The good news is that there is a material that works well on the walls of fusion reactors. The bad: it is lithium

We know how the sun works. Another thing is to imitate it. If we got Build a nuclear fusion reactorwe would have clean, safe and practically unlimited energy. But doing so involves incredibly complex engineering challenges. The wall problem. One of the more colossal challenges In nuclear fusion is to build a container that supports a hottest plasma than the sun’s core. For years, scientists have been experiencing with various materials, from graphite to high resistance metals such as tungsten. A recent researchthe result of an international collaboration of nine institutions, confirms that we have a star candidate that works spectacularly well for the wall of the reactors: lithium. A self -refrasinal shield. To understand why lithium is so attractive, you must first visualize the hell that is unleashed inside a tokamak, the most common fusion reactor design. A hydrogen gas, mainly its deuterium and tritium isotopesmore than 100 million degrees Celsius is heated to become a plasma. Magnetic fields potently confine it so that it does not touch anything, but it is impossible to prevent some particles from escaping and violently shocking against the interior walls of the reactor. This is where lithium shines because it can be used in a liquid state. Instead of eroding and degrading with each impact, it flows and heals himself instantly. This self -referential liquid layer would protect the solid components behind. Moreover, if the reactor walls are hot enough, the lithium can form a steam shield that absorbs much of the impact before it reaches the solid surface. Goodbye to graphite? Research shows that lithium is not only a passive shield, but an active plasma conditioner. Instead of reflecting the fuel particles that escape, cooling the edge of plasma and destabilizing it, lithium absorbs them. This helps keep heat where it has to be and, therefore, to stabilize the fusion reaction and improve the confinement of plasma. According to researchers, lithium is a promising candidate to replace graphite, which has a much higher erosion rate. Applied in tungsten walls, it allows to operate the fusion to greater power densities, opening the door to more compact and efficient reactors. Two ways to apply it. The researchers tested, on the one hand, to cover the lithium walls before lighting the plasma and, on the other, to inject lithium powder directly on the plasma during the reactor operation. The injection was much more effective when creating a uniform and stable temperature profile, one of the sacred conditions for commercial fusion. All tests were carried out at the Tokamak Diii-D of General Atomics with financing from the United States Department of Energy. The authors of the study, published in the Materials and Energy nuclear magazine, are researchers of the Princeton plasma physics laboratory and his collaborators. Bad news. In addition to exercising even more pressure on the already tensioning lithium market (Although it does not scarce, it is not extracted to the rhythm that grows its demand), there is a more alarming problem. The lithium is too much Well at work. Catch the tritium with a very high efficiency, preventing it from returning to plasma to be used as fuel. If the tritio is stuck to the walls, the reactor ends up running out of fuel and the cycle breaks. The accumulation of radioactive tritium in cold areas and difficult to access the reactor also greatly complicates its maintenance and is a safety risk. To top it off, the retention is more significant if the lithium is injected with the reactor in operation, the most efficient application method. A possible solution. The key is that these experiments were carried out with lithium in solid state, at temperatures below its melting point. In a real reactor, with liquid lithium, The solution could be a “dialysis” system: Instead of bathing the walls by a lithium river and leaving it there, it would be continuously extracted from the reactor, taken to a processing plant to separate the tritium trapped, and pumped back, clean and ready to continue working. The reactor design would have to adapt to this new proposal. It would be necessary to avoid the cold areas where lithium and tritio could accumulate and stay stagnant, keep the walls at higher and more controlled temperatures, and include the circuit to extract, processes and continuously introduce lithium. A material that solves multiple problems in our mission of simulating the sun, but in return introduces new and also complex. Image | General Atomics In Xataka | There is an alternative to nuclear fusion. It is already underway and is extraordinarily promising

While half the world seeks more lithium, some researchers from China have eliminated it from the equation: batteries with bacteria

