Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization

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Soil acidity is one of the main limiting factors for coffee production in Peruvian rainforests. The objective of this study is to predict the spatial acidity variability for recommending site-specific liming and phosphorus fertilization treatments. We analyzed thirty-six edaphoclimatic variables, ei...

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Detalles Bibliográficos
Autores: Quispe Matos, Kenyi Rolando, Hermoza Ayme, Nilton Alexander, Mejia Maita, Sharon Yahaira, Romero Chávez, Lorena Estefani, Ottos Díaz, Elvis, Arce, Andrés, Solórzano Acosta, Richard
Formato: artículo
Fecha de Publicación:2025
Institución:Instituto Nacional de Innovación Agraria
Repositorio:INIA-Institucional
Lenguaje:inglés
OAI Identifier:oai:repositorio.inia.gob.pe:20.500.12955/3106
Enlace del recurso:http://hdl.handle.net/20.500.12955/3106
https://doi.org/10.3390/agriculture15151632
Nivel de acceso:acceso abierto
Materia:Site-specific nutrient management
Acid soil remediation
Tropical agroecosystems
Soil pH variability
Geostatistical mapping
Manejo de nutrientes sitio-específico
Remediación de suelos ácidos
Agroecosistemas tropicales
Variabilidad del pH del suelo
Mapeo geoestadístico
https://purl.org/pe-repo/ocde/ford#4.01.04
Café; Coffee; Ph del suelo; Soil ph; Fósforo; Phosphorus; Encalado; Liming; Kriging; Krigeage; Soil sampling; Muestreo de suelo; Fertilizer application; Aplicación de abono
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dc.title.none.fl_str_mv Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization
title Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization
spellingShingle Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization
Quispe Matos, Kenyi Rolando
Site-specific nutrient management
Acid soil remediation
Tropical agroecosystems
Soil pH variability
Geostatistical mapping
Manejo de nutrientes sitio-específico
Remediación de suelos ácidos
Agroecosistemas tropicales
Variabilidad del pH del suelo
Mapeo geoestadístico
https://purl.org/pe-repo/ocde/ford#4.01.04
Café; Coffee; Ph del suelo; Soil ph; Fósforo; Phosphorus; Encalado; Liming; Kriging; Krigeage; Soil sampling; Muestreo de suelo; Fertilizer application; Aplicación de abono
title_short Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization
title_full Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization
title_fullStr Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization
title_full_unstemmed Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization
title_sort Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization
author Quispe Matos, Kenyi Rolando
author_facet Quispe Matos, Kenyi Rolando
Hermoza Ayme, Nilton Alexander
Mejia Maita, Sharon Yahaira
Romero Chávez, Lorena Estefani
Ottos Díaz, Elvis
Arce, Andrés
Solórzano Acosta, Richard
author_role author
author2 Hermoza Ayme, Nilton Alexander
Mejia Maita, Sharon Yahaira
Romero Chávez, Lorena Estefani
Ottos Díaz, Elvis
Arce, Andrés
Solórzano Acosta, Richard
author2_role author
author
author
author
author
author
dc.contributor.author.fl_str_mv Quispe Matos, Kenyi Rolando
Hermoza Ayme, Nilton Alexander
Mejia Maita, Sharon Yahaira
Romero Chávez, Lorena Estefani
Ottos Díaz, Elvis
Arce, Andrés
Solórzano Acosta, Richard
dc.subject.none.fl_str_mv Site-specific nutrient management
Acid soil remediation
Tropical agroecosystems
Soil pH variability
Geostatistical mapping
Manejo de nutrientes sitio-específico
Remediación de suelos ácidos
Agroecosistemas tropicales
Variabilidad del pH del suelo
Mapeo geoestadístico
topic Site-specific nutrient management
Acid soil remediation
Tropical agroecosystems
Soil pH variability
Geostatistical mapping
Manejo de nutrientes sitio-específico
Remediación de suelos ácidos
Agroecosistemas tropicales
Variabilidad del pH del suelo
Mapeo geoestadístico
https://purl.org/pe-repo/ocde/ford#4.01.04
Café; Coffee; Ph del suelo; Soil ph; Fósforo; Phosphorus; Encalado; Liming; Kriging; Krigeage; Soil sampling; Muestreo de suelo; Fertilizer application; Aplicación de abono
dc.subject.ocde.none.fl_str_mv https://purl.org/pe-repo/ocde/ford#4.01.04
dc.subject.agrovoc.none.fl_str_mv Café; Coffee; Ph del suelo; Soil ph; Fósforo; Phosphorus; Encalado; Liming; Kriging; Krigeage; Soil sampling; Muestreo de suelo; Fertilizer application; Aplicación de abono
