An ecosystem-scale litter and microplastics monitoring plan under the Arctic Monitoring and Assessment Programme (AMAP)

Author:

Provencher Jennifer1,Kögel Tanja23,Lusher Amy34ORCID,Vorkamp Katrin5,Gomiero Alessio6,Peeken Ilka7ORCID,Granberg Maria8,Hammer Sjúrður9,Baak Julia10,Larsen Jan Rene11,Farmen Eivind12

Affiliation:

1. Environment and Climate Change Canada, National Wildlife Research Centre, 1125 Colonel By Drive, Raven Road, Ottawa, Ontario K1A 0H3, Canada

2. Department of Biological Science, University of Bergen, 5007, Bergen, Norway

3. Institute of Marine Research (IMR), Nordnesgaten 50, 5005, Bergen, Norway

4. Norwegian Institute for Water Research (NIVA), Økernveien 94, 0579, Oslo, Norway

5. Department of Environmental Science, Aarhus University, Frederiksborgvej 399, DK-4000, Roskilde, Denmark

6. Norwegian Research Centre (NORCE), Prof. Olav Hanssensvei 15, 4021, Stavanger, Norway

7. Alfred-Wegener-Institut Helmholtz-Zentrum für Polar-und Meeresforschung, Am Handelshafen 12, 27570, Bremerhaven, Germany

8. IVL Swedish Environmental Research Institute, Kristineberg Marine Research Station, 450 34, Fiskebäckskil, Sweden

9. Faroese Environment Agency, 38 Traðargøta, 165, Argir, Faroe Islands

10. Department of Natural Resource Sciences, McGill University, 21111 Lakeshore Road, Sainte Anne-de-Bellevue, Quebec H9X 3V9, Canada

11. The Fram Centre, Box 6606 Stakkevollan, 9296, Tromsø, Norway

12. Norwegian Environment Agency, Grensesvingen 7, 0663, Oslo, Norway

Abstract

Lack of knowledge on levels and trends of litter and microplastics in the Arctic, is limiting our understanding of the sources, transport, fate, and effects is hampering global activities aimed at reducing litter and microplastics in the environment. To obtain a holistic view to managing litter and microplastics in the Arctic, we considered the current state of knowledge and methods for litter and microplastics monitoring in eleven environmental compartments representing the marine, freshwater, terrestrial, and atmospheric environments. Based on available harmonized methods, and existing data in the Arctic, we recommend prioritization of implementing litter and microplastics monitoring in the Arctic in four Priority 1 compartments—water, aquatic sediments, shorelines, and seabirds. One or several of these compartments should be monitored to provide benchmark data for litter and microplastics in the Arctic and, in the future, data on spatial and temporal trends. For the other environmental compartments, methods should be refined for future sources and surveillance monitoring, as well as monitoring of effects. Implementation of the monitoring activities should include community-based local components where possible. While organized as national and regional programs, monitoring of litter and microplastics in the Arctic should be coordinated, with a view to future pan-Arctic assessments.

Publisher

Canadian Science Publishing

Subject

General Earth and Planetary Sciences,General Agricultural and Biological Sciences,General Environmental Science

Reference50 articles.

1. AMAP. 2017. AMAP Assessment 2016: Chemicals of Emerging Arctic Concern. Arctic Monitoring and Assessment Programme (AMAP), Oslo, Norway. 353p.

2. AMAP. 2018. AMAP Assessment 2018: Arctic Ocean Acidification. Arctic Monitoring and Assessment Programme (AMAP), Tromsø, Norway. 187p.

3. AMAP. 2021a. AMAP Litter and Microplastics Monitoring Guidelines. Version 1.0. Arctic Monitoring and Assessment Programme (AMAP), Tromsø, Norway. 257p.

4. AMAP. 2021b. AMAP Litter and Microplastics Monitoring Plan. Arctic Monitoring and Assessment Programme (AMAP), Tromso, Norway. 23p.

5. Oceanic long-range transport of organic additives present in plastic products: an overview

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