惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

IT之家
IT之家
aimingoo的专栏
aimingoo的专栏
H
Help Net Security
L
LangChain Blog
M
MIT News - Artificial intelligence
The GitHub Blog
The GitHub Blog
H
Hackread – Cybersecurity News, Data Breaches, AI and More
C
Check Point Blog
P
Proofpoint News Feed
J
Java Code Geeks
大猫的无限游戏
大猫的无限游戏
博客园_首页
Blog — PlanetScale
Blog — PlanetScale
U
Unit 42
I
InfoQ
月光博客
月光博客
爱范儿
爱范儿
Stack Overflow Blog
Stack Overflow Blog
V
Visual Studio Blog
Y
Y Combinator Blog
Microsoft Security Blog
Microsoft Security Blog
博客园 - Franky
D
Docker
B
Blog

Ars Technica - All content

Pentagon wants $54B for drones, more than most nations’ military budgets Mozilla: Anthropic's Mythos found 271 security vulnerabilities in Firefox 150 Supreme Court arguments make it clear that FCC fines are "nonbinding" Silo S3 teaser hints at the wasteland's origins Framework's CEO on the RAM crisis and creating a "MacBook Pro for Linux users" Florida probes ChatGPT role in mass shooting. OpenAI says bot "not responsible." Report: Meta will train AI agents by tracking employees' mouse, keyboard use Microsoft removes Call of Duty from Game Pass, lowers subscription pricing Framework Laptop 13 Pro is a major overhaul for the modular, upgradeable laptop Framework Laptop 16 upgrades make it look less like an unfinished prototype Internal emails show how Amazon raises prices across the Internet, lawsuit says Anthropic gets $5B investment from Amazon, will use it to buy Amazon chips CATL's new LFP battery can charge from 10 to 98% in less than 7 minutes AMD Ryzen 9 9950X3D2 Dual Edition review: Tons of cache for tons of dollars What's the deal with spacesuits for the Moon? Will they be ready in time? Loneliness in older adults can often lead to memory impairment Contrary to popular superstition, AES 128 is just fine in a post-quantum world Pentagon pulls the plug on one of the military's most troubled space programs John Ternus will replace Tim Cook as Apple CEO Blue Origin's rocket reuse achievement marred by upper stage failure I’ve fired one of America’s most powerful lasers—here’s what a shot day looks like Great white sharks are overheating US-sanctioned currency exchange says $15 million heist done by "unfriendly states" Man with @ihackedthegovernment Instagram account tells judge, “I made a mistake" Trump picks qualified, normal health leader to head CDC; experts still cautious $25,000 buys plenty of used EVs: Here are some options Satellite and drone images reveal big delays in US data center construction Amazon won’t release Fire Sticks that support sideloading anymore Ridley Scott's post-apocalyptic The Dog Stars drops first trailer Artemis II pilot talks about what it was really like to fly and land in Orion
Researchers develop a new process to get lithium out of r...
John Timmer · 2026-05-29 · via Ars Technica - All content

The key chemical in the process is ammonium fluoride (NH4F). It’s possible to use the salt directly in a molten form, but heating it invariably leads to some production of hydrogen fluoride, which is extremely dangerous stuff (although they end up using some later). So instead, they used it dissolved in water, which apparently keeps these reactions from occurring. In this process, heating the solution to about 70° C results in the formation of NH4F2 ions, releasing ammonia gas that’s used later in the process.

This ion donates a fluorine to the lithium, leaving a water-based solution of lithium fluoride. The silicon also forms a soluble ion, (NH4)2SiF6, while the aluminum forms a similar ion that remains behind as a solid, (NH4)3AlF6. Each of these is processed separately.

Using everything

We’ll start with the aluminum chemistry, which is one of the simpler pathways. Initially, heating the (NH4)3AlF6 to about 300° C produces aluminum trifluoride and releases ammonia and hydrogen fluoride. Then, raising the temperature to 700° C causes the aluminum trifluoride to react with water, leaving behind aluminum oxide and releasing yet more hydrogen fluoride.

Again, hydrogen fluoride is dangerous stuff and needs to be handled carefully. But it’s also easy to react it with the ammonia (which is produced during two different reactions here) and reform the ammonium fluoride that was used to start the whole process. So, aside from minor losses due to inefficiencies, the process regenerates one of the key ingredients. Meanwhile, aluminum oxide is one of the key starting materials for the production of aluminum metal, and so can be fed into that, given that the purity of the end product here was over 98 percent.

We’ll just note here that this is probably the worst aspect of the whole process, given the energy requirements for these temperatures and the highly dangerous chemicals involved.

By contrast, the silicon purification is a walk in the park. Simply adding more ammonia to the solution caused the starting chemical (NH4)2SiF6 to react with water, releasing silicon dioxide and ammonium fluoride. Again, an ammonium fluoride solution is one of the starting materials; the silicon dioxide simply precipitates out of this solution. That has a variety of applications, but the team showed that it’s quite effective at strengthening concrete.