Water supply to lettuce by capillary rise of the water table

Brazil has significant potential for floodplain areas which are suitable for cultivation after the rainy season, with water supply from the water table. Short-cycle crops with shallow root systems are more suitable for these conditions. On this subject, the objective of this study was to determine...

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Bibliographic Details
Published in:Revista Brasileira de Engenharia de Biossistemas
Main Authors: Eliakim Martins Araújo, Raimundo Nonato Távora Costa, Kenya Gonçalves Nunes, Alexsandro Oliveira da Silva, Carlos Henrique Carvalho de Sousa, Efraim Martins Araújo
Format: Article
Language:English
Published: Universidade Estadual Paulista (UNESP) 2023-11-01
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Online Access:https://seer.tupa.unesp.br/index.php/BIOENG/article/view/1100
Description
Summary:Brazil has significant potential for floodplain areas which are suitable for cultivation after the rainy season, with water supply from the water table. Short-cycle crops with shallow root systems are more suitable for these conditions. On this subject, the objective of this study was to determine the responses of the lettuce crop to rising damp rates and water table depth levels. The variables of production, gas exchange, and SEW30 values (sum of excess water above 0.30 m depth) were analyzed. A physical model of seven drainage lysimeters was used; in six, the only water supply occurred by capillary rise from the water table (0.10; 0.15; 0.20; 0.25; 0.30 and 0.35 m depth) and, in the remaining lysimeter, irrigation was performed with no water table. The water table level maintained at 0.20 m from the soil surface was able to supply the water demanded by a sandy soil. The factor-product ratio indicates this depth as the most viable option in terms of crop response. Among the analyzed cultivars and under conditions of excess water in the soil, preference should be given to the establishment of the Gloriosa cultivar, for higher yields.
ISSN:1981-7061
2359-6724