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Título: Silicate agrominerals mitigate greenhouse gas emissions and enhance soil carbon in tropical pasture of the Brazilian Cerrado.
Autor: SANTOS, M. V. A. dos
OLIVEIRA, A. D. de
FIGUEIREDO, C. C. de
SOARES, J. P. G.
MARCHI, G.
SANTANA, T. X.
ANDRADE, A. C. M. de
MUNIZ, D. H. de F.
LUSTOSA FILHO, J. F.
CARVALHO, A. M. de
SA, M. A. C. de
MARTINS, E. de S.
Afiliación: MARCOS VINÍCIUS ARAUJO DOS SANTOS; ALEXSANDRA DUARTE DE OLIVEIRA, CPAC; CÍCERO CÉLIO DE FIGUEIREDO, UNIVERSIDADE DE BRASÍLIA; JOAO PAULO GUIMARAES SOARES, CPAC; GIULIANO MARCHI, CPAC; THAYNÁ XAVIER SANTANA, UNIVERSIDADE DE BRASÍLIA; ALTAIR CÉSAR MOREIRA DE ANDRADE; DAPHNE HELOISA DE FREITAS MUNIZ, CPAC; JOSÉ FERREIRA LUSTOSA FILHO, UNIVERSIDADE DE BRASÍLIA; ARMINDA MOREIRA DE CARVALHO, CPAC; MARCOS AURELIO CAROLINO DE SA, CPAC; EDER DE SOUZA MARTINS, CPAC.
Año: 2026
Referencia: Agronomy, v. 16, n. 2, p. 138, 2026.
Descripción: The mitigation of greenhouse gas emissions in livestock farming is one of the main challenges for agriculture in the Cerrado biome. Among promising practices, the use of soil remineralizers (REM) stands out as a sustainable and complementary alternative to conventional fertilizers. This study evaluated the effects of applying REM derived from basalt and biotite schist on emissions of N2O, CO2 and CH4, the global warming potential (GWP), as well as on soil carbon and nitrogen in Urochloa brizantha cv. BRS Paiaguás pasture. The experiment was conducted in randomized blocks with five treatments (control, KCl, basalt 8.33 Mg ha−1, basalt 40 Mg ha−1, and biotite schist 151 Mg ha−1). Results indicated that KCl and high-dose basalt (40 Mg ha−1) promoted greater accumulated N2O emissions and higher GWP values. In contrast, biotite schist reduced N2O emissions and showed the lowest GWP (81.67 kg CO2 eq. ha−1), while basalt at a moderate dose (8.33 Mg ha−1) increased soil C and N stocks. It is concluded that soil remineralizers, especially those derived from biotite schist, represent viable alternatives to reduce environmental impacts and promote the sustainability of tropical agricultural systems in Cerrado biome.
Thesagro: Efeito Estufa
NAL Thesaurus: Silicates
Greenhouse gas emissions
Beta-glucosidase
Arylsulfatase
Palabras clave: Savanas tropicais
Agricultura de baixo carbono
Emissão de gases de efeito estufa
ISSN: 2073-4395
DOI: https://doi.org/10.3390/agronomy16020138
Tipo de Material: Artigo de periódico
Acceso: openAccess
Aparece en las colecciones:Artigo em periódico indexado (CPAC)

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