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climateadaptationplatform.com article

Five Game-Changing Technologies That Mitigate Climate Change - Climate Adaptation Platform

https://climateadaptationplatform.com/five-game-changing-technologies-that-mi…

These include advancements in renewable energy, innovative energy storage solutions, carbon capture, utilisation and storage, electric vehicles, and sustainable agriculture and food technologies. Carbon capture, utilisation and storage (CCUS) technologies are designed to capture carbon dioxide emissions from industrial processes and power plants. Growth in CCUS is projected to increase by 35% by 2030, while storage capacity is expected to rise by 70%, resulting in a total annual CO2 capture capacity of around 435 million tons (Mt) and carbon storage of approximately 615 Mt of CO2 per year by 2030. Thankfully, new technologies such as vertical farming, precision agriculture, and lab-grown meat all reduce methane emissions, lower water and land demand, and, overall, mitigate environmental impacts while enhancing food security. Today, rising food demands are exacerbated by climate change and environmental degradation resulting from unsustainable agricultural practices. As a result, technology and innovation play a critical role in creating sustainable food systems and mitigating climate change.

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sciencedirect.com article

Climate Change Mitigation Technology - ScienceDirect.com

https://www.sciencedirect.com/topics/engineering/climate-change-mitigation-te…

The goal of CCS is to reduce anthropogenic carbon emissions by storing CO 2 in the subsurface instead of emitting it into the atmosphere.

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ndcpartnership.org article

Technologies for Climate Change Mitigation: Agriculture Sector

https://ndcpartnership.org/knowledge-portal/climate-toolbox/technologies-clim…

1. Cropland management · 2. Livestock management · 3. Manure/bio-solid management · 4. Bioenergy · 5. Grazing land management/pasture improvement · 6. Management of

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science.nasa.gov official

Mitigation and Adaptation - NASA Science

https://science.nasa.gov/climate-change/adaptation-mitigation/

* [Climate Change](https://science.nasa.gov/?search=Climate%20Change). * [Artemis](https://science.nasa.gov/?search=Artemis). * [Home](https://science.nasa.gov/). * [Missions](https://science.nasa.gov/nasa-missions/). * [Earth](https://science.nasa.gov/earth/). * [The Solar System](https://science.nasa.gov/solar-system/). * [The Universe](https://science.nasa.gov/universe/). * [Science](https://science.nasa.gov/). * [Aeronautics](https://science.nasa.gov/aeronautics/). * [Technology](https://science.nasa.gov/technology/). * [About NASA](https://science.nasa.gov/about/). * [Español](https://science.nasa.gov/es/). article4 weeks ago](https://www.nasa.gov/centers-and-facilities/johnson/preparing-for-artemis-ii-training-for-a-mission-around-the-moon/)[5 min read. [### Missions](https://science.nasa.gov/nasa-missions/). * [Artemis](https://www.nasa.gov/humans-in-space/artemis/). [### Earth](https://science.nasa.gov/earth/). * [Climate Change](https://science.nasa.gov/climate-change/). [### The Solar System](https://science.nasa.gov/solar-system/). * [The Sun](https://science.nasa.gov/sun/). * [Earth](https://science.nasa.gov/earth/). * [The Moon](https://science.nasa.gov/moon/). * [Mars](https://science.nasa.gov/mars/). [### The Universe](https://science.nasa.gov/universe/). * [Exoplanets](https://science.nasa.gov/exoplanets/). [### Science](https://science.nasa.gov/). [### Aeronautics](https://science.nasa.gov/aeronautics/). * [Science in the Air](https://www.nasa.gov/aeronautics/science-in-the-air/). [### Technology](https://science.nasa.gov/technology/). * [Science Instruments](https://www.nasa.gov/science-instruments/). * [Science for Everyone](https://science.nasa.gov/for-everyone/). [### About NASA](https://science.nasa.gov/about/). * [Our History](https://www.nasa.gov/history/). * [Get Involved](https://www.nasa.gov/get-involved/). [### Multimedia](https://science.nasa.gov/multimedia/). article 1 day ago](https://www.nasa.gov/missions/mars-science-laboratory/curiosity-rover/nasas-curiosity-rover-sees-martian-spiderwebs-up-close/) [4 min read. article 6 days ago](https://www.nasa.gov/general/i-am-artemis-katie-oriti/) [4 min read. article 2 weeks ago](https://www.nasa.gov/humans-in-space/nasa-moon-mission-spacesuit-nears-milestone/) [6 min read. article 22 hours ago](https://science.nasa.gov/earth/earth-observatory/showy-swirls-around-jeju-island/) [5 min read. article 5 days ago](https://science.nasa.gov/earth/earth-observatory/winds-whip-up-fires-and-dust-on-the-southern-plains/). article 1 day ago](https://www.nasa.gov/missions/mars-science-laboratory/curiosity-rover/nasas-curiosity-rover-sees-martian-spiderwebs-up-close/) [6 min read. article 13 hours ago](https://science.nasa.gov/science-research/science-enabling-technology/technology-highlights/technology-originally-developed-for-space-missions-now-integral-to-everyday-life/) [2 min read. article 3 weeks ago](https://www.nasa.gov/aeronautics/armd-solicitations/). article 1 day ago](https://www.nasa.gov/missions/mars-science-laboratory/curiosity-rover/nasas-curiosity-rover-sees-martian-spiderwebs-up-close/). article 3 months ago](https://www.nasa.gov/learning-resources/join-artemis/). article 13 hours ago](https://science.nasa.gov/science-research/science-enabling-technology/technology-highlights/technology-originally-developed-for-space-missions-now-integral-to-everyday-life/) [4 min read. * [Sustainability and Government Resources](https://science.nasa.gov/climate-change/adaptation-mitigation/resources/).

