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Relationship Among Crop Systems, Soil Cover, and Water Erosion on a Typic Hapludox

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Relationship Among Crop Systems, Soil Cover, and Water Erosion on a Typic Hapludox. / Lima, Pedro; Leandro Naves Silva, Marx; Quinton, John Norman et al.
In: Revista Brasileira de Ciência do Solo, Vol. 42, e0170081, 31.03.2018.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Lima, P, Leandro Naves Silva, M, Quinton, JN, Gomes Batista, PV, Candido, BM & Curi, N 2018, 'Relationship Among Crop Systems, Soil Cover, and Water Erosion on a Typic Hapludox', Revista Brasileira de Ciência do Solo, vol. 42, e0170081. https://doi.org/10.1590/18069657rbcs20170081

APA

Lima, P., Leandro Naves Silva, M., Quinton, J. N., Gomes Batista, P. V., Candido, B. M., & Curi, N. (2018). Relationship Among Crop Systems, Soil Cover, and Water Erosion on a Typic Hapludox. Revista Brasileira de Ciência do Solo, 42, Article e0170081. https://doi.org/10.1590/18069657rbcs20170081

Vancouver

Lima P, Leandro Naves Silva M, Quinton JN, Gomes Batista PV, Candido BM, Curi N. Relationship Among Crop Systems, Soil Cover, and Water Erosion on a Typic Hapludox. Revista Brasileira de Ciência do Solo. 2018 Mar 31;42:e0170081. Epub 2018 Mar 8. doi: 10.1590/18069657rbcs20170081

Author

Lima, Pedro ; Leandro Naves Silva, Marx ; Quinton, John Norman et al. / Relationship Among Crop Systems, Soil Cover, and Water Erosion on a Typic Hapludox. In: Revista Brasileira de Ciência do Solo. 2018 ; Vol. 42.

Bibtex

@article{c85ff78a51b1467eb388ec420436a4b1,
title = "Relationship Among Crop Systems, Soil Cover, and Water Erosion on a Typic Hapludox",
abstract = "Several soil conservation practices are used to reduce water erosion and ensure sustainable agriculture. An effective crop management practice is intercropping, in which two or more crops with different architectures and vegetative cycles are grown simultaneously in the same area. We hypothesized that intercropping of corn and jack-bean increases soil cover and reduce soil erosion by water in comparison to monocropping. The objective of this study was to evaluate the effects of different crop systems on soil cover and on soil erosion by water. Soil and water losses from a Typic Hapludox were measured under the following systems: corn cultivation (CO), jack-bean cultivation (JB), intercropping of corn and jack-bean (IC), and bare soil (BS), as a reference for maximum erosion rates. For each crop system, erosion plots with dimensions of 12 × 4 m were set up in the field on a 0.12 m m-1 slope gradient. The experiment was carried out under natural rainfall, over three crop seasons (November to March) from 2011 to 2014. The soil cover index of the systems was monitored during crop growth, and rainfall erosivity for the crop seasons was calculated according to the EI30 index to interpret soil and water losses. A set of linear mixed models was fitted to relate soil losses to rainfall erosivity, crop systems, and soil cover. The average rainfall erosivity in the study area was 6,132 MJ mm ha-1 h-1 per crop season. The results indicate that water losses are directly related to erosivity and are less influenced by soil cover and cultivation systems than the soil losses. A linear maximum value of the soil cover index was achieved 70 days after sowing. Intercropping exhibited greater soil cover than single crops. Total soil losses from the three seasons display the trend: BS > CO > JB > IC. The best fitted model of the linear mixed models indicates that soil loss responses are strongly correlated with rainfall erosivity and soil cover, which nullified the influence of the crop systems in the model.",
keywords = "intercropping, soil conservation, Zea mays, Canavalia ensiformis, LINEAR MIXED MODELS",
author = "Pedro Lima and {Leandro Naves Silva}, Marx and Quinton, {John Norman} and {Gomes Batista}, {Pedro Velloso} and Candido, {Bernardo M} and Nilton Curi",
year = "2018",
month = mar,
day = "31",
doi = "10.1590/18069657rbcs20170081",
language = "English",
volume = "42",
journal = "Revista Brasileira de Ci{\^e}ncia do Solo",
issn = "0100-0683",
publisher = "scielo",

