Diffusive boundary layer (DBL) oxygen gradient parameters (table 2)
Fuente:
PANGAEA
Salvato in:
| Autori principali: | Noisette, Fanny, Hurd, Catriona L |
|---|---|
| Natura: | Dataset Open Access |
| Lingua: | en |
| Pubblicazione: |
PANGAEA
2018
|
| Soggetti: | |
| Accesso online: | |
| Tags: |
Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
|
Documenti analoghi
DBL thickness in mm in fast and slow flow conditions, in pH 8.1 and pH 7.7, in the absence or presence of bryozoans
di: Noisette, Fanny, et al.
Pubblicazione: (2018)
di: Noisette, Fanny, et al.
Pubblicazione: (2018)
O2 standardized profiles in fast and slow conditions, in pH 8.1 and pH 7.7
di: Noisette, Fanny, et al.
Pubblicazione: (2018)
di: Noisette, Fanny, et al.
Pubblicazione: (2018)
pH variations and relationship with oxygen concentration in the DBL
di: Noisette, Fanny, et al.
Pubblicazione: (2018)
di: Noisette, Fanny, et al.
Pubblicazione: (2018)
Standardized O2 concentrations and interfacial fluxes at the surface of the blade in the different experimental conditions of pH, flow, presence/absence of bryozoans and in saturated light and dark conditions (table 3)
di: Noisette, Fanny, et al.
Pubblicazione: (2018)
di: Noisette, Fanny, et al.
Pubblicazione: (2018)
Chlorophyll a and Chlorophyll c
di: Noisette, Fanny, et al.
Pubblicazione: (2018)
di: Noisette, Fanny, et al.
Pubblicazione: (2018)
Changes in coral reef communities across a natural gradient in seawater pH
di: Barkley, Hannah C, et al.
Pubblicazione: (2015)
di: Barkley, Hannah C, et al.
Pubblicazione: (2015)
Seawater carbonate chemistry and calcification in the tropical urchin Echinometra viridis in a laboratory experiment
di: Courtney, T, et al.
Pubblicazione: (2013)
di: Courtney, T, et al.
Pubblicazione: (2013)
Temperature and acidification variability reduce physiological performance in the intertidal zone porcelain crab Petrolisthes cinctipes
di: Paganini, Adam W, et al.
Pubblicazione: (2014)
di: Paganini, Adam W, et al.
Pubblicazione: (2014)
Secondary calcification and dissolution respond differently to future ocean conditions
di: Silbiger, N J, et al.
Pubblicazione: (2015)
di: Silbiger, N J, et al.
Pubblicazione: (2015)
Seawater carbonate chemistry and physiological performance of the rhodolith Sporolithon sp.
di: Narvarte, Bienson Ceasar V, et al.
Pubblicazione: (2020)
di: Narvarte, Bienson Ceasar V, et al.
Pubblicazione: (2020)
Seawater carbonate chemistry and blood and endolymph acid-base parameters in control and OA-exposed rockfish
di: Kwan, Garfield Tsz, et al.
Pubblicazione: (2022)
di: Kwan, Garfield Tsz, et al.
Pubblicazione: (2022)
Seawater carbonate chemistry in the experiment of transcriptomic responses of coralline algae to global change stressors
di: Page, Tessa M, et al.
Pubblicazione: (2022)
di: Page, Tessa M, et al.
Pubblicazione: (2022)
Seawater carbonate chemistry, fertilization and early development of the coral eating crown-of-thorns starfish, Acanthaster planci in a laboratory experiment
di: Kamya, Pamela Z, et al.
Pubblicazione: (2014)
di: Kamya, Pamela Z, et al.
Pubblicazione: (2014)
Seawater carbonate chemistry and concentration boundary layers around complex assemblages of macroalgae in a laboratory experiment
di: Cornwall, Christopher Edward, et al.
Pubblicazione: (2013)
di: Cornwall, Christopher Edward, et al.
Pubblicazione: (2013)
Seawater acidification by CO2 in a coastal lagoon environment: Effects on life history traits of juvenile mussels Mytilus galloprovincialis
di: Range, P, et al.
Pubblicazione: (2012)
di: Range, P, et al.
Pubblicazione: (2012)
Seawater carbonate chemistry, physiology and skeletal mineralogy of coralline alga Corallina elongata in a laboratory experiment
di: Egilsdottir, Hronn, et al.
Pubblicazione: (2013)
di: Egilsdottir, Hronn, et al.
Pubblicazione: (2013)
Seawater carbonate chemistry and recruitment and succession in a tropical benthic community
di: Crook, Elizabeth Derse, et al.
Pubblicazione: (2016)
di: Crook, Elizabeth Derse, et al.
Pubblicazione: (2016)
Seawater carbonate chemistry and population structure of Ervilia castanea (Mollusca, Bivalvia)
di: Martins, M, et al.
Pubblicazione: (2020)
di: Martins, M, et al.
Pubblicazione: (2020)
The effects of hypercapnia on the West Coast rock lobster (Jasus lalandii) through acute exposure to decreased seawater pH-Physiological and biochemical responses
di: Knapp, Jarred L, et al.
Pubblicazione: (2016)
di: Knapp, Jarred L, et al.
Pubblicazione: (2016)
Seawater carbon chemistry and regeneration, Buds, active generation and old zooids, zooid width, length, orifice width and orifice length of bryozoan Cryptosula pallasiana
di: Lombardi, Chiara, et al.
Pubblicazione: (2017)
di: Lombardi, Chiara, et al.
Pubblicazione: (2017)
Seawater carbonate chemistry and bioinformatic quality statistics
di: Durland, Evan, et al.
Pubblicazione: (2021)
di: Durland, Evan, et al.