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lse.ac.uk article

What technology do we need to cut carbon emissions? - Grantham Research Institute on climate change and the environment

https://www.lse.ac.uk/granthaminstitute/explainers/what-technology-do-we-need…

However, broadly speaking, cutting carbon emissions from the global energy system requires accelerating the deployment of technologies to achieve two objectives: (i) electrifying as much of the energy demand as possible; and (ii) fully decarbonising electricity supply, using renewable sources in particular. Renewable energy sources, in particular wind and solar, can provide an ample source of low-carbon electricity and could contribute 35% of the cumulative emissions reductions required for the global net zero energy transition by 2050, according to the IEA. According to the IEA, 5% of the emissions reductions under a pathway that takes the global energy system to net zero by 2050 could come from switching from coal and oil to lower-carbon energy sources including nuclear. Together, electrification, renewables, nuclear, CCUS and hydrogen could deliver over 70% of the emissions reductions needed to bring the global energy system to net zero by 2050, according to the IEA.

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wri.org article

6 Climate Mitigation and Adaptation Strategies

https://www.wri.org/insights/strategies-achieve-climate-mitigation-adaptation…

[Skip to main content](https://www.wri.org/insights/strategies-achieve-climate-mitigation-adaptation-simultaneously#main-content). [](https://www.wri.org/insights/strategies-achieve-climate-mitigation-adaptation-simultaneously#scroll). [](https://www.wri.org/insights/strategies-achieve-climate-mitigation-adaptation-simultaneously#scroll). * [Climate](https://www.wri.org/climate). * [About Us](https://www.wri.org/about). [Back](https://www.wri.org/insights/strategies-achieve-climate-mitigation-adaptation-simultaneously#). * [Climate filter site by Climate](https://www.wri.org/content-filter/53). WRI [recently analyzed](https://www.wri.org/research/climate-adaptation-investment-case) more than 300 adaptation investments and found that over half of them are also expected to reduce GHG emissions in the long run; for example, by adopting climate-smart farming practices, bringing trees and green spaces to cities, or introducing more resilient renewable energy sources. This, in turn, reduces demand for air conditioning and cuts energy-related emissions — [both of which are rising](https://www.wri.org/insights/climate-change-effects-cities-15-vs-3-degrees-C) as the planet warms. [When harvested sustainably](https://www.wri.org/insights/mass-timber-wood-construction-climate-change), wood may drive fewer emissions than materials like concrete while also minimizing flood damage and reducing losses. These are critical ecosystems: In addition to storing [17% of all forest carbon](https://www.wri.org/insights/4-ways-indigenous-and-community-lands-can-reduce-emissions), they provide [habitat for biodiversity](https://www.wri.org/insights/indigenous-and-local-community-land-rights-protect-biodiversity) and resilience benefits for nearby communities, such as climate regulation and water security. [Climate](https://www.wri.org/climate). [Climate](https://www.wri.org/climate). [Climate](https://www.wri.org/climate). [Climate](https://www.wri.org/climate). * [Climate](https://www.wri.org/climate). * [Cookie Preferences](https://www.wri.org/insights/strategies-achieve-climate-mitigation-adaptation-simultaneously "Manage privacy and cookie preferences").

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