}

RIS

TY - JOUR

T1 - Relationship Among Crop Systems, Soil Cover, and Water Erosion on a Typic Hapludox

AU - Lima, Pedro

AU - Leandro Naves Silva, Marx

AU - Quinton, John Norman

AU - Gomes Batista, Pedro Velloso

AU - Candido, Bernardo M

AU - Curi, Nilton

PY - 2018/3/31

Y1 - 2018/3/31

N2 - Several soil conservation practices are used to reduce water erosion and ensure sustainable agriculture. An effective crop management practice is intercropping, in which two or more crops with different architectures and vegetative cycles are grown simultaneously in the same area. We hypothesized that intercropping of corn and jack-bean increases soil cover and reduce soil erosion by water in comparison to monocropping. The objective of this study was to evaluate the effects of different crop systems on soil cover and on soil erosion by water. Soil and water losses from a Typic Hapludox were measured under the following systems: corn cultivation (CO), jack-bean cultivation (JB), intercropping of corn and jack-bean (IC), and bare soil (BS), as a reference for maximum erosion rates. For each crop system, erosion plots with dimensions of 12 × 4 m were set up in the field on a 0.12 m m-1 slope gradient. The experiment was carried out under natural rainfall, over three crop seasons (November to March) from 2011 to 2014. The soil cover index of the systems was monitored during crop growth, and rainfall erosivity for the crop seasons was calculated according to the EI30 index to interpret soil and water losses. A set of linear mixed models was fitted to relate soil losses to rainfall erosivity, crop systems, and soil cover. The average rainfall erosivity in the study area was 6,132 MJ mm ha-1 h-1 per crop season. The results indicate that water losses are directly related to erosivity and are less influenced by soil cover and cultivation systems than the soil losses. A linear maximum value of the soil cover index was achieved 70 days after sowing. Intercropping exhibited greater soil cover than single crops. Total soil losses from the three seasons display the trend: BS > CO > JB > IC. The best fitted model of the linear mixed models indicates that soil loss responses are strongly correlated with rainfall erosivity and soil cover, which nullified the influence of the crop systems in the model.

AB - Several soil conservation practices are used to reduce water erosion and ensure sustainable agriculture. An effective crop management practice is intercropping, in which two or more crops with different architectures and vegetative cycles are grown simultaneously in the same area. We hypothesized that intercropping of corn and jack-bean increases soil cover and reduce soil erosion by water in comparison to monocropping. The objective of this study was to evaluate the effects of different crop systems on soil cover and on soil erosion by water. Soil and water losses from a Typic Hapludox were measured under the following systems: corn cultivation (CO), jack-bean cultivation (JB), intercropping of corn and jack-bean (IC), and bare soil (BS), as a reference for maximum erosion rates. For each crop system, erosion plots with dimensions of 12 × 4 m were set up in the field on a 0.12 m m-1 slope gradient. The experiment was carried out under natural rainfall, over three crop seasons (November to March) from 2011 to 2014. The soil cover index of the systems was monitored during crop growth, and rainfall erosivity for the crop seasons was calculated according to the EI30 index to interpret soil and water losses. A set of linear mixed models was fitted to relate soil losses to rainfall erosivity, crop systems, and soil cover. The average rainfall erosivity in the study area was 6,132 MJ mm ha-1 h-1 per crop season. The results indicate that water losses are directly related to erosivity and are less influenced by soil cover and cultivation systems than the soil losses. A linear maximum value of the soil cover index was achieved 70 days after sowing. Intercropping exhibited greater soil cover than single crops. Total soil losses from the three seasons display the trend: BS > CO > JB > IC. The best fitted model of the linear mixed models indicates that soil loss responses are strongly correlated with rainfall erosivity and soil cover, which nullified the influence of the crop systems in the model.

KW - intercropping

KW - soil conservation

KW - Zea mays

KW - Canavalia ensiformis

KW - LINEAR MIXED MODELS

U2 - 10.1590/18069657rbcs20170081

DO - 10.1590/18069657rbcs20170081

M3 - Journal article

VL - 42

JO - Revista Brasileira de Ciência do Solo

JF - Revista Brasileira de Ciência do Solo

SN - 0100-0683

M1 - e0170081

ER -