Pubblicazione: (2021)
Seawater carbonate chemistry and oyster larvae shell area
di: Miller, A Whitman, et al.
Pubblicazione: (2024)
di: Miller, A Whitman, et al.
Pubblicazione: (2024)
Seawater carbonate chemistry and competition between soft coral (Xenia) and hard coral (Stylophora pistillata)
di: Grillo, Ana C, et al.
Pubblicazione: (2025)
di: Grillo, Ana C, et al.
Pubblicazione: (2025)
Seawater carbonate chemistry and stage survival and morphological measurements, mineral contents and resting metabolic rates of larvae and juvenile American Lobster
di: Noisette, Fanny, et al.
Pubblicazione: (2021)
di: Noisette, Fanny, et al.
Pubblicazione: (2021)
Seawater carbonate chemistry and calcification rates of tropical zooxanthellate corals (Stylophora pistillata, Pocillopora damicornis, and Seriatopora hystrix) and cold-water coral (Lophelia pertusa)
di: Cameron, Louise P, et al.
Pubblicazione: (2022)
di: Cameron, Louise P, et al.
Pubblicazione: (2022)
1H NMR Metabolomics Reveals Contrasting Response by Male and Female Mussels Exposed to Reduced Seawater pH, Increased Temperature, and a Pathogen
di: Ellis, Robert P, et al.
Pubblicazione: (2014)
di: Ellis, Robert P, et al.
Pubblicazione: (2014)
Seawater carbonate chemistry and feeding behaviour of Scrobicularia plana
di: Van Colen, Carl, et al.
Pubblicazione: (2020)
di: Van Colen, Carl, et al.
Pubblicazione: (2020)
Acid-base balance and changes in haemolymph properties of the South African rock lobsters, Jasus lalandii, a palinurid decapod, during chronic hypercapnia
di: Knapp, Jarred L, et al.
Pubblicazione: (2015)
di: Knapp, Jarred L, et al.
Pubblicazione: (2015)
Giant clams and rising CO2: light may ameliorate effects of ocean acidification on a solar-powered animal
di: Watson, Sue-Ann
Pubblicazione: (2015)
di: Watson, Sue-Ann
Pubblicazione: (2015)
Seawater carbonate chemistry and calcification of Halimeda cuneata, photosynthetic rate of Halodule wrightii
di: Bergstrom, Ellie, et al.
Pubblicazione: (2019)
di: Bergstrom, Ellie, et al.
Pubblicazione: (2019)
Projected near-future CO2 levels increase activity and alter defensive behaviours in the tropical squid Idiosepius pygmaeus
di: Spady, Blake L, et al.
Pubblicazione: (2014)
di: Spady, Blake L, et al.
Pubblicazione: (2014)
Ocean acidification weakens the immune response of blood clam through hampering the NF-kappa beta and toll-like receptor pathways
di: Liu, Saixi, et al.
Pubblicazione: (2016)
di: Liu, Saixi, et al.
Pubblicazione: (2016)
Ocean acidification and increased temperature have both positive and negative effects on early ontogenetic traits of a rocky shore keystone predator species
di: Manríquez, Patricio H, et al.
Pubblicazione: (2016)
di: Manríquez, Patricio H, et al.
Pubblicazione: (2016)
Multiple stressor effects of near-future elevated seawater temperature and decreased pH on righting and escape behaviors of two common Antarctic gastropods
di: Schram, Julie B, et al.
Pubblicazione: (2014)
di: Schram, Julie B, et al.
Pubblicazione: (2014)
Seawater carbonate chemistry and growth and survival of juveniles of the striped venus clam Chamelea gallina
di: Sordo, Laura, et al.
Pubblicazione: (2021)
di: Sordo, Laura, et al.
Pubblicazione: (2021)
Regional adaptation defines sensitivity to future ocean acidification
di: Calosi, Piero, et al.
Pubblicazione: (2017)
di: Calosi, Piero, et al.
Pubblicazione: (2017)
Light availability determines susceptibility of reef building corals to ocean acidification
di: Suggett, David J, et al.
Pubblicazione: (2013)
di: Suggett, David J, et al.
Pubblicazione: (2013)
Macroalgal responses to ocean acidification depend on nutrient and light levels
di: Celis-Plá, Paula S M, et al.
Pubblicazione: (2015)
di: Celis-Plá, Paula S M, et al.
Pubblicazione: (2015)
Seawater carbonate chemistry and growth rate, primary production of Cystoseira tamariscifolia (Phaeophyceae) in laboratory experiment
di: Celis-Plá, Paula S M, et al.
Pubblicazione: (2017)
di: Celis-Plá, Paula S M, et al.
Pubblicazione: (2017)
CO2-induced ocean acidification increases anxiety in Rockfish via alteration of GABAA receptor functioning
di: Hamilton, Trevor James, et al.
Pubblicazione: (2013)
di: Hamilton, Trevor James, et al.
Pubblicazione: (2013)
Documenti analoghi
-
DBL thickness in mm in fast and slow flow conditions, in pH 8.1 and pH 7.7, in the absence or presence of bryozoans
di: Noisette, Fanny, et al.
Pubblicazione: (2018) -
O2 standardized profiles in fast and slow conditions, in pH 8.1 and pH 7.7
di: Noisette, Fanny, et al.
Pubblicazione: (2018) -
pH variations and relationship with oxygen concentration in the DBL
di: Noisette, Fanny, et al.
Pubblicazione: (2018) -
Standardized O2 concentrations and interfacial fluxes at the surface of the blade in the different experimental conditions of pH, flow, presence/absence of bryozoans and in saturated light and dark conditions (table 3)
di: Noisette, Fanny, et al.
Pubblicazione: (2018) -
Chlorophyll a and Chlorophyll c
di: Noisette, Fanny, et al.
Pubblicazione: (2018)