Land/Sea Use adaptations: Difference between revisions
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|title=Climate Change Solutions Land and Sea | |||
|description=This page links to ideas that might help sequester carbon on land and on the seas. | |||
|keywords=climate change, carbon sequestration, climate solutions, phytoplankton, zooplankton, carbon capture, indigenous, traditional land management, control burns, rock dust, | |||
|image=File:Gaia Theory.jpg | |||
|image_width=300 | |||
|image_height=200 | |||
}} | |||
===== Agricultural liming in the US is a large CO₂ sink, say researchers ===== | |||
[https://phys.org/news/2025-07-agricultural-liming-large.amp by Goldachmidt Conference 10/7/25 PHYS ORG] | |||
The team, from the Yale Center for Natural Carbon Capture at Yale University, show that the addition of acidity, in the form of atmospheric pollution and fertilizers, is the main driver for CO2 emissions from soils. By calculating emissions based on acid inputs, they show how emissions may be being underestimated in some cases, and the potential for lime to reduce emissions is being overlooked. | |||
===== Fig trees convert atmospheric CO₂ to stone, research reveals ===== | |||
[https://phys.org/news/2025-07-fig-trees-atmospheric-stone-reveals.amp by European Association of Geochemistry 8/7/25 PHYS ORG] | |||
Some species of fig trees store calcium carbonate in their trunks—essentially turning themselves (partially) into stone, new research has found. The team of Kenyan, U.S., Austrian, and Swiss scientists found that the trees could draw carbon dioxide (CO2) from the atmosphere and store it as calcium carbonate 'rocks' in the surrounding soil. | |||
===== 'Right size, right place' approach required for climate adaptation plans ===== | |||
[https://phys.org/news/2025-06-size-approach-required-climate.html by University of Glasgow 27/6/25 PHYS ORG] | |||
Sophisticated computer modeling of the Clyde by researchers at the University of Glasgow suggests that urban planners will need to adopt a "right size, right place" approach to tidal flood management in the years to come. | |||
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===== 'Right size, right place' approach required for climate adaptation plans ===== | |||
[https://phys.org/news/2025-06-size-approach-required-climate.html by University of Glasgow 27/6/25 PHYS ORG] | |||
Sophisticated computer modeling of the Clyde by researchers at the University of Glasgow suggests that urban planners will need to adopt a "right size, right place" approach to tidal flood management in the years to come. | |||
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===== Diet for a hotter climate: five plants that could help feed the world ===== | |||
[https://www.theguardian.com/environment/2022/aug/20/ancient-crops-climate-crisis-amaranth-fonio-cowpeas-taro-kernza by Cecilia Nowell 20/8/22 The Guardian] | |||
Over the course of human history, scientists believe that humans have cultivated more than 6,000 different plant species. But over time, farmers gravitated toward planting those with the largest yields. Today, just three crops – rice, wheat and corn – provide nearly half of the world’s calories. | |||
===== Regenerative agriculture ===== | |||
[https://www.dailykos.com/groups/regenerative%20agriculture by nailkeg 16/7/22 DAILY KOS] | |||
Regenerative agriculture is a conservation and rehabilitation approach to food and farming systems. It focuses on topsoil regeneration, increasing biodiversity, improving the water cycle, enhancing ecosystem services, supporting biosequestration, increasing resilience to climate change, and strengthening the health and vitality of farm soil. | |||
===== Agrivoltaics pairs solar panels with farming, solving multiple climate-caused problems ===== | |||
[https://www.dailykos.com/stories/2022/7/21/2111772/-Agrivoltaics-pairs-solar-panels-with-farming-solving-multiple-climate-caused-problems by April Siese 21/7/22 DAILY KOS] | |||
