EDIT: I see this is getting some downvotes. I want to reiterate that I support fusion research, I am just saying that I don't believe fusion is the quickest or most realistic approach to reducing emissions.
EDIT: I see this is getting some downvotes. I want to reiterate that I support fusion research, I am just saying that I don't believe fusion is the quickest or most realistic approach to reducing emissions.
This assumes the researchers working on fusion can work on the other renewable energies, when that’s typically not the case with highly specialized fields. Further, estimating the time it takes for advancement with the described time magnitude is a frivolous pursuit, if you put any weight behind it. Within 5 years, sure let’s predict. But at 30 years, now we’re talking a bit too far into the future. It’s much harder to guesstimate what will occur from now to then.
Lastly, if we assume it will take 30 years to produce a working model, then that only assumes we’re working on it today. If we could, let’s say, divert all scientists away from fusion research onto other renewables, the 30 year estimate would be perpetually pushed until we start working on it once more. Let’s have people who are passionate about their field pursue as many paths to solving the energy crisis as possible. We could have a breakthrough sooner than 30 years, which I would place money on.
High paid professional athletes in the US today have the income of billionaires.
Professional athletes earn around $200 billion in league salary each decade (it excludes endorsements, which tilts the point that much further if included). It's far more than all S&P 500 CEOs combined. Just the three major sports leagues in the US are at around $14 billion per year in salary. That excludes coaches, which now have very high salaries as well. Stripping it down further, all NBA players combined (a mere ~450 players or so) earn more in salary every year than all the S&P 500 CEOs combined.
As of 2019 there were 122 players in Major League Baseball earning $10 million per year or more. The top 30 NBA players earn a combined $1 billion every year.
Pretty funny, the notion that ~$80+ billion in income taxes every ten years, is supposedly a nothingburger. It's a lot of tax revenue, even if it pales next to US Military spending.
30% over 20 years in unambitious. The UK has cut grid carbon emissions by 60% in the past 10 years. (2010 average: 467g/kWh. 2019 average: 189g/kWh). Emissions continue to decline every year.
This was largely achieved by closing coal power plants, and building a lot of wind (both on and off-shore), solar, biomass, and new interconnections with continental Europe. No new nuclear was built in this time. Wind is now the second largest source of electricity in the UK, after natural gas. (But natural gas usage is also declining!)
The reason why solar is not going to work mostly is because there is no legitimate mass installation of batteries that can handle the demand of energy. And the reason why the batteries cannot handle the demand of energy is because governments are not serious about deploying more, and people are already comfortable with the quality of life they already have, so neither are going to step up to make this work. And to be fair, why should the average citizen impose restrictions on themselves to solve this crisis? It's not realistic. Governments are supposed to be the ones to make these initiatives. Analogy: I hate having to pay for taxes, but I like that the government gets it from everyone, so that it can implement common services that benefit a lot of people, which wouldn't be possible otherwise.
The only way is nuclear fission because, as you said, it is proven to be safe and reliable. However, the people have spoken: They do not want "dangerous" nuclear reactors around, even if those impressions were formed by reactors designed and built in the 1950s-1960s. I personally think this is a shut case. There is no convincing of the people to go to nuclear fission anymore.
Power from renewables can be stored for the long term as hydrogen. That's well understood technology, scaling up is an engineering problem. When the sun shines and the wind blows, solar and onshore wind are the cheapest ways to make electricity, so there's a huge economic incentive to solving the storage issue.
The UK government has committed to being carbon neutral by 2050. That's well before you're even prediciting the fusion becomes available.
I hope it only takes 50yr to figure out and scale up fusion, that would be great.
Its an electric generator on a mast. How is it more poisonos than any other industrial object or consumer device?
The batteries they're going to be paired with unless some other storage tech becomes better or windmills become so cheap that we can use less storage or inefficient storage. The windmills themselves are mostly fine since they're just fiberglass, metals and concrete.
Mining for the things that go into batteries is just as destructive as the mining done for coal. It just happens in Asia so nobody cares. If you destroy the suitability of land for habitation or certain crops (likely by affecting the watershed) then you create many of the same problems climate change would/will cause. If you make mining less destructive to the environment batteries become more expensive hampering renewable adoption. It's a catch 22.
Don't get me wrong, it's better than fossil fuels and better than anything involving a solar panel (which has all the mining related dirtiness on the energy production side as well as the storage side) but compared to the bang for your buck you get by knocking atoms around it's a hell of a lot of industrial activity.
Most of what goes in to batteries can be recycled. You can't recycle coal.
Also, the corporate world (at least here in Texas, of all places) is perfectly capable of rolling out state-scale renewable power (wind).
Do you have a source for this? I was also under the impression that fusion has never yet produced a net of energy.
You might be thinking of some news from NIF. In 2013, they sorta claimed to have reached ignition, but that was only by moving the goal-posts.[3]
ITER is not by any means a test of an economical or scalable reactor -- it's still at the stage of a science experiment.
[1]https://en.wikipedia.org/wiki/Joint_European_Torus [2]https://en.wikipedia.org/wiki/JT-60 [3]https://en.wikipedia.org/wiki/National_Ignition_Facility#Bre...
the CEO of JET (largest working fusion reactor, until ITER is finished) Ian Chapman said in a lecture that renewables (and nuclear fission) are key to holding off climate change until fusion is a more mature technology
why should the research be mutually exclusive though? there's resources and brainpower to pursue both.