Artificial intelligence is powering weather forecasts that are generally more accurate than conventional forecasts and are faster and cheaper to produce.
Global warming will likely hinder our future ability to control ground-level ozone, a harmful air pollutant that is a primary component of smog, according to a new MIT study.
Coastal wetlands play a vital role in absorbing carbon from the atmosphere and reducing the impacts of storm surge.
The Climate Change Committee has published cutting-edge research led by the UK Centre for Ecology & Hydrology (UKCEH) that investigated options for sustainable land management to help meet national net zero targets, as well as the potential impacts.
In the early 1800s, pirate Jean Lafitte smuggled goods and slaves through Louisiana’s muddy coastal waters, navigating the bayous, bays, and lakes up to New Orleans.
A new international research initiative will measure hydrogen emissions from operating infrastructure in North America and Europe, filling a gap where little empirical data exist today.
If you drink wine, chances are it already tastes different—rising global temperatures are transforming winegrowing regions around the world.
Today’s carbon capture systems suffer a tradeoff between efficient capture and release, but a new approach developed at MIT can boost overall efficiency.
The key may lie in wintertime Arctic clouds, as climate models underestimate how much liquid they contain and how much heat they trap, leading to skewed warming predictions.
New research reveals mountain glaciers across the globe will not recover for centuries – even if human intervention cools the planet back to the 1.5°C limit, having exceeded it.
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