Mining of deep-sea Fe-Mn deposits will remove crusts and nodules from the seafloor. The growth of these minerals takes millions of years, yet little is known about their microbiome. Besides being key elements of the biogeochemical cycles and essential links of food and energy to deep-sea, microbes have been identified to affect manganese oxide formation. In this study, we determined the composition and diversity of Bacteria and Archaea in deep-sea Fe-Mn crusts, nodules, and associated sediments from two areas in the Atlantic Ocean, the Tropic Seamount and the Rio Grande Rise. Samples were collected using ROV and dredge in 2016 and 2018 oceanographic campaigns, and the 16S rRNA gene was sequenced using Illumina platform. Additionally, we com...
Rocky outcrops covered with thick Fe and Mn oxide coatings, which are known as ferromanganese (Fe-Mn...
This study investigates potential impacts connected to the removal of manganese nodules on deepsea ...
Marine bacteria regulate fluxes of matter and energy essential for pelagic and benthic organisms and...
Mining of deep-sea Fe-Mn deposits will remove crusts and nodules from the seafloor. The growth of th...
Fe-Mn crusts and nodules are deep-sea minerals that are economically and ecologically important. Fut...
Industrial-scale mining of deep-sea polymetallic nodules will remove nodules in large areas of the s...
Due to a constantly growing demand of minerals and the depletion of terrestrial resources alternativ...
Abstract Background Ferromanganese nodule-bearing deep-sea sediments cover vast areas of the ocean f...
Author Posting. © The Author(s), 2014. This is the author's version of the work. It is posted here ...
The rising demand for minerals and metals is encouraging the great international interest for altern...
The rising demand for critical raw materials is encouraging the international interest to explore an...
Despite its potential significance for industrial utilization, any activities associated with the m...
Marine bacteria regulate fluxes of matter and energy essential for pelagic and benthic organisms and...
Abyssal manganese nodules have been explored widely for their economic potential and paleoenvironmen...
Polymetallic nodules (manganese nodules) have been formed on deep sea sediments over millions of yea...
Rocky outcrops covered with thick Fe and Mn oxide coatings, which are known as ferromanganese (Fe-Mn...
This study investigates potential impacts connected to the removal of manganese nodules on deepsea ...
Marine bacteria regulate fluxes of matter and energy essential for pelagic and benthic organisms and...
Mining of deep-sea Fe-Mn deposits will remove crusts and nodules from the seafloor. The growth of th...
Fe-Mn crusts and nodules are deep-sea minerals that are economically and ecologically important. Fut...
Industrial-scale mining of deep-sea polymetallic nodules will remove nodules in large areas of the s...
Due to a constantly growing demand of minerals and the depletion of terrestrial resources alternativ...
Abstract Background Ferromanganese nodule-bearing deep-sea sediments cover vast areas of the ocean f...
Author Posting. © The Author(s), 2014. This is the author's version of the work. It is posted here ...
The rising demand for minerals and metals is encouraging the great international interest for altern...
The rising demand for critical raw materials is encouraging the international interest to explore an...
Despite its potential significance for industrial utilization, any activities associated with the m...
Marine bacteria regulate fluxes of matter and energy essential for pelagic and benthic organisms and...
Abyssal manganese nodules have been explored widely for their economic potential and paleoenvironmen...
Polymetallic nodules (manganese nodules) have been formed on deep sea sediments over millions of yea...
Rocky outcrops covered with thick Fe and Mn oxide coatings, which are known as ferromanganese (Fe-Mn...
This study investigates potential impacts connected to the removal of manganese nodules on deepsea ...
Marine bacteria regulate fluxes of matter and energy essential for pelagic and benthic organisms and...