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Scientists caution against a reliance on mechanical devices to clear water bodies of plastic
- January 08, 2024
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Research highlights that plastic removal technologies have shown varied efficiency in the amount of waste material they are able to collect
An international group of scientists has cautioned against reliance on mechanical cleanup devices as a means of addressing the plastic pollution crisis.The researchers – comprising a number of the world’s foremost experts in plastic pollution, and including Professor Richard Thompson OBE FRS from the University of Plymouth – say they appreciate the clear and pressing need to tackle the millions of tonnes of waste that have already accumulated in the ocean and waterways.However, they caution that plastic removal technologies used so far have shown varied efficiency in the amount of waste material they are able to collect, many have not been tested at all.In fact, some have been shown to harm quantities of marine organisms – including fish, crustaceans and seaweeds – that far exceed the amount of plastic captured, meaning their overall impact on the ocean is potentially more harmful than helpful.Writing in the journal One Earth, the scientists say with plastic production projected to triple by 2060 the most cost-effective and efficient way to prevent further pollution is to reduce plastic production and consumption, and for essential applications of plastics to design safe, sustainable products with a readily available and effective pathway for end-of-life disposal.They also assert that the environmental costs of leaving plastic pollution in the ocean should be weighed against the full environmental and economic cost of plastic removal technologies, and call for clear criteria for such judgments to be incorporated in the United Nations Global Plastics Treaty.Their commentary has been published as world leaders prepare to resume discussions on the Treaty at the third meeting of the Intergovernmental Negotiating Committee on Plastic Pollution.
Previous research by the University of Plymouth provides the first independent evaluation of the performance of a Seabin device, which is designed to continuously suck water inwards using a submersible pump which is then filtered.Hundreds have been installed globally and are reported to have captured over 2.5 million kilograms of litter from calm sheltered environments such as marinas, ports and yacht clubs.The Plymouth study found that a total of 1,828 items, 0.18kg of litter, was retained by a device installed on the city’s waterfront during 750 hours of operation between April and June 2021. This was equivalent to 58 items a day, but the device also captured one marine organism for every 3.6 items of litter.
List of Referenes
- Melanie Bergmann, Hans Peter H. Arp, Bethanie Carney Almroth, Win Cowger, Marcus Eriksen, Tridibesh Dey, Sedat Gündoğdu, Rebecca R. Helm, Anja Krieger, Kristian Syberg, Mine B. Tekman, Richard C. Thompson, Patricia Villarrubia-Gómez, Anish Kumar Warrier, Trisia Farrelly. Moving from symptom management to upstream plastics prevention: The fallacy of plastic cleanup technology. One Earth, 2023; DOI: 10.1016/j.oneear.2023.10.022
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