ACC News Brief

Climate Solutions Global / India

Early green investment could prevent decades of coal-based steel emissions

Steel engineers and finance planners compare physical models of conventional and hydrogen-ready steel routes beside an operating steelworks.
Image credit: Affect Climate Change custom editorial artwork; evidence source: Nature Climate Change

What happened

A peer-reviewed study combined plant-level steel data with the REMIND integrated assessment model. It estimated that existing and planned coal-based steel plants could commit nearly 60 billion metric tons of carbon dioxide, rising to 114 billion tons if current investment trends continue beyond announced plans. In the modeled pathways, about 60% of that lock-in risk could be avoided at average abatement costs of $100-$150 per ton; redirecting $50 billion in India this decade toward hydrogen-ready direct-reduction plants avoided 22 billion tons in the scenario. These are conditional model estimates, not funded projects or emissions already avoided.

Why it matters

Steel plants can operate for decades, so today's financing choices shape far more than one year's emissions. Avoiding new coal dependence can be less disruptive than building it first and forcing early retirement later.

What to watch

  • Which announced coal-based projects are cancelled or redesigned, and whether finance actually reaches hydrogen-ready direct reduction, renewable power, grid upgrades, and workforce transition.
  • Real costs, construction progress, operating emissions, clean-hydrogen supply, and commissioning evidence - not just labels such as hydrogen-ready or green steel.
  • Scenarios that include changing steel trade, technology learning, material efficiency, longer product life, substitution, and greater scrap recycling, which this model did not fully explore.

Sources & evidence

Topics

  • Steel
  • Industrial Decarbonization
  • Climate Finance
  • Carbon Lock-In
  • Scenario Modeling