Zeroing in on decarbonization

Wednesday, January 15, 2020 - 00:10 in Physics & Chemistry

To avoid the most destructive consequences of climate change, the world’s electric energy systems must stop producing carbon by 2050. It seems like an overwhelming technological, political, and economic challenge — but not to Nestor Sepulveda. “My work has shown me that we do have the means to tackle the problem, and we can start now,” he says. “I am optimistic.” Sepulveda’s research, first as a master’s student and now as a doctoral candidate in the MIT Department of Nuclear Science and Engineering (NSE), involves complex simulations that describe potential pathways to decarbonization. In work published last year in the journal Joule, Sepulveda and his co-authors made a powerful case for using a mix of renewable and “firm” electricity sources, such as nuclear energy, as the least costly, and most likely, route to a low- or no-carbon grid. These insights, which flow from a unique computational framework blending optimization and data science, operations research, and policy methodologies,...

Read the whole article on MIT Research

More from MIT Research

Latest Science Newsletter

Get the latest and most popular science news articles of the week in your Inbox! It's free!

Check out our next project, Biology.Net