Earlier quoted context omitted.
Key is to plant plans and trees. Billions of them. Our energy needs will only become bigger. Transition to renewable economy is in progress. That's good. But there is not enough focus on plants and trees.
For any mitigation solution, you have to ask 3 questions 1) How much does it cost 2) How much space does it require 3) How does it scale Planting trees performs excellent on (1) but terribly on (2) and (3). According to Bill Gates' recent book on the topic (where he aims as best has he can to summarize the state of knowledge as per today), you'd basically have to make a big forest of the rest of the world just to off…
A CO2 capture solvent with exceptionally low total costs of capture
91–100 of 269 posts
Re: A CO2 capture solvent with exceptionally low total costs of capture
#92Earlier quoted context omitted.
lot of wishful thinking here. There's clearly not enough time for this
Enough time for what? All I'm predicting is that carbon reduction will follow a path. Slow, then fast, then slow again. At that late point, exhaust capture may be mandatory... I would even say probably.
Re: A CO2 capture solvent with exceptionally low total costs of capture
#93Earlier quoted context omitted.
1. The solvent in carbon capture runs in a closed loop. You typically heat it, and it releases the CO2 so you can compress it and inject it below ground. 2. You don't necessarily need a depleted natural gas reservoir to inject CO2 subsurface (though they sure are convenient) and there is plenty of room for CO2 subsurface. It also doesn't creep to the surface on any meaningful timescale. 3. How do we transport it ther…
$50 per tonne? A coal plant produces about a tonne of CO2 for every MWh produced. Industrial electricity price might be $50 per MWh. So just paying for the carbon capture doubles your electricity price? $100 carbon capture charge would triple it. I can't see how this could be competitive. We have an excellent carbon storage technology, it's called coal. And what's best, it's already there, underground, very safely, p…
Re: A CO2 capture solvent with exceptionally low total costs of capture
#94Re: A CO2 capture solvent with exceptionally low total costs of capture
#95Earlier quoted context omitted.
1. The solvent in carbon capture runs in a closed loop. You typically heat it, and it releases the CO2 so you can compress it and inject it below ground. 2. You don't necessarily need a depleted natural gas reservoir to inject CO2 subsurface (though they sure are convenient) and there is plenty of room for CO2 subsurface. It also doesn't creep to the surface on any meaningful timescale. 3. How do we transport it ther…
$50 per tonne? A coal plant produces about a tonne of CO2 for every MWh produced. Industrial electricity price might be $50 per MWh. So just paying for the carbon capture doubles your electricity price? $100 carbon capture charge would triple it. I can't see how this could be competitive. We have an excellent carbon storage technology, it's called coal. And what's best, it's already there, underground, very safely, p…
It can't. Coal plants are dinosaurs that need to be shut down. Charging a carbon price is one way to make that happen faster.
Re: A CO2 capture solvent with exceptionally low total costs of capture
#96Earlier quoted context omitted.
> I also happen to think a $100 per tonne carbon price is not such a bad idea. Government here in Norway recently released their climate plan, and part of it was the gradual increase to 2000 NOK (~234 USD) per tonne of CO2 in 2030[1]. Not sure if it survives the years of politics between then and now though... [1]: https://www.dn.no/politikk/erna-solberg/sveinung-rotevatn/kl...
Does this include the carbon ultimately released from oil that was sold to other countries by Norway?
Re: A CO2 capture solvent with exceptionally low total costs of capture
#97Re: A CO2 capture solvent with exceptionally low total costs of capture
#98Earlier quoted context omitted.
1. The solvent in carbon capture runs in a closed loop. You typically heat it, and it releases the CO2 so you can compress it and inject it below ground. 2. You don't necessarily need a depleted natural gas reservoir to inject CO2 subsurface (though they sure are convenient) and there is plenty of room for CO2 subsurface. It also doesn't creep to the surface on any meaningful timescale. 3. How do we transport it ther…
> I also happen to think a $100 per tonne carbon price is not such a bad idea. Government here in Norway recently released their climate plan, and part of it was the gradual increase to 2000 NOK (~234 USD) per tonne of CO2 in 2030[1]. Not sure if it survives the years of politics between then and now though... [1]: https://www.dn.no/politikk/erna-solberg/sveinung-rotevatn/kl...
I get the impression that the tax is to be levied on the entity that emits CO2 to the atmosphere, not the fuel producer?
What's also encouraging is that it's the right party fronting this suggestion. It's not a fringe left-wing environmental party.
Re: A CO2 capture solvent with exceptionally low total costs of capture
#99Earlier quoted context omitted.
I guess the low hanging fruit is to attach this to a power plant or some other CO2 emitting process.
That's true, but then it is surely better to cut out the middle-man and just not use fossil fuels for static generation in the first place. The energy needs which are hard to meet with renewables (aviation, other large-scale transport) are the same places where CCS is non-viable due to the efficiency hit. The best we can do is decarbonise as quickly as possible, and live with the fallout of our failure to act this fa…
Maybe it's viable for cement production as well.
Re: A CO2 capture solvent with exceptionally low total costs of capture
#100Earlier quoted context omitted.
1. The solvent in carbon capture runs in a closed loop. You typically heat it, and it releases the CO2 so you can compress it and inject it below ground. 2. You don't necessarily need a depleted natural gas reservoir to inject CO2 subsurface (though they sure are convenient) and there is plenty of room for CO2 subsurface. It also doesn't creep to the surface on any meaningful timescale. 3. How do we transport it ther…
Maybe you can help enlighten me on this. I've been struggling to understand the basics thermodynamics of carbon capture for quite some time. So we have a hydro-carbon, we mix it with oxygen, and the oxygen combines with the hydrogen and the carbon, and releases heat as a byproduct. The heat energy increases the pressure of the newly created CO2. This higher pressure is placed on one side of a turbine or a piston, and…