This article uses historical and ethnographic methods to examine the primarily East-Central European Interoceanmetal Joint Organization (IOM). I ask how and why the IOM has survived as an institution since its inception in 1987, working especially with the personal archive of Vratislav Kubišta. Kubišta was a metallurgist and former Deputy Director General at IOM who after retirement sought to develop a local deep-sea mining museum. This is a story about the work that archives do, but even more about how institutions maintain archives. I draw on recent work in the history and anthropology of time and archival practice to situate IOM's history and Kubišta's collection in narratives of ruin, the unbuilt, and the experience of multiple temporalities within spaces of resource speculation and anticipation. I suggest that IOM's history highlights the contingencies of resources in the temporality of indefinite pause, their attendant data, and scientific labor and life under the shifting political, economic, and scientific circumstances of the ongoing not-yet. In broadening the history of what is once more a hotly contested potential resource, this account speaks to the claims of contemporary would-be seabed miners, who frequently frame the practice in terms of innovation, urgency, and novelty.
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http://dx.doi.org/10.1177/03063127231226423 | DOI Listing |
Sensors (Basel)
December 2024
Key Laboratory of System Control and Information Processing, Department of Automation, Shanghai Jiao Tong University, Shanghai 200240, China.
The suspended sediment plume generated in the deep-sea mining process significantly impacts the marine environment and seabed ecosystem. Accurate boundary estimation can effectively monitor the scope of environmental impact, guiding mining operations to prevent ecological damage. In this paper, we propose a dynamic boundary estimation approach for the suspended sediment plume, leveraging the sensing capability of the Autonomous Underwater Vehicles (AUVs).
View Article and Find Full Text PDFEnviron Pollut
December 2024
School of Civil and Resource Engineering, University of Science and Technology Beijing, Beijing 100083, China.
Environ Pollut
December 2024
Marine Trace Metal Biogeochemistry Laboratory, Centre for Ocean, River, Atmosphere and Land Sciences (CORAL), Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, 721302, India.
BMC Genomics
December 2024
Institut Teknologi Bandung, School of Life Sciences and Technology, Bandung, West Java, Indonesia.
Background: The marine environment boasts distinctive physical, chemical, and biological characteristics. While numerous studies have delved into the microbial ecology and biological potential of the marine environment, exploration of genetically encoded, deep-sea sourced secondary metabolites remains scarce. This study endeavors to investigate marine bioproducts derived from deep-sea water samples at a depth of 1,000 m in the Java Trench, Indonesia, utilizing both culture-dependent and whole-genome sequencing methods.
View Article and Find Full Text PDFChem Biodivers
December 2024
CAS Key Laboratory of Tropical Marine Bio-Resources and Ecology, Guangdong Key Laboratory of Marine Materia Medica, RNAM Center for Marine Microbiology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, China.
Marine fungi are considered important resources for new lead compounds in One Strain Many Compounds (OSMAC) strategy. In particular, deep-sea derived fungi have been deemed potent for novel bioactive structures due to their extreme living environment and evolution of special biosynthetic gene clusters (BGCs) for secondary metabolites. Chemical investigations of the deep-sea derived Penicillium sp.
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