Estimating the impact of new high seas activities on the environment: the effects of ocean-surface macroplastic removal on sea surface ecosystems

Author:

Spencer Matthew1,Culhane Fiona12,Chong Fiona34,Powell Megan O.5,Roland Holst Rozemarijn J.6,Helm Rebecca7

Affiliation:

1. School of Environmental Sciences, University of Liverpool, Liverpool, United Kingdom

2. School of Biological and Marine Sciences, University of Plymouth, Plymouth, United Kingdom

3. Energy and Environment Institute, University of Hull, Hull, United Kingdom

4. Biological and Marine Sciences, University of Hull, Hull, United Kingdom

5. University of North Carolina at Asheville, Asheville, NC, United States of America

6. Durham Law School, Durham University, Durham, United Kingdom

7. Earth Commons Institute, Georgetown University, Washington, DC, United States of America

Abstract

The open ocean beyond national jurisdiction covers nearly half of Earth’s surface and is largely unexplored. It is also an emerging frontier for new types of human activity. Understanding how new activities interact with high seas ecosystems is critical for our management of this other half of Earth. Using The Ocean Cleanup (TOC) as a model, we demonstrate why it is important to account for uncertainty when assessing and evaluating impacts of novel high seas activities on marine ecosystems. TOC’s aim is to remove plastic from the ocean surface by collecting it with large nets. However, this approach also results in the collection of surface marine life (neuston) as by-catch. Using an interdisciplinary approach, we explore the social-ecological implications of this activity. We use population models to quantify potential impacts on the surface ecosystem; we determine the links between these ecosystems and society through an ecosystem services approach; and we review the governance setting relevant to the management of activities on the high seas. We show that the impact of ocean surface plastic removal largely depends on neuston life histories, and ranges from potentially mild to severe. We identify broader social-ecological implications that could be felt by stakeholders both beyond and within national jurisdiction. The legal framework applicable to TOC’s activities is insufficiently specific to address both the ecological and social uncertainty we describe, demonstrating the urgent need for detailed rules and procedures on environmental impact assessment and strategic environmental assessment to be adopted under the new International Agreement on the conservation and sustainable use of marine biological diversity of areas beyond national jurisdiction which is currently being negotiated.

Funder

The University of Liverpool Institute for Risk and Uncertainty “The Ocean Cleanup Symposium 2019”

The United States National Aeronautics and Space Administration

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference50 articles.

1. Trophic structure of neuston across tropical and subtropical oceanic provinces assessed with stable isotopes;Albuquerque;Frontiers in Marine Science,2021

2. Exceptional strandings of the purple snail Janthina pallida Thompson, 1840 (Gastropoda: Epitoniidae) and first record of an alien goose barnacle along the Ligurian coast (western Mediterranean Sea);Betti;The European Zoological Journal,2017

3. Plastic ingestion by planktivorous fishes in the North Pacific Central Gyre;Boerger;Progress in Oceanography,2010

4. Hydrodynamics and capture efficiency of plastic cleanup booms: part I—experiments and dynamic analysis;Brambini,2017

5. Molecular and morphological systematics of neustonic nudibranchs (Mollusca : Gastropoda : Glaucidae : Glaucus), with descriptions of three new cryptic species;Churchill;Invertebrate Systematics,2014

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