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Seawater carbonate chemistry and growth of four North Atlantic bivalves

2019

Gao, Guang | Qu, Liming | Burgess, J Grant | Li, Xinshu | Xu, Juntian


Información bibliográfica
Editorial
PANGAEA
Otras materias
Bottles or small containers/aquaria (<20 l); Total; Inorganic; Relative; Primary production/photosynthesis; Ulva linza; Growth/morphology; Total scale; Tgs; Laboratory experiment; Maximal electron transport rate; Type; Aragonite saturation state; Calculated using seacarb after nisumaa et al. (2010); Nbs scale; Non photochemical quenching; Carbonate system computation flag; Temperate; Biomass/abundance/elemental composition; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Uniform resource locator/link to reference; Ocean acidification international coordination centre; Electron transport rate efficiency; Lianyungang; Chlorophyll b; Nitrate reductase activity; Generation span; Carbonate ion; Coast and continental shelf; Stage; Macroalgae; Partial pressure of carbon dioxide; Registration number of species; Dissolved; Oa-icc; Treatment; Sealevel; Chlorophyll a; Standard deviation; Calcite saturation state; Electron transport rate; Net photosynthesis rate; Single species; Light saturation point; Bicarbonate ion; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Tide gauge station
Idioma
Inglés
Formato
text/tab-separated-values, 1884 data points
Licencia
CC-BY-4.0: Creative Commons Attribution 4.0 International, Access constraints: unrestricted, info:eu-repo/semantics/openAccess
Tipo
Dataset
Fuente
Supplement to: Gao, Guang; Qu, Liming; Burgess, J Grant; Li, Xinshu; Xu, Juntian (2019): Future CO2-induced ocean acidification enhances resilience of a green tide alga to low-salinity stress. ICES Journal of Marine Science, https://doi.org/10.1093/icesjms/fsz135

2024-11-28
2025-10-25
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