Soil Density Characterization in Management Zones Based on Apparent Soil Electrical Conductivity in Two Field Systems: Rainfeed and Center-Pivot Irrigation

Author:

Bottega Eduardo Leonel1,Marin Cristielle König1,Oliveira Zanandra Boff de1,Lamb Christiano de Carvalho2,Amado Telmo Jorge Carneiro3

Affiliation:

1. Federal University of Santa Maria (UFSM), Cachoeira do Sul 96503-205, RS, Brazil

2. Nossa Senhora da Conceição State Technical School, Tres Vendas, Cachoeira do Sul 96511-000, RS, Brazil

3. Rural Sciences Center (CCR), Federal University of Santa Maria (UFSM), Santa Maria 97105-900, RS, Brazil

Abstract

Understanding the spatial variability of factors that influence crop yield is essential to apply site-specific management. The present study aimed to evaluate apparent soil electrical conductivity (ECa) in two fields (A = rainfeed; B = central-pivot irrigation), based on delimited management zones (MZs). In each MZ, the soil density (Sd) was characterized at two soil depths, and whether the delimitation of MZs, based on the spatial variability of ECa, was able to identify regions of the field with different Sd was assessed. In general, MZs with the highest mean value of ECa also presented the highest mean values of Sd. The highest Sd values were observed in the 0.1–0.2 m layer, regardless of the studied area. Regardless of soil texture, the proposed ECa was able to detect in-field differences in Sd. The delimitation of MZs, based on the spatial variability of ECa mapping, was able to differentiate the mean values of Sd between MZ 1 (1.53 g cm−3) and MZ 2 (1.67 g cm−3) in field A, in the 0.1–0.2 m layer. A statistical difference was observed for the mean values of Sd, in MZ 1, at layer 0.1–0.2 m, when comparing the two fields: A (1.53 g cm−3) and B (1.64 g cm−3). We suggest that further studies should be carried out to confirm the efficiency of ECa in detecting the soil bulk density at different soil depths.

Funder

Nacional de Desenvolvimento Científico e Tecnológico (CNPq) for granting an undergraduate research scholarship through Public Notice

Institutional Scientific Initiation Scholarship Program (PIBIC and PIBIC Affirmative Actions) CNPq/UFSM

Publisher

MDPI AG

Subject

Engineering (miscellaneous),Horticulture,Food Science,Agronomy and Crop Science

Reference39 articles.

1. CONAB—Companhia Nacional De Abastecimento (2021). Acompanhamento da Safra Brasileira de Grãos, v.8—Safra 2020/21, nº 8—Oitavo Levantamento, CONAB.

2. Dependência espacial da fertilidade do solo sob plantio direto e suas relações com a produtividade da soja;Londero;Cad. Cien. Agrárias,2020

3. A importância do sistema de plantio direto na palha para reestruturação do solo e restauração da matéria orgânica;Kriebel;Res. Soc. Dev.,2020

4. Dependência e correlação espacial dos atributos de solo em função do arranjo amostral;Gelain;Tecno-Lógica,2021

5. Variabilidade espacial e qualidade na semeadura de soja;Cintra;Braz. Appl. Sci. Rev.,2020

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