Oregon State agriculture professor Chad Higgins explains how solar panels have already helped the university’s research farm crops amidst the current heat wave gripping more than 100 million Americans. “What they do is what we do when we’re out in the sun: we sweat,” Higgins told OPR. | |||
|'''Adding Rock Dust to Soil Can Capture Carbon''' | |||
[[File:LC3M-basalt-spreading-Energy-Farm-Illinois.jpg|center|thumb| [https://e360.yale.edu/features/how-adding-rock-dust-to-soil-can-help-get-carbon-into-the-ground?fbclid=IwAR0a3-HCFxXL1GobAqnprWxO7tOcNfLc-dKs5vJwTzpe-POBl-6Oa8WtVeU BY SUSAN COSIER • SEPTEMBER 2, 2021 Yale Environment360]]] The hemp field experiments go beyond testing which amendments increase yields and sequester carbon and examine how much rock dust should be applied for best results. Some sections got 20 tons of rock dust per acre, while others got 40, allowing the researchers to get a more fine-tuned picture of the relationship between the dust, the soil, and the crops. The research adds to a growing body of scientific work showing the potential for these soil amendments to become one of the many measures needed to help solve our climate crisis. | |||
=====Largest Farm to Grow Crops Under Solar Panels Proves to Be a Bumper Crop for Agrivoltaic Land Use===== | |||
[ | |||
https://www.goodnewsnetwork.org/agrivoltaics-of-solar-power-and-farming-are-a-big-success-on-this-boulder-farm/?fbclid=IwAR2ALVAfvTZo8u-RCd9A6GO6-6uhp285hVPGFtPjZNk53AMBhPy9rqO6ptY by Andy Corbley Nov 2021] | |||
Exciting researchers, farmers, and solar businesses, alike, is the fact that when planting crops under solar panel arrays, the plants grow better and need less watering, while the panels produce more electricity. | |||
=====‘Dangerous blindspot’: why overlooking blue carbon could sink us===== | |||
[https://www.theguardian.com/environment/2021/nov/06/dangerous-blindspot-why-overlooking-blue-carbon-could-sink-us by Karen McVeigh 11/16/2021] | |||
When the ambitious plan to allow sea water to flood over the Steart peninsula in Somerset was completed in 2014, critics called it a waste of money. Floods had recently blighted the nearby area, and some local people argued the £20m spent on creating a new 250-hectare (617-acre) salt marsh would have been better spent on other flood-prevention projects. | |||
=====The Enormous Hole That Whaling Left Behind===== | |||
[https://www.theatlantic.com/science/archive/2021/11/whaling-whales-food-krill-iron/620604/?utm_source=Nature%20Briefing&utm_campaign=d16d818218-briefing-dy-20211104&utm_medium=email&utm_term=0_c9dfd39373-d16d818218-42787455&fbclid=IwAR0f3VME2PIaArSkNIo3orMqlAbMy6clFuTfyzy4n-rpGcs3B6LGWU2it98 by Ed Yong 11/31/2021 The Atlantic] | |||
Their iron-rich poop acted like manure, fertilizing otherwise impoverished waters and seeding the base of the rich food webs that they then gorged upon. When the whales were killed, those food webs collapsed, turning seas that were once rain forest–like in their richness into marine deserts. | |||
But this tragic tale doesn’t have to be “another depressing retrospective,” Savoca told me. Those pre-whaling ecosystems are “still there—degraded, but still there.” And his team’s study points to a possible way of restoring them—by repurposing a controversial plan to reverse climate change. | |||
=====[[Ocean CO2 Capture-William Hall|Ocean CO2 Capture by William Hal]]l===== | |||
Supplying these trace elements in micronutrient quantities seems to be sufficient to make these areas literally bloom. It remains to the 'farmers' to seed the fertilized areas with optimum mixes of phytoplankton and zooplankton to maximize the carbon captured; and then to add and manage suitable suites planktivores and higher order predators to package the captured carbon in fecal pellets and carcases that will rapidly sink to the ocean floor before the captured carbon can be recycled into CO₂. | |||
=====This 2-Acre Vertical Farm Is Managed by AI and Robots and Uses 99% Less Land===== | =====This 2-Acre Vertical Farm Is Managed by AI and Robots and Uses 99% Less Land===== | ||