| ▲ | palata 2 days ago | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
> I.e. We can use different energy than the one we got out of the fossil fuels we burned. We're talking about using more energy than the one we got from the fossil fuels we burned, right? So that means that on top of replacing fossil fuels with renewables, we would need to more than double it in order to remove CO2 from the atmosphere. This, in itself, is impossible. Already we won't be able to replace fossil fuels entirely, we will just end up with less energy in total. We most certainly won't end up with twice as much. And that's assuming that we could extract the CO2 from the atmosphere with close to the amount of energy we got by burning it in the first place. Which is wrong. CO2 in the atmosphere is actually very costly to extract in terms of energy. It's not that it's not easy. It's practically impossible. | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| ▲ | margalabargala 2 days ago | parent | next [-] | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
So the neat thing is that this isn't at all true. The total annual CO2 budget of the earth is tremendous; less than 5% of CO2 emissions each year into the atmosphere are from humans. Volcanism, photosynthesis, and other natural sources outweigh humans by far. In numbers, ballpark 730gigatons from natural sources and about 30gt from humans. If you look at the amount the CO2 levels increase each year in the atmosphere, you'll find that they net increase by 16gt per year or so. Implying that if we ceased all human CO2 emissions, the atmospheric levels would start recovering at around half the rate they're currently increasing. | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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| ▲ | patapong 2 days ago | parent | prev [-] | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Very napkin math shows that annual energy consumption from fossil fuels is 500 exajoules. Every day the earth receives 15,000 exajoules in solar energy. So to cover double the energy consumption of fossil fuels with solar we need to cover 0.2% of the surface in solar. Compare to around 10% covered in farmland. Again, very back of the envelope math, but in my opinion this does not seem impossible. | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
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