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BBC News

BBC News reporter Matt McGrath writes that MIT researchers have found rising temperatures caused by climate change will cause the world’s oceans to become bluer, as the increased temperatures alter the mixture of phytoplankton. The color change “will likely be one of the earliest warning signals that we have changed the ecology of the ocean,” explains principal research scientist Stephanie Dutkiewicz.

USA Today

A study by MIT researchers shows that climate change will have a significant impact on phytoplankton, which will cause the oceans to change color, reports Brett Molina for USA Today. The researchers “developed a model simulating how different species of phytoplankton will grow and interact, and how warming oceans will have an impact,” Molina explains.

CNN

CNN reporter Jen Christensen writes that a new study by MIT researchers finds that climate change will impact phytoplankton, causing the color of the world’s oceans to shift. “The change is not a good thing, since it will definitely impact the rest of the food web,” says principal research scientist Stephanie Dutkiewicz.

WBUR

A new study by MIT scientists provides evidence that climate-driven changes in phytoplankton will cause more than half of the world’s oceans to shift in color by 2100, reports Barbara Moran for WBUR. Principal research scientist Stephanie Dutkiewicz explains that the color changes are important “because they tell us a lot about what's changing in the ocean.”

HealthDay News

HealthDay reporter Steven Reinberg writes that a new study by Prof. Siqi Zheng finds that air pollution can make people unhappy. Zheng found that, “On days with high levels of pollution, people are more likely to engage in impulsive and risky behavior that they may later regret, possibly because of short-term depression and anxiety,” writes Reinberg.

Fast Company

By analyzing posts on social media in China, Prof. Siqi Zheng has found that air pollution can cause increased levels of depression and unhappiness, reports Adele Peters for Fast Company. “We want to show that there’s a wider range of the social cost of air pollution,” explains Zheng.

Xinhuanet

A new study by MIT researchers shows that the Sahara desert and North Africa alternate between wet and dry conditions every 20,000 years, reports the Xinhua news agency. The researchers found that the “climatic pendulum was mainly driven by changes to the Earth's axis as the planet orbits the sun, which in turn affect the distribution of sunlight between seasons.”

Gizmodo

Gizmodo reporter Maddie Stone writes that a new study by MIT researchers provides evidence that chloroform emissions rose 3.5 percent per year from 2010 to 2015 in East Asia. “If emissions continue to grow at 2010-2015 rates,” Stone writes, “the researchers estimate recovery of the ozone hole could be delayed by up to 8 years.”

PBS NOVA

Writing for NOVA Next, Nafisa Syed highlights how Prof. Kerry Emanuel is working on creating a new risk assessment paradigm for severe weather events like Hurricane Florence. Syed writes that Emanuel is trying to “understand what, for example, a 100-year storm is going to look like in the year 2100.”

Boston Globe

A new study by MIT researchers uncovers evidence that more than a quadrillion tons of diamonds are located in the Earth’s upper mantle, reports Katie Camero for The Boston Globe. Camero explains that, “researchers came to this conclusion after they found in global records over the past few decades a ‘glitch’ in seismic wave activity.”

Boston Globe

Prof. Taylor Perron speaks with Boston Globe reporter Martin Finucane about the recent announcement that a lake was detected underneath the surface of Mars. “One of the exciting things about this discovery is that there could be other liquid water pockets like this one,” notes Perron.

Motherboard

A team including MIT research scientist Ulrich Faul has discovered that the Earth’s interior contains 1,000 times more diamonds than was previously thought, writes Sarah Emerson for Motherboard. The researchers believe that one to two percent of “craton roots,” which are the deepest sections of the “rock layers extending upwards of 200 miles through the Earth’s crust and mantle,” may contain diamonds.

AFP

MIT researchers have discovered a cache of diamonds below the surface of the Earth, deeper than any drilling expedition has ventured, reports the Agence France-Presse wire. This discovery was made after “scientists were puzzled by observations that sound waves would speed up significantly when passing through the roots of ancient cratons.”

Popular Mechanics

A team led by MIT research scientist Ulrich Faul ‘discovered a gigantic cache of diamonds deep beneath the Earth’s surface,’ writes Avery Thompson for Popular Mechanics. While the diamonds are too deep to be mined, “knowing that they’re there helps us learn more about our own planet and what it’s made of,” Thompson notes.

Salon

In an article for Salon, Associate Prof. Noelle Eckley Selin and postdoc Sae Yun Kwon discuss their latest research, which examined emissions in China. They write that although mercury pollution is often associated with fish consumption, “China’s future emissions trajectory can have a measurable influence on the country’s rice methylmercury” levels, as well.