4.0 Article

Water erosion and soil water infiltration in different stages of corn development and tillage systems

Journal

REVISTA BRASILEIRA DE ENGENHARIA AGRICOLA E AMBIENTAL
Volume 19, Issue 11, Pages 1072-1078

Publisher

UNIV FEDERAL CAMPINA GRANDE
DOI: 10.1590/1807-1929/agriambi.v19n11p1072-1078

Keywords

soil loss; infiltration rate; soil tillage; rainfall simulator

Funding

  1. Federal Rural University of Rio de Janeiro (UFRRJ)
  2. Coordination for the Improvement of Higher Education Personnel (CAPES)
  3. Research Support Foundation of Rio de Janeiro (FAPERJ)

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This study evaluated soil and water losses, soil water infiltration and infiltration rate models in soil tillage systems and corn (Zea mays, L.) development stages under simulated rainfall. The treatments were: cultivation along contour lines, cultivation down the slope and exposed soil. Soil losses and infiltration in each treatment were quantified for rains applied using a portable simulator, at 0, 30, 60 and 75 days after planting. Infiltration rates were estimated using the models of Kostiakov-Lewis, Horton and Philip. Based on the obtained results, the combination of effects between soil tillage system and corn development stages reduces soil and water losses. The contour tillage system promoted improvements in soil physical properties, favoring the reduction of erosion in 59.7% (water loss) and 86.6% (soil loss) at 75 days after planting, and the increase in the stable infiltration rate in 223.3%, compared with the exposed soil. Associated to soil cover, contour cultivation reduces soil and water losses, and the former is more influenced by management. Horton model is the most adequate to represent soil water infiltration rate under the evaluated conditions.

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