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Climate change considerations are fundamental to management of deep‐sea resource extraction

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Climate change considerations are fundamental to management of deep‐sea resource extraction

DOI: 10.1111/gcb.15223

Type: Publication

Year: 2020

Citations: 128

AZORES DEEP-SEA RESEARCH
Publication Open access June 2020

Climate change considerations are fundamental to management of deep‐sea resource extraction

Global Change Biology

10.1111/gcb.15223
Open DOI
Total authors
22
Involved team members
2
Citations
128
References
92

Citations by year

7 years
2026
9
2025
25
2024
23
2023
19
2022
26
2021
20
2020
5

Related to this work

Abstract

Climate change manifestation in the ocean, through warming, oxygen loss, increasing acidification, and changing particulate organic carbon flux (one metric of altered food supply), is projected to affect most deep-ocean ecosystems concomitantly with increasing direct human disturbance. Climate drivers will alter deep-sea biodiversity and associated ecosystem services, and may interact with disturbance from resource extraction activities or even climate geoengineering. We suggest that to ensure the effective management of increasing use of the deep ocean (e.g., for bottom fishing, oil and gas extraction, and deep-seabed mining), environmental management and developing regulations must consider climate change. Strategic planning, impact assessment and monitoring, spatial management, application of the precautionary approach, and full-cost accounting of extraction activities should embrace climate consciousness. Coupled climate and biological modeling approaches applied in the water and on the seafloor can help accomplish this goal. For example, Earth-System Model projections of climate-change parameters at the seafloor reveal heterogeneity in projected climate hazard and time of emergence (beyond natural variability) in regions targeted for deep-seabed mining. Models that combine climate-induced changes in ocean circulation with particle tracking predict altered transport of early life stages (larvae) under climate change. Habitat suitability models can help assess the consequences of altered larval dispersal, predict climate refugia, and identify vulnerable regions for multiple species under climate change. Engaging the deep observing community can support the necessary data provisioning to mainstream climate into the development of environmental management plans. To illustrate this approach, we focus on deep-seabed mining and the International Seabed Authority, whose mandates include regulation of all mineral-related activities in international waters and protecting the marine environment from the harmful effects of mining. However, achieving deep-ocean sustainability under the UN Sustainable Development Goals will require integration of climate consideration across all policy sectors.

Authors

2 involved team members
L
Lisa A. Levin
0000-0002-2858-8622

Integrative Oceanography Division and Center for Marine Biodiversity and Conservation, Scripps Institution of Oceanography, University of California, San Diego, La Jolla, CA, USA

+1 more

C
Chih‐Lin Wei
0000-0001-9430-0060

Institute of Oceanography, National Taiwan University, Taipei, Taiwan

+1 more

D
Daniel C. Dunn
0000-0001-8932-0681

School of Earth and Environmental Sciences, University of Queensland, St Lucia, Qld, Australia

+1 more

D
Diva J. Amon
0000-0003-3044-107X

Life Sciences Department, Natural History Museum, London, UK

+1 more

O
Oliver S. Ashford
0000-0001-5473-7057

Integrative Oceanography Division and Center for Marine Biodiversity and Conservation, Scripps Institution of Oceanography, University of California, San Diego, La Jolla, CA, USA

+1 more

W
William W. L. Cheung
0000-0001-9998-0384

Institute for the Oceans and Fisheries, The University of British Columbia, Vancouver, BC, Canada

+1 more

A
Ana Colaço
0000-0002-6462-5670

IMAR Instituto do Mar, and Instituto de Investigação em Ciências do Mar – Okeanos da Universidade dos Açores Horta Portugal

E
Elva G. Escobar
0000-0002-8485-7495

Instituto de Ciencias del Mar y Limnología Universidad Nacional Autónoma de México Mexico City Mexico

H
Harriet R. Harden‐Davies
0000-0002-8214-5187

Australian National Centre for Ocean Resources and Security, University of Wollongong, Wollongong, NSW, Australia

+1 more

J
Jeffrey C. Drazen
0000-0001-9613-3833

Department of Oceanography, University of Hawaii at Manoa, Honolulu, HI, USA

+1 more

K
Khaira Ismail
0000-0003-0064-9515

Faculty of Science and Marine Environment, Universiti Malaysia Terengganu, Kuala Terengganu, Malaysia

+1 more

D
Daniel O. B. Jones
0000-0001-5218-1649

Ocean Biogeochemistry and Ecosystems Group, National Oceanography Centre, Southampton, UK

+1 more

D
David E. Johnson
0000-0003-4695-606X

Global Ocean Biodiversity Initiative, Seascape Consultants Ltd., Romsey, UK

+1 more

J
Jennifer T. Le
0000-0002-6004-8941

Integrative Oceanography Division and Center for Marine Biodiversity and Conservation, Scripps Institution of Oceanography, University of California, San Diego, La Jolla, CA, USA

+1 more

F
Franck Lejzerowicz
0000-0002-3195-032X

Jacobs School of Engineering, University of California San Diego, La Jolla, CA, USA

+1 more

S
Satoshi Mitarai
0000-0003-3033-2332

Marine Biophysics Unit, Okinawa Institute of Science and Technology Graduate University, Okinawa, Japan

+1 more

S
Sandor Mulsow
0000-0002-2466-8107

Instituto Ciencias Marinas y Limnológicas Universidad Austral de Chile Valdivia Chile

P
Paul V. R. Snelgrove
0000-0002-6725-0472

Department of Ocean Sciences and Biology Department, Memorial University of Newfoundland, St. John's, NL, Canada

+1 more

A
Andrew K. Sweetman
0000-0002-9547-9493

The Lyell Centre for Earth and Marine Science and Technology, Heriot Watt University, Edinburgh, UK

+1 more

M
Moriaki Yasuhara
0000-0003-0990-1764

School of Biological Sciences and Swire Institute of Marine Science, The University of Hong Kong, Hong Kong SAR, China

+1 more

Record details

Type
article
Language
EN
Volume
26
Issue
9
Pages
4664–4678
ISSN
1354-1013

Keywords

Climate change Environmental science Ocean acidification Biological pump Ecological forecasting Environmental resource management Downscaling Effects of global warming Global warming Ecosystem Oceanography Ecology Geology Carbon cycle Biology

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