CO2 and CH4 fluxes from monomictic volcanic lakes in a remote oceanic island: Flores island case study (Azores)

Abstract Flores Island, situated in the Azores archipelago, is a volcanic island formed by overlapping stratovolcanoes. The island hosts several volcanic freshwater bodies, some of them present poor ecological state. Flores Island maar craters lakes were studied to assess greenhouse gas emissions, through investigation of temporal and spatial variations of the diffuse CO 2 (ΦCO 2 ) and CH 4 (ΦCH 4 ) flux. Comprida, Negra, and Funda lakes were the selected study cases, with four field surveys combining geochemical and microbial analyses. Water composition varies between Na-HCO 3 , Na-HCO 3 -Cl, and Na-Cl-HCO 3 , showing low variation across surveys. The total CO 2 flux (calculated by Graphical Statistical Approach) shows higher emissions at Funda Lake (1.06 ± 0.26 and 1.02 ± 0.36 t d − 1 ), as the other lakes present values as high as 0.39 ± 0.08 t d − 1 . All of them showed lower ΦCO 2 during the second survey (August), as high temperatures enhance photosynthetic activity. ΦCH 4 values range between 0.64 and 6.28 kg d − 1 , with higher emissions at Funda Lake, although bellow worldwide lake averages. ΦCO 2 values were 2 to 3 orders of magnitude higher than ΦCH 4 . Microbial communities and their diversity varied between lakes, with Negra and Funda lakes depicting stronger seasonal shifts. During winter mixing of the water column appears to favor anaerobic processes, enhancing microbial respiration and potential CO 2 release from sediments, and enrichment in syntrophic taxa and potential CH 4 oxidizers (e.g. Syntrophaceae , Methylomonadaceae ). Results indicate that ΦCO 2 and ΦCH 4 emissions are mainly controlled by biogeochemical processes, and show that the trophic state of a lake ecosystem can enhance the greenhouse gases emissions.

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Journal
Environmental Earth Sciences
Published
2026-10-06
DOI
https://doi.org/10.1007/s12665-026-13139-1
Primary Topic
Atmospheric and Environmental Gas Dynamics
Type
article
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article

CO2 and CH4 fluxes from monomictic volcanic lakes in a remote oceanic island: Flores island case study (Azores)

José Virgílio Cruz, Adriano Pimentel, Pedro M. Raposeiro, Duarte Toubarro et al.
Environmental Earth Sciences
Atmospheric and Environmental Gas Dynamics
article

CO2 and CH4 fluxes from monomictic volcanic lakes in a remote oceanic island: Flores island case study (Azores)

José Virgílio Cruz, Adriano Pimentel, Pedro M. Raposeiro, Duarte Toubarro, César Andrade, Letícia Ferreira, Jorge Frías, Franco Tassi, Diogo Braga
article en

Abstract

Abstract Flores Island, situated in the Azores archipelago, is a volcanic island formed by overlapping stratovolcanoes. The island hosts several volcanic freshwater bodies, some of them present poor ecological state. Flores Island maar craters lakes were studied to assess greenhouse gas emissions, through investigation of temporal and spatial variations of the diffuse CO 2 (ΦCO 2 ) and CH 4 (ΦCH 4 ) flux. Comprida, Negra, and Funda lakes were the selected study cases, with four field surveys combining geochemical and microbial analyses. Water composition varies between Na-HCO 3 , Na-HCO 3 -Cl, and Na-Cl-HCO 3 , showing low variation across surveys. The total CO 2 flux (calculated by Graphical Statistical Approach) shows higher emissions at Funda Lake (1.06 ± 0.26 and 1.02 ± 0.36 t d − 1 ), as the other lakes present values as high as 0.39 ± 0.08 t d − 1 . All of them showed lower ΦCO 2 during the second survey (August), as high temperatures enhance photosynthetic activity. ΦCH 4 values range between 0.64 and 6.28 kg d − 1 , with higher emissions at Funda Lake, although bellow worldwide lake averages. ΦCO 2 values were 2 to 3 orders of magnitude higher than ΦCH 4 . Microbial communities and their diversity varied between lakes, with Negra and Funda lakes depicting stronger seasonal shifts. During winter mixing of the water column appears to favor anaerobic processes, enhancing microbial respiration and potential CO 2 release from sediments, and enrichment in syntrophic taxa and potential CH 4 oxidizers (e.g. Syntrophaceae , Methylomonadaceae ). Results indicate that ΦCO 2 and ΦCH 4 emissions are mainly controlled by biogeochemical processes, and show that the trophic state of a lake ecosystem can enhance the greenhouse gases emissions.

Environmental Earth SciencesVol. 85(16)
Universidade dos Açores (PT), UNESCO (FR), Institute of Geosciences and Earth Resources (IT), National Research Council (IT), Instituto de Investigação em Vulcanologia e Avaliação de Riscos, Centro de Biotecnologia dos Açores (PT), University of Florence (IT)
Openalex Percentile: Top 15%
Atmospheric and Environmental Gas Dynamics
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