Ecological variables for developing a global deep-ocean monitoring and conservation strategy

R Danovaro, E Fanelli, J Aguzzi, D Billett… - Nature Ecology & …, 2020 - nature.com
The deep sea (> 200 m depth) encompasses> 95% of the world's ocean volume and
represents the largest and least explored biome on Earth (< 0.0001% of ocean surface), yet …

[HTML][HTML] Scientific rationale and international obligations for protection of active hydrothermal vent ecosystems from deep-sea mining

CL Van Dover, S Arnaud-Haond, M Gianni… - Marine Policy, 2018 - Elsevier
There is increasing interest in mining minerals on the seabed, including seafloor massive
sulfide deposits that form at hydrothermal vents. The International Seabed Authority is …

Global deep-sea biodiversity research trends highlighted by science mapping approach

C Costa, E Fanelli, S Marini, R Danovaro… - Frontiers in Marine …, 2020 - frontiersin.org
The scientific literature available on deep-sea biodiversity is ample and covers a wide array
of objectives, geographic areas, and topics. It also explores the links between ecosystem …

Potential impacts of polymetallic nodule removal on deep-sea meiofauna

E Pape, TN Bezerra, H Gheerardyn, M Buydens… - Scientific Reports, 2021 - nature.com
Deep seabed mining is potentially imminent in the Clarion Clipperton Fracture Zone (CCFZ;
northeast Pacific). Seabed collectors will remove polymetallic nodules and the surrounding …

[HTML][HTML] Bryozoa (Cheilostomata) from polymetallic nodules in the Russian exploration area, Clarion–Clipperton Fracture Zone, eastern Pacific Ocean—taxon novelty …

AV GRISCHENKO, DP GORDON, VP MELNIK - Zootaxa, 2024 - mapress.com
This work describes Bryozoa of the order Cheilostomata associated with polymetallic
nodules collected by box-coring in the eastern part of the Russian exploration area of the …

[HTML][HTML] Coconstruction of ecosystem services management in tribal lands: Elicit expert opinion approach

AA Tarancón, YS Kim, T Padilla… - … Climate, and Society, 2020 - journals.ametsoc.org
Ameztegui, A., KA Solarik, JR Parkins, D. Houle, C. Messier, and D. Gravel, 2018:
Perceptions of climate change across the Canadian forest sector: The key factors of …

Potential Impacts of Polymetallic Nodule Removal On Deep-Sea Meiobenthos

E Pape, T Bezerra, H Gheerardyn, M Buydens… - 2021 - researchsquare.com
Deep seabed mining is imminent in the Clarion Clipperton Fracture Zone (CCFZ; northeast
Pacific). Seabed collectors will remove the polymetallic nodules and the surrounding surface …

Application of autonomous underwater vehicles to the study of deep-sea benthic ecology

N Piechaud - 2020 - plymouth.researchcommons.org
Rising anthropogenic pressure in the deep sea prompts concerns for its short and long term
conservation, however, it remains mostly unexplored. Effective conservation strategies need …

[PDF][PDF] Global Deep-Sea Biodiversity

C Costa, E Fanelli, S Marini, R Danovaro, J Aguzzi - openaccessrepository.it
The scientific literature available on deep-sea biodiversity is ample and covers a wide array
of objectives, geographic areas, and topics. It also explores the links between ecosystem …

[PDF][PDF] UVicSPACE: Research & Learning Repository

CL Van Dover, S Arnaud-Haond, M Gianni… - Marine …, 2018 - dspace.library.uvic.ca
There is increasing interest in mining minerals on the seabed, including seafloor massive
sulfide deposits that form at hydrothermal vents. The International Seabed Authority is …