Tag Archives: nuclear fission

Putting Recent News About A Nuclear Fusion Breakthrough In (Balanced) Perspective

As a general rule-of-thumb, you should never take news of a “scientific breakthrough” at face value. It’s not that the science is flawed or that the media reporting it are uninformed or misguided. It’s just incomplete. The rhetoric rarely matches the results, nor does it fully grasp the implications.

To some extent, that’s unavoidable. People who actually do science rarely use terms like “breakthrough” or “revolutionary.” Despite what popular media might depict, science doesn’t make giant leaps like that. It usually makes gradual steps full of small, but meaningful advances. It rarely makes for attention-grabbing headlines, but that’s how most scientific progress is made. It’s like building a house brick-by-brick. One brick alone is not a breakthrough. It’s the totality of the structure that garner’s the most vlaue.

When it comes to any news on nuclear fusion, it helps to be even more restrained. I’ve been following tech news for most of my life. During that time, I’ve seen plenty of articles and news releases from mainstream sources claiming some major breakthrough. Some give the impression that we’re just a few years away from using fusion to power starships to Mars. That’s a very flawed, very uniformed perspective.

In that same mold, I’ve also seen plenty of news articles saying nuclear fusion is an impossible dream that nobody will see in their lifetime. There’s a common refrain among these skeptics. They’ll often say something along the lines of “Nuclear fusion is 30 years away and always will be.” It’s a very cynical, very narrow-minded understanding of the issue. It also paints a flawed perspective of where we actually are in the science.

With those two perspectives in mind, how do we make sense of the latest news purporting a fusion breakthrough? In case you haven’t heard, the news came courtesy of Lawrence Livermore National Laboratory, which is not some fringe company or organization. This is something they’ve been working on for decades and this was a big moment for them, according to the Financial Times.

FT: Fusion energy breakthrough by US scientists boosts clean power hopes

US government scientists have made a breakthrough in the pursuit of limitless, zero-carbon power by achieving a net energy gain in a fusion reaction for the first time, according to three people with knowledge of preliminary results from a recent experiment.

Physicists have since the 1950s sought to harness the fusion reaction that powers the sun, but no group had been able to produce more energy from the reaction than it consumes — a milestone known as net energy gain or target gain, which would help prove the process could provide a reliable, abundant alternative to fossil fuels and conventional nuclear energy.

The federal Lawrence Livermore National Laboratory in California, which uses a process called inertial confinement fusion that involves bombarding a tiny pellet of hydrogen plasma with the world’s biggest laser, had achieved net energy gain in a fusion experiment in the past two weeks, the people said.

Although many scientists believe fusion power stations are still decades away, the technology’s potential is hard to ignore. Fusion reactions emit no carbon, produce no long-lived radioactive waste and a small cup of the hydrogen fuel could theoretically power a house for hundreds of years.

The US breakthrough comes as the world wrestles with high energy prices and the need to rapidly move away from burning fossil fuels to stop average global temperatures reaching dangerous levels.

Now, compared to other news about “breakthroughs” from mainstream media, this is fairly balanced in that it doesn’t make too many bold claims. It makes clear that commercial fusion power stations are still decades away. But that was never the point of this experiment, nor is it the purpose of the article.

The most important detail from this news is the results the scientists produced. For the first time, a nuclear fusion reactor achieved a net energy gain. That means the generator put out more energy than was put into it. Specifically, the experiment produced an excess of 1.37 megajoules of energy, which amounted to approximately 70 percent more than the energy that was put into the reactor.

That is major news.

That is an achievement worth celebrating.

Because to date, plenty of laboratories throughout the world had achieved fusion. That’s not some act of scientific magic on par with anti-gravity or perpetual motion. The issue with fusion has never been about the physics. It has always been an engineering and logistic challenge, more so than fission ever was.

Creating fusion only requires a few ingredients. You need lots of heat, some hydrogen, and a way to confine it all in a structure. The big challenge that has been taking so many years has been to do all this in a way that generates more power than what goes into it. That’s something no other reactor has achieved until this experiment.

Now, it has been done.

We now know it’s possible to create a nuclear fusion reaction that generates more energy than what goes into it.

This is akin to the first ever cell phone call, which occurred in 1973. And it wasn’t until 1983, a full decade later, that the first commercial cell phone went on the market. That first phone was not very good and nowhere near as efficient as the cheapest phone you can get today. But it did work and it did get the ball rolling on the market.

That’s not to say that fusion will follow a similar timeline, but that comparison helps give perspective to where we’re at right now. Just getting a new technology to work is one thing. Making it a commercial product on some level takes time because the technology requires greater refinement, investment, and engineering.

But that process can only start after someone proves that it is technically possible. Fusion did not have that until this news. On top of that, investment in nuclear fusion has never been very high, compared to other technologies. In fact, it has only been in the past couple of years that more public and private investment has flowed in to developing nuclear fusion. So, that old joke about fusion always being 30 years away was missing a key detail. Any technology is going to develop slowly if there isn’t sufficient investment.

Now that one lab has succeeded in showing that a net energy gain is possible with fusion, others can follow. Hopefully, it inspires even more investment. With those investments will come more refinements and efficiencies. If those efforts are sustained, fusion doesn’t just become possible. It becomes inevitable.

