Technological adaptations: Difference between revisions
From WikiDemocracy
Jump to navigationJump to search
No edit summary |
|||
| (8 intermediate revisions by 2 users not shown) | |||
| Line 6: | Line 6: | ||
|image_width=300 | |image_width=300 | ||
|image_height=200}} | |image_height=200}} | ||
'''See improvements you could make on this page?--Go ahead [[Special:CreateAccount|become a member]] and make your changes''' | |||
===== Solar becomes top source of electricity in California ===== | |||
[https://pv-magazine-usa.com/2025/07/09/solar-becomes-top-source-of-electricity-in-california/ by John Fitz Gerald Weaver 9/7/25 pv magazine] | |||
Over the past year, solar generation surpassed natural gas to become California’s leading source of electricity, a milestone expected to persist. | |||
===== Five geoengineering trials the UK is funding to combat global warming ===== | |||
[https://theconversation.com/five-geoengineering-trials-the-uk-is-funding-to-combat-global-warming-256515?utm_source=bluesky&utm_medium=The%20Conversation%20UK&utm_campaign=publer by Robert Chris 3/6/25 The Conversation] | |||
The UK government recently announced plans to fund five small-scale trials related to geoengineering. It’s the first time a state research funding body has put serious money into what’s known as solar radiation management, or SRM, which seeks to cool the planet by reflecting more of the Sun’s energy back into space. | |||
===== The bacteria that can capture carbon ===== | |||
[https://www.bbc.com/future/article/20230829-the-bacteria-that-can-capture-carbon by Isabelle Gerretsen 29/8/23 BBC] | |||
Scientists have recently discovered a microbe, a type of cyanobacteria, off the coast of a volcanic island near Sicily that eats carbon dioxide (CO2) "astonishingly quickly". | |||
===== Buoyancy-driven hybrid energy platform moves to full-scale pilot ===== | |||
[https://newatlas.com/energy/noviocean-wave-solar-wind-offshore-energy/ by Loz Blain 8/10/24 NEW ATLAS] | |||
Swedish company NoviOcean has tested a third-gen prototype of its combination wind/solar/wave energy platform, a floating platform rated for up to 1 megawatt of consistent clean energy around the clock thanks to a fascinating buoyancy-driven mechanism. Next step: a full-scale pilot. | |||
===== The bacteria that can capture carbon ===== | |||
[https://www.bbc.com/future/article/20230829-the-bacteria-that-can-capture-carbon by Isabelle Gerresten 29/8/23 BBC] | |||
With global greenhouse gas emissions reaching an all-time high last year, many scientists and world leaders are now arguing that new technologies which can capture carbon and store it underground are needed to help the world meet its climate goals. | |||
===== In the field, a 50-kW solar tower reactor is fed only CO2 and water, and produces jet fuel ===== | |||
[https://www.dailykos.com/stories/2022/7/24/2112238/-In-the-field-a-50-kW-solar-tower-reactor-is-fed-only-CO2-and-water-and-produces-jet-fuel by skralyx 24/7/22 DAILY KOS] | |||
If I had a nickel for every time someone claimed “artificial photosynthesis” or “solar fuel production” in the lab and wrote a paper or grant proposal about it, I’d have … well, a couple cases of Ukrainian vodka, OK? So I was really impressed to see that a collaboration among the ETH Zurich and a few other Eurpoean organizations actually built a plant that, in real sunlight, out in the field, converts carbon dioxide and water into aviation fuel. This is the first time anyone has ever actually done this for real. '''Check it out''' in the July 20 edition of the Cell Press journal ''Joule'' (open access article!). | |||
===== This giant ‘water battery’ under the Alps could be a game-changer for renewable energy in Europe ===== | ===== This giant ‘water battery’ under the Alps could be a game-changer for renewable energy in Europe ===== | ||
| Line 51: | Line 77: | ||
The electrochemical process by the labs of chemical and biomolecular engineers Haotian Wang and Thomas Senftle of Rice's Brown School of Engineering resolves issues with previous attempts to reduce carbon monoxide (CO) into acetic acid. Those processes required additional steps to purify the product. | The electrochemical process by the labs of chemical and biomolecular engineers Haotian Wang and Thomas Senftle of Rice's Brown School of Engineering resolves issues with previous attempts to reduce carbon monoxide (CO) into acetic acid. Those processes required additional steps to purify the product. | ||
=====‘Green hydrogen’ from renewables could become cheapest ‘transformative fuel’ within a decade===== | =====‘Green hydrogen’ from renewables could become cheapest ‘transformative fuel’ within a decade===== | ||