SciELO - Scientific Electronic Library Online

 
vol.10 issue1Dynamic modelling of the climate change impact in the Conchos River basin water managementArtificial Neural Network and Fourier series to forecasting temperatures of Irrigation District 075, Sinaloa México author indexsubject indexsearch form
Home Pagealphabetic serial listing  

Services on Demand

Journal

Article

Indicators

Related links

  • Have no similar articlesSimilars in SciELO

Share


Tecnología y ciencias del agua

On-line version ISSN 2007-2422

Abstract

VALDESPINO-CASTILLO, Patricia M. et al. Towards the construction of a carbon fluxes inventory of tropical waters: a unifying method pipeline. Tecnol. cienc. agua [online]. 2019, vol.10, n.1, pp.234-252.  Epub Apr 21, 2021. ISSN 2007-2422.  https://doi.org/10.24850/j-tyca-2019-01-09.

The relevance of inland waters in the global carbon cycle has been stressed recently, particularly because of a reassessment of their capacity for carbon exportation to the atmosphere and to the sediments. Global surveys have also highlighted the acute lack of information on tropical systems, which are exposed to crescent problems in the Global Change panorama, such as contamination and eutrophication, as well as important impacts related to water management strategies and water supply (e.g., water level fluctuations). Oxygen dynamics, a method left behind in the past, has been revised and is now being increasingly implemented to estimate primary production and ecosystem respiration due to the urgency to understand carbon fluxes in aquatic systems. Therefore, the details (advantages and disadvantages) of modern implementation of oxygen dynamics are revised and discussed here, particularly oriented to facilitate and promote their application in tropical aquatic systems, where it seems an adequate strategy. We suggest a unifying method pipeline in order to obtain comparable results among systems, towards the construction of a carbon flux inventory at larger (spatial and temporal) scales. This effort would contribute to understand the role and responses of tropical aquatic systems and regions (particularly as carbon sources or sinks) facing Global Change.

Keywords : Metabolism; oxygen; biogeochemistry; heterotrophic; production; respiration; Global Change; upscaling.

        · abstract in Spanish     · text in English | Spanish     · English ( pdf ) | Spanish ( pdf )