • Hydrogen
      • Nuclear
      • Batteries & Storage
      • Energy Efficiency
      • Power Grids
    • Food & Agriculture
    • Industry
      • Data Centres & Tech
      • Critical Minerals & Mining
      • Petrochemicals & Plastics
    • Policy & Politics
      • Carbon Pricing
      • COP Conferences
      • Elections
      • Energy Politics
      • International Security & War
      • Legal & Regulatory
    • Research & Innovation
      • International Agencies & Studies
      • Research & Development
    • Society & Culture
      • Climate Action
      • Mis/Disinformation & Greenwashing
      • Jobs & Training
      • Leisure & Recreation
      • Media, Messaging, & Public Opinion
    • Transportation & Mobility
      • Electric Vehicles
      • Shipping & Aviation
      • Transit
      • Walking, Biking & Micromobility
  • Regions
    • Africa
    • Arctic & Antarctica
    • Asia
    • Australia
    • Canada
    • International
    • Mexico & the Caribbean
    • Middle East
    • Oceans
    • Small Island States
    • South & Central America
    • Subnational
    • United States
    • UK & Europe
  • Special Coverage
    • The Weekender
    • IEA2026
    • Canada’s Major Projects Office
    • Hidden Wonder Valley
    • COP30
    • Cities & Communities
    • Heat & Power
    • Community Climate Finance
  • More Resources
    • Climate Glossary
    • What If We Changed the Conversation on Climate Change?
    • Eco-Anxiety
  • About
  • Contact

Copyright 2025 © Smarter Shift Inc. and Energy Mix Productions Inc. All rights reserved.