Deoxygenation Hotspots: Unpacking the Hydrographic Drivers of Marine Anoxia and Coastal Vulnerability Article Swipe
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· 2025
· Open Access
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· DOI: https://doi.org/10.5281/zenodo.17729337
Marine deoxygenation, the reduction in dissolved oxygen concentrations in the ocean, represents a critical and rapidly expanding environmental challenge with profound ecological and socioeconomic implications. This paper delves into the concept of "deoxygenation hotspots," areas characterized by particularly severe or rapidly intensifying oxygen loss, and comprehensively unpacks the underlying hydrographic drivers that contribute to the development and persistence of marine anoxia in these regions. We examine how key physical processes such as ocean warming, increased stratification, altered ocean circulation patterns, and enhanced nutrient runoff interact to create conditions conducive to extreme oxygen depletion. Specific attention is given to coastal environments, which are uniquely vulnerable due to their proximity to anthropogenic influences and complex bathymetry. The paper synthesizes current scientific understanding, highlighting the interconnectedness of global climate change and local pollution pressures, and critically integrates these drivers into a framework that elucidates the mechanisms underpinning widespread oxygen loss. By dissecting the intricate interplay of these hydrographic mechanisms, we aim to provide a clearer framework for understanding the spatial and temporal variability of deoxygenation hotspots, thereby informing targeted management strategies and enhancing predictive capabilities for mitigating the escalating risks to marine ecosystems and coastal communities. Addressing marine deoxygenation is not only an ecological imperative but also an ethical responsibility, given its direct impacts on marine biodiversity, ecosystem services, and human livelihoods.
Related Topics
- Type
- article
- Landing Page
- https://doi.org/10.5281/zenodo.17729337
- OA Status
- green
- OpenAlex ID
- https://openalex.org/W7107881412
Raw OpenAlex JSON
- OpenAlex ID
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https://openalex.org/W7107881412Canonical identifier for this work in OpenAlex
- DOI
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https://doi.org/10.5281/zenodo.17729337Digital Object Identifier
- Title
-
Deoxygenation Hotspots: Unpacking the Hydrographic Drivers of Marine Anoxia and Coastal VulnerabilityWork title
- Type
-
articleOpenAlex work type
- Publication year
-
2025Year of publication
- Publication date
-
2025-11-27Full publication date if available
- Authors
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Revista, Zen, GEOGRAPHY, 10List of authors in order
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https://doi.org/10.5281/zenodo.17729337Publisher landing page
- Open access
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YesWhether a free full text is available
- OA status
-
greenOpen access status per OpenAlex
- OA URL
-
https://doi.org/10.5281/zenodo.17729337Direct OA link when available
- Concepts
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Hydrography, Environmental science, Marine ecosystem, Climate change, Vulnerability (computing), Ecosystem, Deoxygenation, Environmental resource management, Oceanography, Ecology, Marine spatial planning, Temporal scales, Marine pollution, Marine Strategy Framework Directive, Environmental change, Ecosystem services, Geography, Ecosystem-based management, Marine conservation, Pollution, Fishery, Environmental planning, Current (fluid), Nutrient pollution, UnderpinningTop concepts (fields/topics) attached by OpenAlex
- Cited by
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0Total citation count in OpenAlex
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| abstract_inverted_index.pressures, | 130 |
| abstract_inverted_index.represents | 11 |
| abstract_inverted_index.scientific | 118 |
| abstract_inverted_index.strategies | 177 |
| abstract_inverted_index.underlying | 48 |
| abstract_inverted_index.vulnerable | 103 |
| abstract_inverted_index.widespread | 144 |
| abstract_inverted_index.bathymetry. | 113 |
| abstract_inverted_index.circulation | 78 |
| abstract_inverted_index.development | 55 |
| abstract_inverted_index.mechanisms, | 155 |
| abstract_inverted_index.persistence | 57 |
| abstract_inverted_index.synthesizes | 116 |
| abstract_inverted_index.variability | 169 |
| abstract_inverted_index.capabilities | 181 |
| abstract_inverted_index.communities. | 192 |
| abstract_inverted_index.highlighting | 120 |
| abstract_inverted_index.hydrographic | 49, 154 |
| abstract_inverted_index.intensifying | 41 |
| abstract_inverted_index.livelihoods. | 218 |
| abstract_inverted_index.particularly | 37 |
| abstract_inverted_index.underpinning | 143 |
| abstract_inverted_index.anthropogenic | 109 |
| abstract_inverted_index.biodiversity, | 213 |
| abstract_inverted_index.characterized | 35 |
| abstract_inverted_index.deoxygenation | 171, 195 |
| abstract_inverted_index.environmental | 17 |
| abstract_inverted_index.environments, | 99 |
| abstract_inverted_index.implications. | 24 |
| abstract_inverted_index.socioeconomic | 23 |
| abstract_inverted_index.understanding | 164 |
| abstract_inverted_index."deoxygenation | 32 |
| abstract_inverted_index.concentrations | 7 |
| abstract_inverted_index.deoxygenation, | 1 |
| abstract_inverted_index.understanding, | 119 |
| abstract_inverted_index.comprehensively | 45 |
| abstract_inverted_index.responsibility, | 206 |
| abstract_inverted_index.stratification, | 75 |
| abstract_inverted_index.interconnectedness | 122 |
| cited_by_percentile_year | |
| countries_distinct_count | 0 |
| institutions_distinct_count | 2 |
| citation_normalized_percentile.value | 0.83229727 |
| citation_normalized_percentile.is_in_top_1_percent | False |
| citation_normalized_percentile.is_in_top_10_percent | True |