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Nitrous oxide and methane emissions from a Ferralsol as affected by loblolly pine cultivation time in subtropical Brazil

  • Mariana Alves Ibarr
  • , Josiléia Acordi Zanatta
  • , Jeferson Dieckow
  • , Ricardo Henrique Ribeiro
  • , Janquieli Schirmann
  • , Marcos Fernando Glück Rachwal
  • , James Stahl
  • , Priscila Luzia Simon

Producción científica: Articlerevisión exhaustiva

Resumen

We hypothesized that the age of loblolly pine stands influences soil methane (CH4) and nitrous oxide (N2O) emissions. This is a relevant topic to be studied in subtropical Brazil, where the pine plantation area is increasing considerably. We evaluated N2O and CH4 emissions for two years in a Ferralsol under loblolly pine (Pinus taeda L.) stands of 1, 9 and 18 year-olds and a native forest (NF). We calculated the net CO2eq emission by considering the N2O and CH4 emissions from soil and the carbon (C) accumulation as litter in the forest floor. The soil N2O emission reduced gradually over the loblolly pine cultivation years, whereas CH4 uptake rates showed no clear pattern. Soil N2O emission showed a positive relationship with soil temperature in NF, and with soil ammonium and nitrate intensities in the pine stands. Soil CH4 uptake was inversely related to water-filled pore space in the pine stands, but this relationship was not observed in NF. The soil CH4 uptake rate was 4.6 times higher (p < 0.10) in NF than the average uptake in loblolly pine stands. On the other hand, soil N2O emissions in 9 and 18-year-old stands were similar (p > 0.10) to those in NF (1.3 kg N ha−1 yr−1). Our results suggest that cultivation with loblolly pine for 18 years can reduce soil N2O emission, and the uptake of CH4 in this system offsets 17 % of N2O emissions. Furthermore, the C accumulation as litter in the forest floor of the mature pine stands (9- and 18-year-old) generated a net emission of −1.6 Mg CO2eq ha−1 yr−1, showing to be an expressive offsetting mechanism. Therefore, we conclude that aged loblolly forests can reach N2O emissions levels comparable to those of NF, and the C sequestration in these forests floor can significantly contribute to offset N2O emissions and act as sink for net atmospheric CO2eq.

Idioma originalEnglish
Número de artículo166471
PublicaciónScience of the Total Environment
Volumen903
DOI
EstadoPublished - dic 10 2023

Nota bibliográfica

Publisher Copyright:
© 2023 Elsevier B.V.

Financiación

We thank CNPq ( National Council for Scientific and Technological Development ) for financial support (Edital Universal), Embrapa (Projeto Saltus) and scholarships; ( CAPES - Coordination for the Improvement of Higher Education Personnel ) for financial support; W.A. Holler for technical support for the map production.

Financiadores
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior
Empresa Brasileira de Pesquisa Agropecuária
Conselho Nacional de Desenvolvimento Científico e Tecnológico

    ASJC Scopus subject areas

    • Environmental Engineering
    • Environmental Chemistry
    • Waste Management and Disposal
    • Pollution

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