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Environmental Soil Phosphorus Threshold under No-Tillage and Swine Manure Application
Bousfield, Sérgio Walace; Favaretto, Nerilde; Motta, Antônio Carlos Vargas; Barth, Gabriel; Celante, Luana Salete; Cherobim, Verediana Fernanda.
  • Bousfield, Sérgio Walace; Federal University of Paraná. Department of Soil Science and Agricultural Engineering. Curitiba. BR
  • Favaretto, Nerilde; Federal University of Paraná. Department of Soil Science and Agricultural Engineering. Curitiba. BR
  • Motta, Antônio Carlos Vargas; Federal University of Paraná. Department of Soil Science and Agricultural Engineering. Curitiba. BR
  • Barth, Gabriel; Foundation for Agricultural Assistance and Technical Divulgation. Curitiba. BR
  • Celante, Luana Salete; Federal University of Paraná. Department of Soil Science and Agricultural Engineering. Curitiba. BR
  • Cherobim, Verediana Fernanda; Federal University of Paraná. Department of Soil Science and Agricultural Engineering. Curitiba. BR
Braz. arch. biol. technol ; 63(spe): e20190536, 2020. tab, graf
Article in English | LILACS | ID: biblio-1142500
ABSTRACT
Abstract Swine manure is applied in agricultural fields as a source of nutrients for plant growth, however, excessive application over the years can promote soil phosphorus (P) accumulation. The objective of this study was to establish the environmental soil P threshold based on the degree of P saturation (DPS), as well, to evaluate the soil P storage capacity. The experiment was carried out in an Oxisol (sandy clay loam texture), under no-tillage and crop rotation. Treatments consisted of four annual doses of liquid swine manure (0, 100, 200, and 300 m3 ha-1 year-1), and three doses of mineral fertilizer (0, 50, and 100% of the crop nutrients requirement), in a randomized block with split-plot design (four replications). Soil P content was analyzed by PMehlich-1, PCaCl2, water-soluble P (WSP) and total P. The application of swine manure and mineral fertilizer increased soil P contents mainly at 0-10 cm depth. The DPS corresponding to the change point was 14.9% at depth 0-10 and 8.6% at depth 0-20 cm with WSP and 18.7% at 0-10 cm and 8.9% at 0-20 cm depth with PCaCl2. The lowest change point value was DPS 8.6% which corresponds to 43 mg kg-1 of PMehlich-1, so, in practical terms, we suggest this value as the environmental soil P threshold. The soil P storage capacity indicated negative values with the higher doses of swine manure and mineral fertilizer which increases the vulnerability of P loss by surface and subsurface hydrological transfer pathway.
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Full text: Available Index: LILACS (Americas) Main subject: Phosphorus / Soil / Fertilizers / Manure Limits: Animals Language: English Journal: Braz. arch. biol. technol Journal subject: Biology Year: 2020 Type: Article Affiliation country: Brazil Institution/Affiliation country: Federal University of Paraná/BR / Foundation for Agricultural Assistance and Technical Divulgation/BR

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Full text: Available Index: LILACS (Americas) Main subject: Phosphorus / Soil / Fertilizers / Manure Limits: Animals Language: English Journal: Braz. arch. biol. technol Journal subject: Biology Year: 2020 Type: Article Affiliation country: Brazil Institution/Affiliation country: Federal University of Paraná/BR / Foundation for Agricultural Assistance and Technical Divulgation/BR