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result(s) for
"Sea water"
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Absorption Spectral Slopes and Slope Ratios as Indicators of Molecular Weight, Source, and Photobleaching of Chromophoric Dissolved Organic Matter
by
Kieber, David J.
,
Minor, Elizabeth C.
,
Helms, John R.
in
Absorption spectra
,
Animal and plant ecology
,
Animal, plant and microbial ecology
2008
A new approach for parameterizing dissolved organic matter (DOM) ultraviolet-visible absorption spectra is presented. Two distinct spectral slope regions (275-295 nm and 350-400 nm) within log-transformed absorption spectra were used to compare DOM from contrasting water types, ranging from wetlands (Great Dismal Swamp and Suwannee River) to photobleached oceanic water (Atlantic Ocean). On the basis of DOM size-fractionation studies (ultrafiltration and gel filtration chromatography), the slope of the 275-295-nm region and the ratio of these slopes ($S_{\\rm{R}} $; 275-295-nm slope : 350-400-nm slope) were related to DOM molecular weight (MW) and to photochemically induced shifts in MW. Dark aerobic microbial alteration of chromophoric DOM (CDOM) resulted in spectral slope changes opposite of those caused by photochemistry. Along an axial transect in the Delaware Estuary, large variations in $S_{\\rm{R}} $ were measured, probably due to mixing, photodegradation, and microbial alteration of CDOM as terrestrially derived DOM transited through the estuary. Further, $S_{\\rm{R}} $ varied by over a factor of 13 between DOM-rich wetland waters and Sargasso Sea surface waters. Currently, there is no consensus on a wavelength range for log-transformed absorption spectra. We propose that the 275-295-nm slope be routinely reported in future DOM studies, as it can be measured with high precision, it facilitates comparison among dissimilar water types including CDOM-rich wetland and CDOM-poor marine waters, and it appears to be a good proxy for DOM MW.
Journal Article
Marine coastal and water pollutions : oil spill studies
by
Muttin, Frâedâeric, editor of compilation
,
âEcole d'ingâenieurs en gâenie des systلemes industriels. International Workshop on Anti-Pollution and Marine Coastal Water Pollution (4th : 2012 : La Rochelle, France)
in
Marine pollution Research Congresses.
,
Oil pollution of the sea Research Congresses.
,
Oil spills Research Congresses.
Massive Phytoplankton Blooms Under Arctic Sea Ice
by
Mills, Matthew M.
,
Lubelczyk, Laura
,
Reynolds, Rick A.
in
algal blooms
,
Animal and plant ecology
,
Animal, plant and microbial ecology
2012
In midsummer, diatoms have taken advantage of thinning ice cover to feed in nutrient-rich waters. Phytoplankton blooms over Arctic Ocean continental shelves are thought to be restricted to waters free of sea ice. Here, we document a massive phytoplankton bloom beneath fully consolidated pack ice far from the ice edge in the Chukchi Sea, where light transmission has increased in recent decades because of thinning ice cover and proliferation of melt ponds. The bloom was characterized by high diatom biomass and rates of growth and primary production. Evidence suggests that under-ice phytoplankton blooms may be more widespread over nutrient-rich Arctic continental shelves and that satellite-based estimates of annual primary production in these waters may be underestimated by up to 10-fold.
Journal Article
Mesoscale Iron Enrichment Experiments 1993-2005: Synthesis and Future Directions
by
Law, C. S.
,
Rivkin, R. B.
,
Watson, A. J.
in
Animal and plant ecology
,
Animal, plant and microbial ecology
,
Animals
2007
Since the mid-1980s, our understanding of nutrient limitation of oceanic primary production has radically changed. Mesoscale iron addition experiments (FeAXs) have unequivocally shown that iron supply limits production in one-third of the world ocean, where surface macronutrient concentrations are perennially high. The findings of these 12 FeAXs also reveal that iron supply exerts controls on the dynamics of plankton blooms, which in turn affect the biogeochemical cycles of carbon, nitrogen, silicon, and sulfur and ultimately influence the Earth climate system. However, extrapolation of the key results of FeAXs to regional and seasonal scales in some cases is limited because of differing modes of iron supply in FeAXs and in the modern and paleo-oceans. New research directions include quantification of the coupling of oceanic iron and carbon biogeochemistry.
Journal Article
Explore the Salish Sea : a nature guide for kids
by
Gaydos, Joseph K., author
,
Benedict, Audrey D., author
in
Marine ecology Salish Sea (B.C. and Wash.) Juvenile literature.
,
Marine ecology Salish Sea (B.C. and Wash.)
,
JUVENILE NONFICTION / Animals / Marine Life.
2018
\"Discover the Salish Sea and learn about its vibrant ecosystem in this engaging non-fiction narrative that inspires outdoor exploration. Filled with full-color photography, this book covers wildlife habitats, geodiversity, intertidal and subtidal sea life, and highlights what is unique to this Pacific Northwest ecosystem\"-- Provided by publisher.
Emergence of Anoxia in the California Current Large Marine Ecosystem
by
Kirincich, A
,
Lubchenco, J
,
Chan, F
in
Animal and plant ecology
,
Animal, plant and microbial ecology
,
Animals
2008
Eastern boundary current systems are among the world's most productive large marine ecosystems. Because upwelling currents transport nutrient-rich but oxygen-depleted water onto shallow seas, large expanses of productive continental shelves can be vulnerable to the risk of extreme low-oxygen events. Here, we report the novel rise of water-column shelf anoxia in the northern California Current system, a large marine ecosystem with no previous record of such extreme oxygen deficits. The expansion of anoxia highlights the potential for rapid and discontinuous ecosystem change in productive coastal systems that sustain a major portion of the world's fisheries.
Journal Article
A first book of the sea
by
Davies, Nicola, 1958- author
,
Sutton, Emily, illustrator
in
Sea poetry.
,
Marine animals Juvenile poetry.
,
Children's poetry, English.
2018
A collection of fifty-three original poems that celebrate the sea in all its changing moods.
Evidence for Upwelling of Corrosive \Acidified\ Water onto the Continental Shelf
by
Feely, Richard A.
,
Sabine, Christopher L.
,
Hales, Burke
in
absorption
,
Acidification
,
Anthropogenic factors
2008
The absorption of atmospheric carbon dioxide (CO₂) into the ocean lowers the pH of the waters. This so-called ocean acidification could have important consequences for marine ecosystems. To better understand the extent of this ocean acidification in coastal waters, we conducted hydrographic surveys along the continental shelf of western North America from central Canada to northern Mexico. We observed seawater that is undersaturated with respect to aragonite upwelling onto large portions of the continental shelf, reaching depths of ∼40 to 120 meters along most transect lines and all the way to the surface on one transect off northern California. Although seasonal upwelling of the undersaturated waters onto the shelf is a natural phenomenon in this region, the ocean uptake of anthropogenic CO₂ has increased the areal extent of the affected area
Journal Article