Deep-sea mining on the Rio Grande Rise (Southwestern Atlantic): A review on environmental baseline, ecosystem services and potential impacts. (March 2019)
- Record Type:
- Journal Article
- Title:
- Deep-sea mining on the Rio Grande Rise (Southwestern Atlantic): A review on environmental baseline, ecosystem services and potential impacts. (March 2019)
- Main Title:
- Deep-sea mining on the Rio Grande Rise (Southwestern Atlantic): A review on environmental baseline, ecosystem services and potential impacts
- Authors:
- Montserrat, Francesc
Guilhon, Maila
Corrêa, Paulo Vinicius Ferraz
Bergo, Natascha Menezes
Signori, Camila Negrão
Tura, Pedro Marone
Santos Maly, Mascimiliano de los
Moura, Denise
Jovane, Luigi
Pellizari, Vivian
Sumida, Paulo Yukio Gomes
Brandini, Frederico Pereira
Turra, Alexander - Abstract:
- Abstract: The Rio Grande Rise is an extensive seamount region in the South-western Atlantic, with potential for deep-sea mining activities in the future. Such activities pose significant long-term disturbances and potentially severe impacts to both ecosystem structure and functioning, as well as associated ecosystem services. The Rio Grande Rise presents a severely understudied area, with very little knowledge on either local and regional scales. Most detailed knowledge available is centered on highly localised geological information and interpolated and/or modelled environmental data, while high-resolution data on biogeography, ecosystem processes and functioning are lacking. The Rio Grande Rise is most likely a remnant of the Paraná-Etendeka igneous province, and formed when the African and South-American plates separated to form the Southern Atlantic basin, about 75 million years ago. More recent cruises have generated very local and high-resolution acoustic impedance data on the substrate, showing extremely dense layers, likely to be cobalt-rich crusts and underlying bedrock, interspersed with thick sediment layers. Literature studies revealed that nowadays the Rise appears to be located within a relatively low-productivity oceanic region. Open-database mining yielded large-scale, extrapolated environmental data rasters, which show the Rise to be an oceanic region relatively free of pollution and anthropogenic disturbances, with high geomorphological heterogeneity andAbstract: The Rio Grande Rise is an extensive seamount region in the South-western Atlantic, with potential for deep-sea mining activities in the future. Such activities pose significant long-term disturbances and potentially severe impacts to both ecosystem structure and functioning, as well as associated ecosystem services. The Rio Grande Rise presents a severely understudied area, with very little knowledge on either local and regional scales. Most detailed knowledge available is centered on highly localised geological information and interpolated and/or modelled environmental data, while high-resolution data on biogeography, ecosystem processes and functioning are lacking. The Rio Grande Rise is most likely a remnant of the Paraná-Etendeka igneous province, and formed when the African and South-American plates separated to form the Southern Atlantic basin, about 75 million years ago. More recent cruises have generated very local and high-resolution acoustic impedance data on the substrate, showing extremely dense layers, likely to be cobalt-rich crusts and underlying bedrock, interspersed with thick sediment layers. Literature studies revealed that nowadays the Rise appears to be located within a relatively low-productivity oceanic region. Open-database mining yielded large-scale, extrapolated environmental data rasters, which show the Rise to be an oceanic region relatively free of pollution and anthropogenic disturbances, with high geomorphological heterogeneity and potential for high biodiversity. This image was confirmed in a small number of scientific submarine cruises, where a diverse range of seascapes was observed, from soft sediment to carbonate pavement and cobalt crust outcrops. Especially the latter substrata were found to be inhabited by diverse benthic communities, dominated by sessile organisms, presenting three-dimensional structural heterogeneity and with associated vertebrate and invertebrate animals. Cobalt-rich crusts appear to grow at an extremely slow rate of several mm per million years, in the deep ocean where biological and ecological processes such as reproduction, growth and recolonisation are characterised by slow dynamics. The main disturbances posed by deep-sea mining of cobalt-rich crusts on the Rio Grande Rise consist of (1) complete removal of substrate with its particular benthic communities, (2) strong localised increases in