Earlier quoted context omitted.
If only they had a soft cap and let people trade credits to try to keep emissions under that cap to incentivize sequestration and efficiency innovations.
You know what's the problem with that idea? There are no "sequestration and efficiency innovations". Sequestration doesn't work and takes too much energy, and efficiency cannot be improved much thanks to thermodynamics. Besides, if the IPCC is correct about how bad CO2 is, the only sensible cap for emissions is zero. You don't get there with tiny improvements in efficiency.
Robotic 'trees' can turn CO2 into concrete
91–100 of 125 posts
Re: Robotic 'trees' can turn CO2 into concrete
#92Seriously, everyone suggestions a crackpot idea for sequestering carbon should do the basic arithmetic for how much annual human emissions are (40 billion metric tons). I like https://blogs.scientificamerican.com/life-unbounded/the-craz... for the perspective it offers: current human CO2 emissions are equivalent to the entire continent of Africa being covered in coniferous forest and burning to the ground in forest f…
Concrete production accounts for about 5% of CO2 emissions, so this does reduce emissions.
Re: Robotic 'trees' can turn CO2 into concrete
#93Re: Robotic 'trees' can turn CO2 into concrete
#94Earlier quoted context omitted.
There's got to be something that grows faster, and is easier to sequestrate, than trees. Bamboo, maybe? Seaweed? Algae? Dry it off in salt pans and dump it in the deep, cold ocean? That's just dumping more carbon into one of our natural sinks, I think, rather than trying to create a new artificial sink. Even just using it as fertilizer has got to be an improvement over using inorganic fertilizers.
Iron fertilization https://en.wikipedia.org/wiki/Iron_fertilization
The answer seems to be "well, we don't really know what the effect would be". Some algae blooms are not good (red tide), deliberately altering an ecosystem is generally dangerous, it's not clear whether the positive local effect on carbon has some side effect elsewhere (maybe we're just moving phytoplankton around the ocean). Even doing experiments on this is difficult (the world's oceans are weirdly regulated), and current financial incentives don't make it all that enticing either.
But a cool idea.
Re: Robotic 'trees' can turn CO2 into concrete
#95I have a hard time taking an article seriously who uses an image of water vapor coming off nuclear cooling towers as an example of carbon emissions from energy production.
Those sort of cooling towers aren't just for nuclear power. They're the most efficient way of cooling anything, unless you're next to a river. Judging from the railway and storage around it, I think that's a coal plant.
Re: Robotic 'trees' can turn CO2 into concrete
#96Earlier quoted context omitted.
How is that possible? Surely the volume of fossil fuels being burnt isn't remotely comprable to the volume of that forest.
I don't know if the math is correct, but oil and coal are far more energy dense than wood which may account for the discrepancy.
It's still a pretty staggeringly huge amount of land, though.
Re: Robotic 'trees' can turn CO2 into concrete
#97Re: Robotic 'trees' can turn CO2 into concrete
#98Every time one of these articles come up I wonder about the price per tonne of CO2 removed by simply growing wood and not burning it. I'm not really sure what that price is, but it seems to be around $20-$40 per tonne? Does anyone have a more accurate number?
Re: Robotic 'trees' can turn CO2 into concrete
#99Seriously, everyone suggestions a crackpot idea for sequestering carbon should do the basic arithmetic for how much annual human emissions are (40 billion metric tons). I like https://blogs.scientificamerican.com/life-unbounded/the-craz... for the perspective it offers: current human CO2 emissions are equivalent to the entire continent of Africa being covered in coniferous forest and burning to the ground in forest f…
Re: Robotic 'trees' can turn CO2 into concrete
#100Earlier quoted context omitted.
Additionally, if you permanently dedicate 1 acre of land to growing trees, then an acre of trees' worth of wood is permanently captured - though the individual trees may die and rot, more will take their place.
The only problem is that we don't have nearly enough space for that. An acre of trees stores ~393 tonnes of carbon dioxide permanently (in Vermont anyway, other areas probably vary a lot) [1] Humans generate ~40 Gtonnes of CO2 a year. That means we need to be adding ~100 million acres of trees every year to capture that. There's currently 4 billion hectares of forest cover - that's around 10 billion acres. If we repl…
Related: https://oceana.org/blog/seaweed-could-be-scrubbing-way-more-...