Risky Routes: How Invasive Biofoulers Can Spawn On Ships In Transit
THIS is a serious risk, has been a serious risk for generations but countries have only started paying attention to it since their invasive species started showing up and damaging their own ports and waterways. Sadly, with this many ships trapped and so accumulating biofouling on their hulls once the war is over and shipping is permitted to resume it is expected the vast majority of ships will depart before being cleaned. The life in our oceans, our waterways, are in for a rough go. Problems Caused by Fouling: Slow Speed: Extra drag cuts cruising speed by 10% to over 85%, High Fuel Use: Rough surfaces force engines to burn up to 40% more fuel., Bad Weeds: Spreads foreign plants and animals to new seas. This from ABC News.....
Scientists warn of possible invasive species superspreader event due to stalling near Strait of Hormuz
A possible ecological catastrophe could be fueled by stalled ships as conflict over the Strait of Hormuz continues to block traffic on the passageway, scientists say.
The Strait of Hormuz has been a major source of contention since the war with Iran broke out in February. In retaliation to the ongoing conflict, Iran has intermittently caused a decline of tanker traffic through the critical waterway, which connects the Persian Gulf with the Gulf of Oman for the passage of around 20% of the world's oil supply, according to the U.S. Energy Information Administration.
But continued closures at the Strait of Hormuz could trigger a super-spreader event of invasive species as marine organisms attach to the idle vessels and get transported to other ecosystems around the world, according to a paper published Wednesday in the journal Biological Invasions.
This is because prolonged stationary periods can lead to substantial biofouling on ships, according to the paper. Buildup can include microorganisms, algae, plants and invertebrates.
The biofilm grows on the side of the commercial ships and then gets transported around the world as the vessels travel from port to port, Mario Tamburri, a marine ecologist at the University of Maryland's Center for Environmental Science and lead author of the study, told ABC News.
Once invasive species take hold of a foreign ecosystem, it's nearly impossible to get rid of them, Tamburri said.
"We know that these invading invading organisms can cause millions of dollars' worth of damage and impact -- commercial operations like aquaculture and fisheries -- and change the environment," Tamburri said.
One example is the zebra mussels in the Great Lakes, Tamburri said. Native to the Caspian and Black Seas south of Russia and Ukraine, zebra mussels quickly spread in the Great Lakes in the 1980s and are now present in the Mississippi and St. Croix Rivers, according to the National Park Service. They have also now spread to the West Coast due to human transport.
There is little to be done to remove zebra mussels once they have become established in a body of water, according to the NPS. Ecologists have been "battling" with the invasive species for 50 years, Tamburri said.
Ships are typically coated with an "anti-fouling" paint, formulated with chemicals to prevent marine animals from adhering to or growing on them, Tamburri said.
But when ships sit around for a long time, the coatings no longer work well, allowing for the possibility of "extensive growth." During the COVID-19 pandemic, many ships around the world were stalled for long periods of time, allowing for that kind of growth, Tamburri added.
Currently, the Strait of Hormuz is experiencing severe disruptions. Last week, the the U.S. resumed its naval blockade on the strait after Iran fired upon oil tankers in it.
More than 1,500 ships remain idle in the Persian Gulf and hundreds more are anchored in the Gulf of Oman, according to the paper.
The types of organisms that live in the region's unique ecological system also exacerbate the risk of a superspreader event, Tamburri said.
The marine organisms that live within the Strait of Hormuz are especially "hardy" and "robust" because they have adapted to high salinity and warm temperatures, which increases the likelihood that they can spread and survive in other environments, Tamburri said.
"If you can survive high temperatures, high salinities, you can probably survive long ship voyages," he said.
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