The shortage of critical resources such as lithium and cobalt has been being a warningsince they are essential for the manufacture of batteries. However, a group of Chinese engineers have found a solution that does not require mining or polluting processes: it only needs bacteria. The study. Researchers from the Shenzhen Advanced Technology They have developed A battery that works with live bacteria. These microorganisms are electroactive, that is, they produce electricity. So the system uses hydrogels that contain living bacteria To conduct electricity and generate it, in addition within the soft material they are protected. Tangible applications Biobatería has a small size and ability to generate energy autonomously, ideal for integrating into portable devices, especially in the medical field. One of its most promising uses is the precise control of physiological functions such as blood pressure, by directed bioelectric stimulation. In this way, a door opens to new forms of physiotherapy, real -time monitoring and devices that do not require frequent recharge or toxic materials. More technical. Biobatería generates electricity thanks to the activity of bacteria such as Shewanella Oneidensis MR-1, which are contained in a alginate-based gel. The material It can be molded With 3D printers, which allows to design it. Its size of 20 mm in diameter and 3.2 mm high contains: a gel with bacteria that acts as an anode, another gel with a chemical that acts as a cathode, and a special membrane that allows the passage of ions between them. Replaces lithium? Its specific capacity (0.4 mAh/g) and energy density (0.008 WH/L) are lower than those of lithium -ion batteries, this biobatría offers a more sustainable alternative: it does not use critical materials or toxic components. In addition, it maintains a bacterial viability of 70 % during its operation and reaches 97.6 % at the end, which speaks of remarkable stability and efficiency. Forecasts Biobaterías are still far from reaching lithium in capacity or energy density. But what they lose potentially, compensate for it with other virtues: they are recharged alone, they are highly efficient and, above all, biocompatible. These qualities make them especially suitable for very specific uses, such as nerve stimulation, control of physiological functions or the operation of bioportile devices. Image | Unspash and Pacific Northwest National Laboratory – PNNL Xataka | Biological batteries? These bacteria can create a world based on renewable energies

NAXTRA strongly bets on sodium as an alternative to lithium

Catl’s name may not sound to you if you don’t follow the world of the electric car closely, but we are talking about the main battery manufacturer worldwide. Tesla, Mercedes-Benz, BMW or Volkswagen are some of the giants who trust their products. Now, this Chinese colossus wants to go one step further. The focus is in sodium ion batteries, a technology that timidly presented in 2021 and now wants to boost on a large scale. Naxtra: The new battle horse. The next Catl movement is called Naxtra, its new sodium batteries line. The company plans to start mass production in the coming months, with an eye on its strategic partners and the global deployment of the product. Less lithium, more sodium. Sodium, more abundant and cheap than lithium, allows to reduce the dependence of the latter and strengthen the basis of new energy technologies. According to Ouyang Chuying, Catl R&D co -director, sodium ion batteries could have a cost advantage as the supply chain strengthens. A range, two solutions. Catl has developed two versions of its Naxtra batteries: one for passenger electric vehicles and a 24 V one with integrated Start-Stop system, designed for heavy trucks. Both are designed to perform in extreme conditions, from -40 ° C to +70 ° C. Extreme cold, the battery for cars maintains 90 % of its capacity. Even with only 10 % load, it retains stable performance at -40 ° C, without significant losses of power. Autonomy, cycles and security. The tourism version reaches an energy density of 175 Wh/kg, the highest recorded in sodium batteries, in line with LFP. It promises an autonomy of 500 km and more than 10,000 load cycles, which reduces maintenance costs remarkably. And, above all, it improves security. By eliminating combustion -prone materials, Catl claims to have gone from passive protection to intrinsic security. The sodium, by its own chemistry, has fewer fire risks in electric vehicles. Images | JUICE In Xataka | I have got on the denza Z9GT and I have clear one thing: this Chinese by -looking car looks at the face of many Europeans of 100,000 euros

The hidden key behind the entire spinal encounter between Javier Milei and Elon Musk: Lithium

