“Identifying microplastics is actually not as easy as it sounds,” said Emily Miller, lead author of the study. “The most accessible tools scientists have — a microscope and our eyes — can be deceiv…
We don’t often think of plastics as having “fingerprints.” But they do. And, as we continue to find microparticles in unexpected places — from local anchovy and seabird guts to the deepest trenches of the ocean — identifying those fingerprints is increasingly important.
Those plastics get weathered and eroded down into microparticles the size of the tip of a ballpoint pen or nearly-invisible fibers. They are ingested by marine mammals, permanently entering the food chain. Study after study has confirmed that microplastics are a global problem. But to address it, scientists need to know which plastics are moving from land into water.“Identifying microplastics is actually not as easy as it sounds,” said Emily Miller, lead author of the study.
“You can take a spectrum but it’s practically meaningless unless you have a database to go back and do the fingerprint matching,” he said. S&N Labs has thousands of users across many industries. But they rarely see academic or marine debris researchers — probably because of the high costs. A single identification request can cost anywhere from $550 to $3,000. So if a researcher opens up a stranded marine animal and wants to know what all those plastic particles are inside, they have to be very selective about which particles they send in.
So the team created a library specific to marine debris that anyone can use. It’s only the second open-access Raman spectroscopy library to date.To build the new library, the researchers tested samples with known identities: pristine plastics in new condition — things like coffee cup lids, electrical tape, pill bottles and styrofoam boxes — plus old, weathered things picked up from fishery environments and beaches — balloons, straws, bike innertubes, dock lines and a Lego tire.
They scanned 79 materials in all. For each one, the team scanned the sample 100 times to produce 100 spectra, then averaged those scans together to get a single fingerprint. Then they added that fingerprint to the library for anyone to use.“It’s not a huge database that we helped create, but on the other hand, you won’t probably find more than 100 different types of polymers out on the beach,” said French. “I think for what its intended use is it’s a very comprehensive database.
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