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New funding to study microplastic pollution effect on Delaware Bay blue crabs

November 6, 2019 — The Great Pacific Garbage Patch is often held up as the poster child for ocean pollution. And while the collection of trash collecting in the Pacific Ocean certainly deserves attention, researchers at the University of Delaware are concerned about a smaller source of pollution, much smaller.

Through its marine debris program, the National Oceanic and Atmospheric Administration is giving the university a $325,000 grant to study the impact of microplastics on blue crab populations near the Delaware Bay. Microplastics are defined as pieces of plastic less than five millimeters in length, or smaller than a pencil eraser. According to NOAA, some microplastics are microbeads, fibers or pellets that come from cosmetics or personal care products, for instance. They can also come from larger pieces of plastic that split apart and break down after exposure to the sun.

It’s estimated that there’s about five trillion tons of marine debris in our oceans and plastics are 90% of that, said UD College of Earth, Ocean and Environment Dean Estella Atekwana. “This grant is really timely so we can advance our understanding of what plastics do to our marine ecosystems,” she said.

Read the full story at WHYY

UD gets NOAA grant to study microplastics in blue crabs

November 5, 2019 — A federal grant will help two University of Delaware researchers look at the impact of microplastics on blue crabs.

The researchers will use the $327,000 grant to examine crab larvae exposure to microplastics in the Delaware Bay.

Microplastics are the size of sesame seeds. Microbeads, a type of microplastics, can easily pass through water filtration systems and end up in lakes and oceans.

Estella Atekwana is dean of the College of Earth, Ocean and Environment. She says they hope to determine how microplastics enter the larvae.

“For us to understand the different exposure pathways where this plastics get into the seafood or marine life and within the food chain and how does this eventually get to humans,” she said. “It’s really early on, I’m not so sure that we truly understand the different pathways.”

Read the full story at Delaware Public Media

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