Search Results - "Merwe, Pier"
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Homeostasis drives intense microbial trace metal processing on marine particles
Published in Limnology and oceanography (01-10-2021)“…As marine microorganisms and environmental conditions coevolved over geological timescales, metals have been incorporated into all essential metabolic…”
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Critical evaluation of a seaFAST system for the analysis of trace metals in marine samples
Published in Talanta (Oxford) (15-05-2019)“…A seawater preconcentration system (seaFAST) with offline sector-field inductively coupled plasma mass spectrometry (SF-ICP-MS) detection was critically…”
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Role of sea ice in global biogeochemical cycles: emerging views and challenges
Published in Quaternary science reviews (01-11-2013)“…Observations from the last decade suggest an important role of sea ice in the global biogeochemical cycles, promoted by (i) active biological and chemical…”
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Mechanistic Constraints on the Drivers of Southern Ocean Meridional Iron Distributions Between Tasmania and Antarctica
Published in Global biogeochemical cycles (01-03-2024)“…While modeling efforts have furthered our understanding of marine iron biogeochemistry and its influence on carbon sequestration, observations of dissolved…”
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Iron availability influences nutrient drawdown in the Heard and McDonald Islands region, Southern Ocean
Published in Marine chemistry (20-04-2019)“…At the southern part of the northern Kerguelen Plateau (Southern Ocean) is an active volcanic hotspot, hosting volcanically active Heard Island and McDonald…”
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Insights Into the Biogeochemical Cycling of Iron, Nitrate, and Phosphate Across a 5,300 km South Pacific Zonal Section (153°E–150°W)
Published in Global biogeochemical cycles (01-02-2018)“…Iron, phosphate, and nitrate are essential nutrients for phytoplankton growth, and hence, their supply into the surface ocean controls oceanic primary…”
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The autonomous clean environmental (ACE) sampler: A trace‐metal clean seawater sampler suitable for open‐ocean time‐series applications
Published in Limnology and oceanography, methods (01-09-2019)“…The fundamental role of the micronutrient Fe in controlling phytoplankton growth in large parts of Earth's oceans and a lack of information on seasonal…”
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Distribution of dissolved iron in Antarctic sea ice: Spatial, seasonal, and inter-annual variability
Published in Journal of Geophysical Research: Biogeosciences (01-09-2010)“…Results from recent field studies in Antarctic sea ice show no clear differences in dissolved iron (dFe) concentrations between pack ice sampled in East…”
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Size fractionation of iron, manganese and aluminium in Antarctic fast ice reveals a lithogenic origin and low iron solubility
Published in Marine chemistry (20-04-2014)Get full text
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Iron biogeochemistry in Antarctic pack ice during SIPEX-2
Published in Deep-sea research. Part II, Topical studies in oceanography (01-09-2016)“…Our study quantified the spatial and temporal distribution of Fe and ancillary biogeochemical parameters at six stations visited during an interdisciplinary…”
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Seasonality of phytoplankton growth limitation by iron and manganese in subantarctic waters
Published in Elementa (Washington, D.C.) (11-09-2023)“…Phytoplankton indirectly influence climate through their role in the ocean biological carbon pump. In the Southern Ocean, the subantarctic zone represents an…”
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Distribution of dissolved and particulate metals in Antarctic sea ice
Published in Marine chemistry (20-03-2011)“…Samples were collected in East Antarctic sea ice in late winter/early austral spring 2007 to assess the distributions of Al, Cr, Mn, Cu, Zn, Mo, Cd and Ba…”
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Characterization of a Southern Ocean deep chlorophyll maximum: Response of phytoplankton to light, iron, and manganese enrichment
Published in Limnology and oceanography letters (01-04-2024)“…Southern Ocean phytoplankton growth is limited by low iron (Fe) supply and irradiance, impacting the strength of the biological carbon pump. Unfavorable upper…”
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Sustained Upwelling of Subsurface Iron Supplies Seasonally Persistent Phytoplankton Blooms Around the Southern Kerguelen Plateau, Southern Ocean
Published in Journal of geophysical research. Oceans (01-08-2018)“…Although the supply of iron generally limits phytoplankton productivity in the Southern Ocean, substantial seasonal blooms are observed over and downstream of…”
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Glacial and Hydrothermal Sources of Dissolved Iron (II) in Southern Ocean Waters Surrounding Heard and McDonald Islands
Published in Journal of geophysical research. Oceans (01-10-2020)“…The Southern Ocean is the largest region in which iron limits the growth of phytoplankton. However, a phytoplankton bloom thousands of square kilometers in…”
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Spatial and seasonal distribution of dissolved and particulate bioactive metals in Antarctic sea ice
Published in Elementa (Washington, D.C.) (09-11-2021)“…Iron (Fe) has been shown to limit growth of marine phytoplankton in the Southern Ocean, regulating phytoplankton productivity and species composition, yet does…”
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Size fractionation and bioavailability of iron released from melting sea ice in a subpolar marginal sea
Published in Marine chemistry (20-04-2020)“…We incubated Fe-limited seawater with sea-ice sections to evaluate which forms of iron (Fe) released from melting sea ice can favor phytoplankton growth…”
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Manganese biogeochemistry in the Southern Ocean, from Tasmania to Antarctica
Published in Limnology and oceanography (01-06-2021)“…Manganese (Mn) is an abundant element in the Earth's crust. However, its concentrations in open ocean seawater are low, where external inputs are scarce. In…”
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Organic ligands control the concentrations of dissolved iron in Antarctic sea ice
Published in Marine chemistry (01-08-2015)“…The organic complexation of dissolved iron (DFe) was assessed in 5 snow, 34 sea ice, 12 brine and 24 under-ice seawater samples collected during a 22day time…”
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Southern Ocean iron fertilization by baleen whales and Antarctic krill
Published in Fish and fisheries (Oxford, England) (01-06-2010)“…Iron is the limiting micronutrient in the Southern Ocean and experiments have demonstrated that addition of soluble iron to surface waters results in…”
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