Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10553/42241
Título: Seasonal pH variability in the Saronikos Gulf: A year-study using a new photometric pH sensor
Autores/as: González Dávila, Melchor 
Santana Casiano, Juana Magdalena 
Petihakis, George
Ntoumas, Manolis
Suarez De Tangil Navarro, Miguel Angel 
Krasakopoulou, Evangelia
Clasificación UNESCO: 251002 Oceanografía química
2302 Bioquímica
Palabras clave: Aegean Sea
Carbon dioxide system
pH systems
Sea water
Seasonal variations, et al.
Fecha de publicación: 2016
Proyectos: JERICO (262584)
Publicación seriada: Journal of Marine Systems 
Resumen: Long-term determination of carbon dioxide data is a priority requirement to ensure a realistic picture of how ocean seawater properties change as the result of atmospheric evolution. Due to the extreme daily and seasonal variability of the carbonate system characteristics, constant autonomous measurements are a necessity when seeking to provide total spatial–temporal coverage of inorganic carbon data. We present here results of a one-year study in the Eastern Mediterranean Aegean Sea by using a new spectrophotometric pH-based system, applicable in long time deployments. The manifold has proved to be capable of providing sea-surface temperature and salinity together with highly accurate pH values determined each 6 h over the period between September 2013 and October 2014. The average seasonal temperature difference of 12.4 °C, determined from March to September, can be correlated to the seasonal pH decrease of 0.2 pH units, from 8.18 to 7.98. The area also presented a maximum seasonal change in partial pressure of CO2 of 208 μatm, computed from the salinity-based total alkalinity values. The Saronikos area in the Aegean Sea was characterized to be a thermodynamically controlled region, since it is oligotrophic, acting as a source of CO2 into the atmosphere of 0.20 mol m− 2 yr− 1.
URI: http://hdl.handle.net/10553/42241
ISSN: 0924-7963
DOI: 10.1016/j.jmarsys.2016.03.007
Fuente: Journal of Marine Systems [ISSN 0924-7963], v. 162, p. 37-46
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