The most popular news today is the bizarre gift from Milei to Musk: a chainsaw, how could it be otherwise. However, like any media show, a background related to energy resources and possible commercial opening with the United States is being hidden. In situation. Yesterday, February 20, the Conservative Political Action Conference (CPAC) that the Republican party is celebrating near Washington, where Musk and Milei were. There, the president of Argentina gave a chainsaw to the owner of Tesla, who called her as The “Bureaucracy chainsaw”. First of all this show, the question is: What is Milei doing? On the one hand, after controversial support for cryptocurrency $ librathe Argentine president has chosen to get away from all that storm and travel to his place on Earth: United States. On the other hand, Javier Milei He has gathered With Kristalina Georgieva, managing director of the International Monetary Fund (IMF), To discuss the economic situation from Argentina. In addition, the United States Chamber of Commerce in Argentina The nation has announced for the environment that Argentina has “serious possibilities” of accessing a free trade agreement with the United States. Milei and Musk’s relationship. This friendship between Javier and Elon is not new, and unites a very important and necessary energy resource for the second: lithium. Argentina has historically been very rich in natural resources and has become a fundamental actor for the new technology, especially because it shares the “Lithium triangle” next to Chile and Bolivia. In that aspect, Milei has undertaken A reformist agenda that seeks to eliminate all environmental and social regulation to attract foreign investors, and lithium has become an essential pillar in its economic strategic. Hence his relationship with the tycoon of Tesla, who has shown great interest in the exploitation of lithium. An example of this boom is The Centennial Mouse projectlocated in the province of Salta, where lithium is being extracted. Operated by the French company ERAMET, this site is expected to produce 24,000 tons of lithium lithium carbonate battery, sufficient to supply 600,000 electric vehicles a year. Opening with the United States. “Who wants something, something costs him,” but sometimes this phrase must be rethink and ask: but what cost? The fact is that while Musk approaches Milei, he is finding out how to get one more loan for Argentina. The Argentine president not only went to take refuge to the American country and feel the heat of his “friends”, but also to talk to the IMF and discuss a new financial agreement within the framework of his economic adjustment plan. During the meeting, Georgieva The country’s “progress” has highlightedincluding deficit reduction, low inflation and economic growth. However, one thing is the numbers and another reality: everything has been achieved based on a severe tax adjustment, eliminating subsidies and reducing ministrieswhich has generated a strong social impact and discontent in broad sectors of the population. In addition, economists have explained to the CNN That Georgieva’s subsequent statement was not “very constructive”, since he did not offer concrete details about additional financial support or changes in the exchange scheme. Despite the praise, the new agreement has not yet been specified, and doubts persist about the amounts and conditions that the IMF could demand. Commercial Opening. While Donald Trump has begun to put tariffs on all countries it seems that he will make an exception with Argentina. In fact, the United States Chamber of Commerce in Argentina (Amcham) He has affirmed that the country has “serious possibilities” of accessing a Free Trade Agreement (FTA) with the US, with Uruguay and Ecuador as the countries of the region with the most likely to achieve this agreement. According to Amcham, Argentina is key in sectors such as critical minerals and energy, which reinforces its position in negotiations. In addition, they stressed that a recent FTA between the United States and South Korea took place in just 11 months, suggesting that Argentina could follow a similar path. However, they warned that factors such as the lack of designations in key positions of the US government and internal differences could delay the implementation of these measures in the short term. In this context. The Economic Community and the Argentine Society remain expectant to advances in the negotiations and implications they will have in the country’s economy and social welfare. Everything remains to be seen in country with great reservations of minerals and oil. Image | President’s office Xataka | “Ponzidente”: How $ Libra and the cryptocurrency macroestaf

An Australian company has discovered “very encouraging” lithium and rubidium amounts in Salamanca. The potential is huge

West of the province of Salamanca, near the border of Spain with Portugal, a finding that the Berkeley Australian company He has cataloged “very encouraging”. Significant amounts of lithium, essential for the manufacture of batteries, and rubidium, a scarce and strategic metal. The news. The Berkeley Energy mining group has found important concentrations of lithium and rubidium in a site in the province of Salamanca. These explorations are part of the Conchas project, which covers an area of ​​31 kilometers covered by sediments of the Cenozoic in the Ciudad Rodrigo region. The announcement, cataloged as “very encouraging” by the company, has fired its price 21% In the Australian bag. Why it is important. Lithium is the gold of the 21st century: an essential metal for the manufacture of batteries that has gone from feeding our electronic devices to boost electric vehicles and energy storage from renewable sources, so its demand is still increasing. But rubidium, in particular, is a metal of enormous strategic value. Because it is scarce and the time critical for sectors such as defense, medicine, telecommunications, Quantum computing and renewable energies. It is in atomic watches (GPS, missile guidance), photoelectric cells (night vision systems, Perosvkita solar panels), tomographies, ionic propulsion, data transmission … and its production is dominated by China. Now what. Berkeley has identified thick and shallow areas of lithium and rubidium, which facilitates its possible extraction, but not everything is said. The company will expand the polls and test the samples extracted to evaluate its metallurgical potential, a key step when determining the economic viability of the project. The results of these tests are expected to know this same quarter to define the following steps. It is not the only project. The Essential Metals Limited Australian company (Australia is one of the leading countries in lithium extraction) found high grade lithium to Villasrubias, a town in Salamanca that historically dedicated itself to tin extraction. “Perhaps it is the region, not only of Spain, but of Europe, which has the greatest number of critical raw materials identified, and that are listed by the European Union, due to their economic importance for the development of green energy and for the risk of dependence on third countries “, A project spokesman said. The environmental impact. Known for claiming one billion dollars in damages to the Spanish government after this prohibit the research and use of uraniumBerkeley has the support of the markets in the face of the discovery of lithium and rubidium, but will have to detail the environmental impact of its extraction if the project will continue. The extraction of lithium, in addition to altering the landscape, requires large amounts of water and can release heavy metals and acids in the soil. It would not be the first time that a project is filed for the risk for neighboring peoples, as has happened Until twice in Ávila Duela denunciation of environmental associations. Image | Bybyk (CC BY-CC 4.0), DNN87 (CC BY 3.0) In Xataka | In Salamanca there is a high -tech nuclear fuel bars factory that exports to all of Europe: we have visited it

Log In

Forgot password?

Forgot password?

Enter your account data and we will send you a link to reset your password.

Your password reset link appears to be invalid or expired.

Log in

Privacy Policy

Add to Collection

No Collections

Here you'll find all collections you've created before.