So you want to build a solar or wind farm? Here’s how to decide where.
MIT engineers show how detailed mapping of weather conditions and energy demand can guide optimization for siting renewable energy installations.
MIT engineers show how detailed mapping of weather conditions and energy demand can guide optimization for siting renewable energy installations.
First organized MIT delegation highlights the Institute's growing commitment to addressing climate change by showcasing research on biodiversity conservation, AI, and the role of local communities.
MIT chemical engineers have devised a way to capture methane, a potent greenhouse gas, and convert it into polymers.
Josephine Carstensen and David McGee discuss the value and impact that MIT Global Seed Funds, which create synergistic partnerships between faculty and peers abroad, added to their research.
Study shows how smart policies could address competing land-use needs.
MIT spinout Electrified Thermal Solutions has developed an electrically conductive firebrick that stores heat at high enough temperatures to power industrial processes.
The method could help communities visualize and prepare for approaching storms.
In a talk at MIT, White House science advisor Arati Prabhakar outlined challenges in medicine, climate, and AI, while expressing resolve to tackle hard problems.
The MIT Sloan professor has become a leading energy economist through original studies that can inform our global climate response.
The Tree-D Fusion system integrates generative AI and genus-conditioned algorithms to create precise simulation-ready models of 600,000 existing urban trees across North America.
Study finds many climate-stabilization plans are based on questionable assumptions about the future cost and deployment of “direct air capture” and therefore may not bring about promised reductions.
The MIT spinout Emvolon is placing its repurposed engines next to methane sources, to generate greener methanol and other chemicals.
Progress on the energy transition depends on collective action benefiting all stakeholders, agreed participants in MITEI’s annual research conference.
Selected LEVER collaborators will work with the organization to develop an evaluation of their respective programs that alleviate poverty.
Collaborating with a local climate technology company, MIT’s Self-Assembly Lab is pursuing scalable erosion solutions that mimic nature, harnessing ocean currents to expand islands and rebuild coastlines.