suspended particulate matter, causing smothering of breathing apparatus and dilution of food particles, (3) crushing by tailings and overburden and (4) toxicity effects by released metals and other toxic substances, likely to be increased under high pressure. These impacts will likely change the deep-sea ecosystem at the Rio Grande Rise and its functioning for time scales in the order of decades to centuries. State-of-the-art geological, environmental and ecological modelling, complemented with high-quality, fine-resolution data are needed to provide a detailed evaluation of the impacts of cobalt-rich ferromanganese crust mining in the Rio Grande Rise, with the goal to formulate strategic environmental management plans. Highlights: The Rio Grande Rise is an extremely data-poor area, with hardly any information on biodiversity and ecosystem functioning. A comprehensive baseline of the deep-sea environmental settings of the Rio Grande Rise is provided. For the first time, a characterisation of Ecosystem Services derived from a deep sea area is undertaken. A thorough assessment of deep-sea mining impacts in the Rio Grande Rise is performed. The impact assessment directly serves the formulation of a Strategic Environmental Management Plan for the region. Climate change effects are explicitly taken into account and present shifting baselines, rather than additive effects. … (more)
- Is Part Of:
- Deep sea research. Volume 145(2019)
- Journal:
- Deep sea research
- Issue:
- Volume 145(2019)
- Issue Display:
- Volume 145, Issue 2019 (2019)
- Year:
- 2019
- Volume:
- 145
- Issue:
- 2019
- Issue Sort Value:
- 2019-0145-2019-0000
- Page Start:
- 31
- Page End:
- 58
- Publication Date:
- 2019-03
- Subjects:
- AABW Antarctic Bottom Water -- BEF Biodiversity and Ecosystem Functioning -- BTA Biological Traits Analysis -- CCD Carbonate Compensation Depth -- CCZ Clarion-Clipperton Zone -- CICES Common International Classification of Ecosystem Services -- CL Correlation Length -- CPRM Companhia de Pesquisa de Recursos Minerais, the Brazilian geological service and state-owned mining and exploration company -- CRC(s) Cobalt-Rich Crust(s) -- DCML Deep Chlorophyll Maximum Layer -- DNA Deoxyribonucleic acid -- DS(M) Deep Sea (Mining) -- DSDP Deep Sea Drilling Project -- DSTP Deep-Sea Tailing Placement -- EBM Ecosystem-Based Management -- EBSA Ecologically or Biologically Significant Area -- EF Ecosystem Functions -- EIA Environmental Impact Assessment -- ES Ecosystem Services -- GEBCO General Bathymetric Chart of the Oceans -- GHG Greenhouse gases -- GLODAP Global Ocean Data Analysis Project -- GMED Global Marine Environment Datasets -- GOODS Global Open Ocean and Deep Sea -- ICCAT International Commission for the Conservation of Atlantic Tuna -- IDW Inverse Distance Weighting -- IPCC International Panel on Climate Change -- ISA International Seabed Authority -- MAR Mid-Atlantic Ridge -- MEA Millennium Ecosystem Assessment -- Mya Million years ago -- MT Metallo-thionein -- NADW North-Atlantic Deep Water -- NGS Next-Generation Sequencing -- NOAA National Oceanic and Atmospheric Administration -- NW North-West -- OBIS Ocean Biogeographic Information System -- OM Organic Matter -- OMZ Oxygen-Minimum Zone -- OTU Operational Taxonomic Unit -- POC Particulate Organic Carbonate -- PMN Poly-metallic nodules -- PMP Paraná-Etendeka Magmatic Province -- PRA(s) Preservation Reference Area(s) -- qPCR quantitative Polymerase Chain Reaction -- REE(s) Rare Earth Element(s) -- RGR Rio Grande Rise -- RNA Ribonucleic acid -- SD standard deviation -- SE South-East -- SEM Scanning Electron Microscope -- (S)EMP (Strategic) Environmental Management Plan -- SM seamounts -- SMS Seafloor Massive Sulfides -- SNR Signal-to-Noise Ratio -- SPM Suspended Particulate Matter -- TA Total Alkalinity -- TEM Transmission Electron Microscope -- TTP Typical Tropical Profile -- TWT Two-Way Time -- UCDW Upper Circumpolar Deep Water -- VGPM Vertically Generalised Production Model -- VME Vulnerable Marine Ecosystem -- WOD World Ocean Database -- WoRMS World Register of Marine Species -- WR Walvis Ridge
Cobalt crust -- Ferromanganese -- South Atlantic -- Brazil -- Anthropogenic pressure -- Cumulative impacts -- Environmental management plan -- Oceanographic data
Oceanography -- Periodicals
Océanographie -- Périodiques
551.4605 - Journal URLs:
- http://www.sciencedirect.com/science/journal/09670637 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.dsr.2018.12.007 ↗
- Languages:
- English
- ISSNs:
- 0967-0637
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
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- British Library DSC - 3540.955500
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