Carbon dioxide has become far too prevalent in our atmosphere and is a large component of greenhouse gases that many believe are responsible for climate change. But what if this excess carbon dioxide could be harvested from the atmosphere, repurposed, and used to make a clean, renewable energy source that already exists more efficient?
It sounds like a plan Doc Brown would have concocted and then hurriedly told Marty McFly about as a group of angry terrorists bared down on them, but this isn’t the stuff of science fiction like a flux capacitor, this is very much based in reality.
GE believes it has found a way to harvest CO2 and use it to create solar batteries, Digitaltrends.com reports. Solar energy is a great source of renewable energy, but there is a problem: the sun needs to be shining in order to harness its power. Currently, there isn’t a very efficient means of storing energy produced from solar power to keep it available to the grid whenever it is needed, even if the sun isn’t currently shining, but that could all change.
Here is how the two-stage process works: solar energy would be captured and stored in a liquid of molten salt. Harvested and stored CO2 would then be cooled into dry ice and, when power is needed, the salt would turn the dry ice CO2 into a “supercritical” fluid (which is defined as matter that does not have specific liquid or gas phases). This supercritical fluid would then flow into a CO2 turbine called a sunrotor and the energy would be disseminated as needed.
If it seems complicated, well, that’s probably because it is. But don’t worry, just because something being complicated often times means it is inefficient and/or expensive, that isn’t the case here.
Not only would the process be cheap since energy isn’t being made, just transferred, the sunrotors would also be able to operate with 68% efficiency. Gas power plants are typically only able to achieve 61% efficiency.
However, this process and the sunrotors are still a good five to 10 years away from actually being put into use, but the fact that the technology exists to not only suck some CO2 out of the atmosphere but to also use it to make renewable, clean energy sources more efficient and practical makes this a classic two birds with one stone scenario.
The overall effect of these sunrotors and this CO2 harvesting/storing process is reduced usage of fossil fuels for power generation, which would only work to eliminate even more CO2 from the atmosphere.
Related Stories
| Mar 7, 2014
Thom Mayne's high-tech Emerson College LA campus opens in Hollywood [slideshow]
The $85 million, 10-story vertical campus takes the shape of a massive, shimmering aircraft hangar, housing a sculptural, glass-and-aluminum base building.
| Feb 27, 2014
Target converts former prison dump into latest big-box store
Target's new San Rafael, Calif., location was built on the site of the former San Quentin prison dump.
| Feb 20, 2014
5 myths about cross laminated timber
A CLT expert clears up several common misconceptions and myths surrounding the use of wood as a building material.
| Feb 17, 2014
GBI to Offer AIA Approved Course Free for 60 Days to Train New Green Globes Professionals
The Green Building Initiative™ (GBI) announced today that between Feb. 13 and April 15 it will provide free access to its online certification course for Green Globes Professionals™ (GGPs). GGPs help guide building projects in achieving Green Globes® ratings, awarded for environmentally-focused design and construction.
| Feb 14, 2014
Must see: Developer stacks shipping containers atop grain silos to create student housing tower
Mill Junction will house up to 370 students and is supported by 50-year-old grain silos.
| Feb 13, 2014
Extreme Conversion: Nazi bunker transformed into green power plant, war memorial
The bunker, which sat empty for over 60 years after WWII, now uses sustainable technology and will provide power to about 4,000 homes.
| Feb 4, 2014
World's fifth 'living building' certified at Smith College [slideshow]
The Bechtel Environmental Classroom utilizes solar power, composting toilets, and an energy recovery system, among other sustainable strategies, to meet the rigorous performance requirements of the Living Building Challenge.
| Jan 30, 2014
Mayors of 10 metros unite to cut building-related climate pollution
Organizers say combined initiative could cut as much climate-change pollution as generated by 1 million cars every year, and lower energy bills by nearly $1 billion annually.
| Jan 23, 2014
Adrian Smith + Gordon Gill-designed Federation of Korean Industries tower opens in Seoul [slideshow]
The 50-story tower features a unique, angled building-integrated photovoltaic (BIPV) exterior designed to maximize the amount of energy collected.
| Jan 21, 2014
2013: The year of the super-tall skyscraper
Last year was the second-busiest ever in terms of 200-meter-plus building completions, with 73 towers, according to a report by the Council on Tall Buildings and Urban Habitat.