The past couple decades have seen one too many price spikes in oil and other fossil fuels. Recent geopolitical conflicts have only shown just how vital it is for us to get off fossil fuels as quickly as possible. And our energy demands are only going to keep going up in the coming years. Add on top of that all the environmental concerns surrounding fossil fuels and the urgency for nuclear fusion has never been greater.

We’re still not going to see fusion plants popping up tomorrow, next year, or the year after that. But with this news, we’ve taken a critical first step. And many of those reading this will likely live to see the day when fusion energy powers their homes. That’s something worth looking forward to.

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Recent Advances In Nuclear Fusion (And Why We Should Cheer Them On)

Nuclear fusion: Building a star on Earth is hard, which is why we need  better materials

There a great many technological advancements that are touted as “game changing” or “revolutionary,” but very few end up delivering on that promise. I still remember all the hype surrounding the Segway and the Virtual Boy.

Granted, these might have been just a byproduct of market hype, but there was a genuine belief that this technology would revolutionize the world. It just didn’t pan out.

I know I’ve discussed a number of technological advances that are very likely to deliver on that hype. I still believe that artificial intelligence, brain computer interfaces, and human enhancement will be true game changers for the future of humanity.

However, there’s one technology that I haven’t really touched on. Arguably, it’s the most needed technology in the world right now. It wouldn’t just revolutionize the world as we know it. It might literally save it.

That technology is nuclear fusion.

Now, there’s a reason I haven’t talked about it much, aside from it not being in any particular area of expertise for me. Nuclear fusion doesn’t exactly have a lot of sexy implications like AI or human enhancement. It also has a bit of a bad reputation among those who speculate about the future.

The running joke is that nuclear fusion is 30 years away and always will be.

If you’re not laughing, don’t worry. It’s not a very good joke and it’s not the least bit funny in the grand scheme of things. That’s because nuclear fusion, if we could get it to work on a large scale, would effectively solve the world’s energy problems. It would largely eliminate the need for oil, coal, natural gas, and most other forms of energy.

If it sounds too good to be true, then you’re starting to get the joke. However, this is no magical fantasy power source on par with Dilithium Crystals. Fusion power is very real. We feel it every day. It’s what powers the sun. It’s what powers all the stars we see in the night sky.

Most people who passed high school physics know what fusion is. Basically, you take a bunch of hydrogen atoms, the most abundant element in the universe, and fuse them together under tremendous pressure and heat. The end result is helium, the second most abundant energy in the universe, and a whole lot of energy.

Unlike nuclear fission, which splits larger atoms into smaller atoms, this form of power doesn’t rely on heavy radioactive elements. As such, it produces next to no waste or greenhouse emissions. It also allows us to use seawater as fuel, since all you need is hydrogen. As a power source, it is as close to perfect as you can get.

Naturally, countless engineers and scientists have spent years trying to make fusion a viable power source. For decades, it was promised to be the ultimate solution to our energy needs. However, no matter how many times someone said viable fusion was close, it never came to be. That’s where its reputation as always being 30 years away came from.

On top of that, fusion research has had a few famous frauds. The whole failure of cold fusion was not a good look for the industry. I suspect that affair convinced too many people that we would never have fusion.

Now, there are some legitimate engineering and scientific reasons for why fusion has been so difficult. Again, I’m not an expert and I’m not qualified to explain those reasons. I’ll just say that it often comes back to making a fusion reaction self-sustaining and containing the massive heat required to keep that reaction going.

These are not challenges that require us to break the laws of physics. These are mostly engineering challenges that require study, refinement, and new materials. In the same way you can’t expect blacksmith’s from the 17th century to make a modern car, you can’t expect our current engineers to make a fusion reactor without the necessary components.

Despite what jokes and skeptics may say, we have made real progress. Very recently, an experiment at Lawrence Livermore National Laboratory that utilized high energy lasers set a new energy record. That may not mean much to the average person and it certainly doesn’t mean that fusion has been perfected. It just means we’re getting closer to that magical break-even point.

That’s the point where the energy we get out of the fusion reaction is greater than what we put into it. To date, plenty of labs have created nuclear fusion reactions. They just take way more energy than they give off. Over the years, that difference has gotten smaller and smaller. Once it crosses that break-even point, then we have fusion and that will be a game-changer.

I cannot overstate just how much the world needs that kind of game-changer right now and I’m not just referring to the lingering damage of the COVID-19 pandemic. Every year, we get increasingly dire reports from the IPCC about the impacts of climate change. Despite what politicians and oil lobbyists say, we’re fueling these impacts with our reliance on fossil fuels.

Fusion, once refined and scaled, could do more than anything to reduce our emissions of greenhouse gases. It might not eliminate fossil fuels completely, but it will make them far less necessary for all the energy we need in the present and the future. I would even go so far as to say that nuclear fusion might be the only way to adequately power the future we’re trying to build.

That’s why it’s not helpful to make jokes about how fusion is always 30 years away.

Instead, this might be the best possible time to actively cheer on the people working on nuclear fusion. Only one of them needs to succeed at getting to the break-even point. Only one of them needs to succeed at making a viable fusion reactor. At that point, the world will start changing in a profound way.

It won’t happen all at once, but it will be one of the most welcome and overdue advancements in recent memory. I certainly hope that this advancement happens sooner rather than later. If nothing else, it’ll make the world feel less dire so that the other, sexier advances in technology can proceed.

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