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Estimated carbon dioxide exchange for three native species in an ecological reserve of Mexico City

Authors :
Oscar Peralta
Erika Sánchez-León
Amparo Martínez-Arroyo
María de la Luz Espinosa
Telma Castro
Harry Alvarez-Ospina
Source :
Universidad Nacional Autónoma de México, UNAM, Redalyc-UNAM, Atmósfera (México) Num.3 Vol.29
Publication Year :
2016
Publisher :
Universidad Nacional Autónoma de México, 2016.

Abstract

Capture and emission of carbon dioxide of three species ( Buddleia cordata , Senecio praecox and Echeveria gibbiflora ) in the Reserva Ecologica del Pedregal de San Angel (Ecological Reserve of the Pedregal de San Angel), were estimated. CO 2 sampling was carried out in 2010 during the dry (February, March, April and November) and rainy seasons (July to October). On the dry season B. cordata and S. praecox captured 16.14 and 3.25 kg CO 2 , respectively, whereas E. gibbiflora emitted 45.76 kg CO 2 . In the rainy season the exchange of CO 2 was different for the three species. In the dry season, the photosynthetic rate was 22 pmol CO 2 m –2 s –1 for B. cordata, 27 pmolCO 2 m –2 s –1 for S. praecox and 29 pmolCO 2 m –2 s –1 for E. gibbiflora. In the rainy season they were 6, 5.25 and 3 pmol CO 2 m –2 s –1 , respectively. In addition, MODIS data were used to estimate the normalized difference vegetation index (NDVI), indicating that the intensity of greenery at the site increased during the rainy months. This paper explains the contribution of studied plants to the carbon cycle of an ecosystem located within an urban area, and the relationship of environmental variables such as temperature, density photosynthetic photon flux and relative humidity in the capture or emission of CO 2 . This work provides valuable information about the carbon cycle dynamics on urban ecosystems, which can be useful in future studies for climate change mitigation.

Details

Language :
English
Database :
OpenAIRE
Journal :
Universidad Nacional Autónoma de México, UNAM, Redalyc-UNAM, Atmósfera (México) Num.3 Vol.29
Accession number :
edsair.doi.dedup.....b48556ea824423333acf2a6ff25debfc