Soil physical-chemical attributes are influenced by the type of management of the grassland
DOI:
https://doi.org/10.33448/rsd-v11i10.32909Keywords:
Overseeding; Mowing; Fire; Natural grassland.Abstract
The objective of the present work was to evaluate the influence of different pasture management strategies in a grassland on the physicochemical characteristics of the soil. For that, a field experiment was carried out, testing overseeding, mowing, use of fire and absence of management in a randomized block design with four replications. A higher level of soil compaction was recorded in the treatments with fire and mowing compared to the absence of management and overseeding. All treatments increased soil organic matter contents, with the greatest variation occurring in the mowing and the smallest in the fire. The H+Al contents increased in all treatments with the greatest variation occurring in the absence of management and the smallest in the mowing and fire. Potassium content decreased only in overseeding and increased more significantly in fire. Phosphorus content increased in overseeding and more significantly in fire. Base saturation decreased in all treatments, more significantly in overseeding and in the absence of management. The results show changes in important parameters for the agricultural use of grassland soil, suggesting that, in general, the use of overseeding and mowing practices present a more favorable change potential than the absence of management or use of fire.
References
Bautista Cruz, A. et al. (2004). La calidad del suelo y sus indicadores. Ecosistemas, 13 (2), 90–97.
Bécel, C.; Vercambre, G.; Pagès, L. (2012). Soil penetration resistance, a suitable soil property to account for variations in root elongation and branching. Plant and Soil, 353 (1–2), 169–180.
Bertol, I. et al. (2011). Erosão hídrica em campo nativo sob diversos manejos: perdas de água e solo e de fósforo, potássio e amônio na água de enxurrada. Revista Brasileira de Ciência do Solo, 35 (4), 1421–1430.
Boldo, E. L. et al. (2006). O uso do fogo como prática agropastoril na microrregião homogênea dos campos de cima da serra: análise da situação atual e busca de um modelo sustentável. Revista Brasileira de Agroecologia, 1 (1), 875–878.
Caldwell, T. G. et al. (2002). Forest Floor Carbon and Nitrogen Losses Due to Prescription Fire. Soil Science Society of America Journal, 66 (1), 262–267.
Campos, B. C. et al. (1995). Estabilidade estrutural de um Latossolo Vermelho-Escuro distrófico após sete anos de rotação de culturas e sistemas de manejo do solo. Revista Brasileira de Ciência do Solo, 19, 121–126.
Carter, M. C.; Darwin Foster, C. (2004). Prescribed burning and productivity in southern pine forests: a review. Forest Ecology and Management, 191 (1–3), 93–109.
Certini, G. (2005). Effects of fire on properties of forest soils: a review. Oecologia, 143 (1), 1–10.
Córdova, U. A. et al. (2012). Validação da tecnologia de melhoramento de pastagens naturais no Planalto Sul de Santa Catarina. Revista de Ciências Agroveterinárias, 11 (1), 54–62.
Correa, J. et al. (2019). Soil compaction and the architectural plasticity of root systems. Journal of Experimental Botany, 70 (21), 6019–6034.
Coutinho, L. M. (1992). Cerrado e a ecologia do fogo. Ciência Hoje, 130–137.
Dick, D. P. et al. (2008). Impacto da queima nos atributos químicos e na composição química da matéria orgânica do solo e na vegetação. Pesquisa Agropecuária Brasileira, 43 (5), 633–640.
Embrapa. (2004). Solos do estado de Santa Catarina. In: Boletim de Pesquisa e Desenvolvimento. Rio de Janeiro: Embrapa Solos. 721 p.
Epagri. (2022). Banco de dados de variáveis ambientais de Santa Catarina. Florianópolis: Epagri.
Fachin, P. A.; Costa, Y. T.; Thomaz, E. L. (2021). Evolution of the soil chemical properties in slash-and-burn agriculture along several years of fallow. Science of The Total Environment, 764, e142823.
Fernández, I.; Cabaneiro, A.; Carballas, T. (1997). Organic matter changes immediately after a wildfire in an atlantic forest soil and comparison with laboratory soil heating. Soil Biology and Biochemistry, 29 (1), 1–11.
Heringer, I. et al. (2002). Características de um latossolo vermelho sob pastagem natural sujeita à ação prolongada do fogo e de práticas alternativas de manejo. Ciência Rural, 32 (2), 309–314.
Knicker, H. (2007). How does fire affect the nature and stability of soil organic nitrogen and carbon? A review. Biogeochemistry, 85 (1), 91–118.
Merotto Jr., A.; Mundstock, C. M. (1999). Crescimento de raízes de trigo afetado pela resistência mecânica do solo. Revista Brasileira de Ciência do Solo, 23 (2), 197–202.
Modolo, A. J. et al. (2011). Efeito da compactação do solo sobre a semente no desenvolvimento da cultura do feijão. Acta Scientiarum. Agronomy, 33 (1), 89–95.
Monegat, C. Plantas de cobertura de solo: características e manejo em pequenas propriedades. Chapecó: Edição do autor, 1991. 336 p.
Overbeck, G. et al. (2007). Brazil’s neglected biome: The South Brazilian Campos. Perspectives in Plant Ecology, Evolution and Systematics, 9 (2), 101–116.
Pandolfo, C. et al. (2002). Atlas climatológico do Estado de Santa Catarina. Florianópolis: Epagri, 2002. CD-Rom.
Pillar, V. P. (2009). Campos sulinos: conservação e uso sustentável da biodiversidade. Brasília: Ministério do Meio Ambiente - Brasil. 403 p.
Pillar, V. P.; Vélez, E. (2010). Extinção dos Campos Sulinos em Unidades de Conservação: um Fenômeno Natural ou um Problema ético? Natureza & Conservação, 8 (1), 84–86.
Rheinheimer, D. S. et al. (2003). Modificações nos atributos químicos de solo sob campo nativo submetido à queima. Ciência Rural, 33 (1), 49–55.
Schaefer, C. E. R. et al. (2002). Perdas de solo, nutrientes, matéria orgânica e efeitos microestruturais em Argissolo Vermelho-Amarelo sob chuva simulada. Pesquisa Agropecuária Brasileira, 37 (5), 669–678.
Silva Neto, E. C. et al. (2019). Temporal evaluation of soil chemical attributes after slash-and-burn agriculture in the Western Brazilian Amazon. Acta Scientiarum. Agronomy, 41 (1), e42609.
Sociedade Brasileira de Ciência do Solo. (2004). Manual de adubação e calagem para os estados do Rio Grande do Sul e Santa Catarina. Porto Alegre: Sociedade Brasileira de Ciência do Solo. 400 p.
Spera, S. T. et al. (2007). Efeito de sistemas de manejo em atributos físicos do solo. Pesquisa Agropecuária Gaúcha, 13 (1–2), 61–68.
Stolf, R. (1991). Teoria e teste experimental de fórmulas de transformação dos dados de penetrômetro de impacto em resistência do solo. Revista Brasileira de Ciência do Solo, 15 (2), 229–235.
Storck, L. et al. (2011). Experimentação vegetal. 3rd. ed. Santa Maria: Editora UFSM. 200 p.
Tarrant, R. F. (1954). Effect of Slash Burning on Soil pH. PNW Old Series Research Notes, 102, 1–5.
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