How Does Irrigation with Wastewater Affect the Physical Soil Properties and the Root Growth of Sugarcane under Subsurface Drip?

Author:

Lopes Sobrinho Oswaldo Palma1ORCID,Santos Leonardo Nazário Silva dos1,Teixeira Marconi Batista1,Soares Frederico Antônio Loureiro1,Gonçalves Ivo Zution2,Barbosa Eduardo Augusto Agnellos3,Nazário Aline Azevedo4,Matsura Edson Eiji5,Vitorino Luciana Cristina6ORCID,Reis Mateus Neri Oliveira6,Bessa Layara Alexandre6

Affiliation:

1. Laboratório de Hidráulica e Irrigação, Instituto Federal de Educação, Ciência e Tecnologia Goiano, Campus Rio Verde, Rodovia Sul Goiana, Km 01, Rio Verde 75901-970, GO, Brazil

2. Daugherty Water for Food Global Institute, University of Nebraska, Lincoln, NE 68588, USA

3. Universidade Estadual de Ponta Grossa, Ponta Grossa 84030-900, PR, Brazil

4. Instituto Adventista de Ensino, Campus Engenheiro Coelho, Engenheiro Coelho 13165-000, SP, Brazil

5. Faculdade de Engenharia Agrícola (FEAGRI), Universidade Estadual de Campinas (UNICAMP), Campinas 13083-862, SP, Brazil

6. Laboratório de Metabolismo e Genética da Biodiversidade, Instituto Federal de Educação, Ciência e Tecnologia Goiano, Campus Rio Verde, Rio Verde 75901-970, GO, Brazil

Abstract

Studies on the development of the root system can provide important information about responses to different management strategies, such as the use of lower quality water, also evaluating the interaction between plants and the physical properties of the soil. This study tested the hypothesis that irrigation with treated sewage effluent (TSE) supplies the water needs of sugarcane plants, increasing root growth and improving the physical properties of the soil. We evaluated the effects of subsurface dripping with TSE or surface reservoir water (SRW) on the root development of first ratoon cane (Saccharum officinarum L.) and the physical properties of dystrophic red latosol. Irrigation treatments were applied at 20 and 40 cm and soil properties were evaluated at soil depth layers of 0–20, 20–40, 40–60, and 60–80 cm. We verified that under irrigation with TSE and SRW, shallower soil layers present better porosity, soil aggregation, and aggregate stability conditions, parameters that improve the root system development and plant growth. On the other hand, deeper soil layers have lower macroporosity and higher total clay volume, indicating the possibility of compaction and greater limitations for sugarcane root growth. These results are important for understanding soil quality and provide significant information for agricultural management and for the implementation of sustainable soil conservation practices. This study shows the efficiency of TSE as an alternative water source for sugarcane crops.

Publisher

MDPI AG

Reference131 articles.

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