U.S. Electricity Transition Pushes Dysprosium, Terbium and Tellurium Toward Supply-Chain Stress

Sep 5, 2026

3 minute read.

Highlights

  • Dartmouth researchers modeled 61 electricity scenarios through 2050, finding tellurium, dysprosium and terbium face the highest supply-chain stress under rapid decarbonization.
  • Under the highest-demand scenarios, mean peak U.S. electricity-sector demand for tellurium, dysprosium and terbium exceeds today's entire global annual production.
  • Approximately 95% of U.S. rare-earth requirements are currently imported, with more than half sourced from China, amplifying supply concentration risk.
  • The study is a stress test, not a forecast—it holds current production fixed and excludes future mine development, recycling, substitution, and EV or defense demand.
  • Authors identify vulnerability rather than inevitable scarcity, calling for dynamic modeling that accounts for new mines, ex-China processing, and material substitution.

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By Daniel

Inspired to launch Rare Earth Exchanges in part due to his lifelong passion for geology and mineralogy, and patriotism, to ensure America and free market economies develop their own rare earth and critical mineral supply chains.

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Dartmouth study finds U.S. electricity decarbonization could push dysprosium, terbium and tellurium demand beyond current global supply by 2050. (read full article...)

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