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Rare earths: strategic metals key to future tech
Rare earths: strategic metals key to future tech
by AFP Staff Writers
Beijing (AFP) Oct 16, 2025

Rare earths are minerals used to make magnets crucial to the auto, electronic and defence industries, as well as in renewable energy.

The US Treasury Secretary slammed export curbs imposed by Beijing last week on technologies used for rare-earth mining, smelting, and other processing steps.

Scott Bessent said on Thursday it was "China versus the world". Here are some key things to know:

- Are they rare? -

Not really. With names like dysprosium, neodymium and cerium, rare earths are a group of 17 heavy metals that are abundant throughout the Earth's crust.

The United States Geological Survey estimated in 2024 there were 110 million tonnes of deposits worldwide.

That includes 44 million in China -- by far the world's largest producer.

A further 22 million tonnes are estimated in Vietnam and 21 million in Brazil, while Russia has 10 million and India nearly seven million tonnes.

But mining the metals requires heavy chemical use that results in toxic waste and has caused several environmental disasters.

Many countries are also wary of shouldering the high financial costs for production.

The minerals are often found in minute ore concentrations, meaning large amounts of rock must be processed to produce the refined product, often in powder form.

- Why are they special? -

The 17 rare earths are found in a wide variety of everyday and high-tech devices, from light bulbs to guided missiles.

Europium is crucial for television screens, cerium is used for polishing glass and refining oil, lanthanum makes a car's catalytic converters operate -- the list of uses in today's economy is virtually endless.

All have unique properties that are largely irreplaceable or can be substituted only at prohibitive costs.

Neodymium and dysprosium, for example, allow the fabrication of almost permanent, super-strong magnets that require little maintenance -- making viable the placement of ocean wind turbines to generate electricity far from the coastline.

- China in the lead -

For decades, China has made the most of its reserves by investing massively in refining operations, often without the strict environmental oversight required elsewhere.

Beijing has also filed a huge number of patents on rare earth production, an obstacle to companies in other countries hoping to launch large-scale processing.

As a result, many firms find it cheaper to ship their ore to China for refining, reinforcing the world's reliance.

Beijing began in April requiring domestic exporters to apply for a licence, seen as a response to US tariffs that sparked alarm in Washington over slower supplies of rare earths.

In June, US President Donald Trump hailed a deal that would see China provide the vital elements "up front".

But supply chains had not fully stabilised, with bureaucratic delays and selective approval still preventing many firms from ensuring timely access to the materials -- even before China expanded its restrictions.

- Strategy and supply -

The United States and European Union get most of their supply from China.

Both are trying to boost their own production and better recycle what they use to reduce dependence on Beijing.

At the height of a US-China trade dispute in 2019, Chinese state media suggested that rare earth exports to the United States could be cut in retaliation for American measures, sparking fear among manufacturers.

Back in 2010, Japan saw first-hand the pain of a cut-off, when China halted rare earth exports over a territorial conflict.

Since then, Tokyo has pushed hard to diversify supplies, signing deals with the Australian group Lynas for production from Malaysia, and ramping up its recycling capabilities.

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