Soil phosphorus fate and its lability after a long-term phosphorus fertilizer strategy in Brazilian Oxisol
We aimed to assess the changes in soil phosphorus (P) pools and legacy P after long-term phosphate fertilization. A field study was conducted for 12 years with cotton and soybean crop production in a yearly rotation. Treatments included initial P buildup with five rates (0, 50, 100, 150 and 200 kg h...
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Published in | Archiv für Acker- und Pflanzenbau und Bodenkunde Vol. 67; no. 12; pp. 1694 - 1707 |
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Main Authors | , , , , , , |
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Language | English |
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Abstract | We aimed to assess the changes in soil phosphorus (P) pools and legacy P after long-term phosphate fertilization. A field study was conducted for 12 years with cotton and soybean crop production in a yearly rotation. Treatments included initial P buildup with five rates (0, 50, 100, 150 and 200 kg ha
−1
of P
2
O
5
), and annual band-applied P at five rates (0, 30, 60, 90 and 120 kg ha
−1
of P
2
O
5
). Soil was sampled at 0-20 and 20-40 cm and analyzed for soil P pools via a sequential P fractionation scheme. Higher annual P rates (60, 90 and 120 kg ha
−1
of P
2
O
5
) improved significantly the residual soil P accumulation in labile fractions (+34, +53 and +67 mg kg
−1
of P, respectively), while no effect of initial P buildup was detected. The cumulative yield increased with annually banded fertilizer rates, with a peak under 91 kg ha
−1
of P
2
O
5
, representing a productivity of 4.11 Mg ha
−1
per year across the 12-year period. Thus, P accumulation from annual rates in labile fractions (13%, ~110 mg kg
−1
of P) represents promptly available P pool in the soil and may be considered for P fertilizer recommendation programs in crop production systems. |
---|---|
AbstractList | We aimed to assess the changes in soil phosphorus (P) pools and legacy P after long-term phosphate fertilization. A field study was conducted for 12 years with cotton and soybean crop production in a yearly rotation. Treatments included initial P buildup with five rates (0, 50, 100, 150 and 200 kg ha−1 of P2O5), and annual band-applied P at five rates (0, 30, 60, 90 and 120 kg ha−1 of P2O5). Soil was sampled at 0–20 and 20–40 cm and analyzed for soil P pools via a sequential P fractionation scheme. Higher annual P rates (60, 90 and 120 kg ha−1 of P2O5) improved significantly the residual soil P accumulation in labile fractions (+34, +53 and +67 mg kg−1 of P, respectively), while no effect of initial P buildup was detected. The cumulative yield increased with annually banded fertilizer rates, with a peak under 91 kg ha−1 of P2O5, representing a productivity of 4.11 Mg ha−1 per year across the 12-year period. Thus, P accumulation from annual rates in labile fractions (13%, ~110 mg kg−1 of P) represents promptly available P pool in the soil and may be considered for P fertilizer recommendation programs in crop production systems. We aimed to assess the changes in soil phosphorus (P) pools and legacy P after long-term phosphate fertilization. A field study was conducted for 12 years with cotton and soybean crop production in a yearly rotation. Treatments included initial P buildup with five rates (0, 50, 100, 150 and 200 kg ha −1 of P 2 O 5 ), and annual band-applied P at five rates (0, 30, 60, 90 and 120 kg ha −1 of P 2 O 5 ). Soil was sampled at 0-20 and 20-40 cm and analyzed for soil P pools via a sequential P fractionation scheme. Higher annual P rates (60, 90 and 120 kg ha −1 of P 2 O 5 ) improved significantly the residual soil P accumulation in labile fractions (+34, +53 and +67 mg kg −1 of P, respectively), while no effect of initial P buildup was detected. The cumulative yield increased with annually banded fertilizer rates, with a peak under 91 kg ha −1 of P 2 O 5 , representing a productivity of 4.11 Mg ha −1 per year across the 12-year period. Thus, P accumulation from annual rates in labile fractions (13%, ~110 mg kg −1 of P) represents promptly available P pool in the soil and may be considered for P fertilizer recommendation programs in crop production systems. |
Author | Kappes, Claudinei Pavinato, Paulo Sergio Ono, Fábio Benedito Rodrigues, Marcos Coelho, Marta Jordana Arruda Ruiz-Diaz, Dorivar Zancanaro, Leandro |
Author_xml | – sequence: 1 givenname: Marta Jordana Arruda surname: Coelho fullname: Coelho, Marta Jordana Arruda organization: Kansas State University – sequence: 2 givenname: Dorivar orcidid: 0000-0002-2922-8442 surname: Ruiz-Diaz fullname: Ruiz-Diaz, Dorivar organization: Kansas State University – sequence: 3 givenname: Marcos surname: Rodrigues fullname: Rodrigues, Marcos organization: "Luiz De Queiroz"College of Agriculture, University of São Paulo, ESALQ/USP – sequence: 4 givenname: Fábio Benedito surname: Ono fullname: Ono, Fábio Benedito organization: Fundação MT - Fundação de Apoio à Pesquisa Agropecuária de Mato Grosso – sequence: 5 givenname: Claudinei surname: Kappes fullname: Kappes, Claudinei organization: Fundação MT - Fundação de Apoio à Pesquisa Agropecuária de Mato Grosso – sequence: 6 givenname: Leandro surname: Zancanaro fullname: Zancanaro, Leandro organization: Fundação MT - Fundação de Apoio à Pesquisa Agropecuária de Mato Grosso – sequence: 7 givenname: Paulo Sergio orcidid: 0000-0003-3244-2666 surname: Pavinato fullname: Pavinato, Paulo Sergio email: pavinato@usp.br organization: "Luiz De Queiroz"College of Agriculture, University of São Paulo, ESALQ/USP |
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Snippet | We aimed to assess the changes in soil phosphorus (P) pools and legacy P after long-term phosphate fertilization. A field study was conducted for 12 years with... |
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SubjectTerms | Accumulation annual P fertilizer Cotton Crop production Crop production systems Fertilization Fertilizers Fractionation Lability legacy P P buildup P fractionation P use efficiency Phosphorus Phosphorus pentoxide Phosphorus rates Pools Residual soils Soil analysis Soybeans |
Title | Soil phosphorus fate and its lability after a long-term phosphorus fertilizer strategy in Brazilian Oxisol |
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