Oxygen-deficient waters in the ocean, generally referred to as oxygen minimum zones (OMZ), are expected to expand as a consequence of global climate change. Poor oxygenation is promoting microbial loss of inorganic nitrogen (N) and increasing release of sediment-bound phosphate (P) into the water column. These intermediate water masses, nutrient-loaded but with an N deficit relative to the canonical N:P Redfield ratio of 16:1, are transported via coastal upwelling into the euphotic zone. To test the impact of nutrient supply and nutrient stoichiometry on production, partitioning and elemental composition of dissolved (DOC, DON, DOP) and particulate (POC, PON, POP) organic matter, three nutrient enrichment experiments were conducted with nat...
Water masses influenced by oxygen minimum zones (OMZ) feature low inorganic nitrogen (N) to phosphor...
Water masses influenced by oxygen minimum zones (OMZ) feature low inorganic nitrogen (N) to phosphor...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
Oxygen-deficient waters in the ocean, generally referred to as oxygen minimum zones (OMZ), are expec...
Oxygen-deficient waters in the ocean, generally referred to as oxygen minimum zones (OMZ), are expec...
Oxygen-deficient waters in the ocean, generally referred to as oxygen minimum zones (OMZ), are expec...
Oxygen-deficient water masses in the ocean, so-called oxygen minimum zones (OMZ), are said to expand...
Ocean deoxygenation due to climate change may alter redox-sensitive nutrient cycles in the marine en...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
The tropical South East Pacific is characterized by strong coastal upwelling on the narrow continent...
Ocean deoxygenation due to climate change may alter redox-sensitive nutrient cycles in the marine en...
Inorganic dissolved macronutrient (nitrogen, N, and phosphorus, P) supply to surface waters in the e...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
Water masses influenced by oxygen minimum zones (OMZ) feature low inorganic nitrogen (N) to phosphor...
Water masses influenced by oxygen minimum zones (OMZ) feature low inorganic nitrogen (N) to phosphor...
Water masses influenced by oxygen minimum zones (OMZ) feature low inorganic nitrogen (N) to phosphor...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
Oxygen-deficient waters in the ocean, generally referred to as oxygen minimum zones (OMZ), are expec...
Oxygen-deficient waters in the ocean, generally referred to as oxygen minimum zones (OMZ), are expec...
Oxygen-deficient waters in the ocean, generally referred to as oxygen minimum zones (OMZ), are expec...
Oxygen-deficient water masses in the ocean, so-called oxygen minimum zones (OMZ), are said to expand...
Ocean deoxygenation due to climate change may alter redox-sensitive nutrient cycles in the marine en...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
The tropical South East Pacific is characterized by strong coastal upwelling on the narrow continent...
Ocean deoxygenation due to climate change may alter redox-sensitive nutrient cycles in the marine en...
Inorganic dissolved macronutrient (nitrogen, N, and phosphorus, P) supply to surface waters in the e...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
Water masses influenced by oxygen minimum zones (OMZ) feature low inorganic nitrogen (N) to phosphor...
Water masses influenced by oxygen minimum zones (OMZ) feature low inorganic nitrogen (N) to phosphor...
Water masses influenced by oxygen minimum zones (OMZ) feature low inorganic nitrogen (N) to phosphor...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...