description Soil acidity is one of the main limiting factors for coffee production in Peruvian rainforests. The objective of this study is to predict the spatial acidity variability for recommending site-specific liming and phosphorus fertilization treatments. We analyzed thirty-six edaphoclimatic variables, eight methods for estimating liming doses, and three geospatial variables from 552 soil samples in the Pichanaqui district of Peru. Multivariate statistics, nonparametric comparison, and geostatistical analysis with Ordinary Kriging interpolation were used for data analysis. The results showed low coffee yields (0.70 ± 0.16 t ha⁻¹) due to soil acidification. The interquartile ranges (IQR) were found to be 3.80–5.10 for pH, 0.21–0.87 cmol Kg⁻¹ for Al⁺³, and 2.55–6.53 mg Kg⁻¹ for available P, which are limiting soil conditions for coffee plantations. Moreover, pH, Al⁺³, Ca⁺², and organic matter (OM) were the variables with the highest accuracy and quality in the spatial prediction of soil acidity (R² between 0.77 and 0.85). The estimation method of liming requirements, MPM (integration of pH and organic material method), obtained the highest correlation with soil acidity-modulating variables and had a high spatial predictability (R² = 0.79), estimating doses between 1.50 and 3.01 t ha⁻¹ in soils with organic matter (OM) > 4.00%. The MAC (potential acidity method) method (R² = 0.59) estimated liming doses between 0.51 and 0.88 t ha⁻¹ in soils with OM < 4.00% and potential acidity greater than 0.71 cmol Kg⁻¹. Regarding phosphorus fertilization (DAP), the results showed high requirements (median = 137.21 kg ha⁻¹, IQR = 8.28 kg ha⁻¹), with high spatial predictability (R² = 0.74). However, coffee plantations on Ferralsols, with Paleogene parental material, mainly in dry forests, had the lowest predicted fertilization requirements (between 6.92 and 77.55 kg ha⁻¹ of DAP). This research shows a moderate spatial variation of acidity, the need to optimize phosphorus fertilization, and an optimal prediction of liming requirements using the MPM and MAC methods, which indicate high requirements in the southwest of the Pichanaqui district.
publishDate 2025
dc.date.accessioned.none.fl_str_mv 2026-04-30T19:45:03Z
dc.date.available.none.fl_str_mv 2026-04-30T19:45:03Z
dc.date.issued.fl_str_mv 2025-07-28
dc.type.none.fl_str_mv info:eu-repo/semantics/article
format article
dc.identifier.citation.none.fl_str_mv Quispe, K., Hermoza, N., Mejia, S., Romero-Chavez, L. E., Ottos, E., Arce, A., & Solórzano Acosta, R. (2025). Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization. Agriculture, 15, 1632. https://doi.org/10.3390/agriculture15151632
dc.identifier.issn.none.fl_str_mv 2077-0472
dc.identifier.uri.none.fl_str_mv http://hdl.handle.net/20.500.12955/3106
dc.identifier.doi.none.fl_str_mv https://doi.org/10.3390/agriculture15151632
identifier_str_mv Quispe, K., Hermoza, N., Mejia, S., Romero-Chavez, L. E., Ottos, E., Arce, A., & Solórzano Acosta, R. (2025). Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization. Agriculture, 15, 1632. https://doi.org/10.3390/agriculture15151632
2077-0472
url http://hdl.handle.net/20.500.12955/3106
https://doi.org/10.3390/agriculture15151632
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language eng
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dc.relation.ispartofseries.none.fl_str_mv Agriculture
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spelling Quispe Matos, Kenyi RolandoHermoza Ayme, Nilton AlexanderMejia Maita, Sharon YahairaRomero Chávez, Lorena EstefaniOttos Díaz, ElvisArce, AndrésSolórzano Acosta, Richard2026-04-30T19:45:03Z2026-04-30T19:45:03Z2025-07-28Quispe, K., Hermoza, N., Mejia, S., Romero-Chavez, L. E., Ottos, E., Arce, A., & Solórzano Acosta, R. (2025). Spatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilization. Agriculture, 15, 1632. https://doi.org/10.3390/agriculture151516322077-0472http://hdl.handle.net/20.500.12955/3106https://doi.org/10.3390/agriculture15151632Soil acidity is one of the main limiting factors for coffee production in Peruvian rainforests. The objective of this study is to predict the spatial acidity variability for recommending site-specific liming and phosphorus fertilization treatments. We analyzed thirty-six edaphoclimatic variables, eight methods for estimating liming doses, and three geospatial variables from 552 soil samples in the Pichanaqui district of Peru. Multivariate statistics, nonparametric comparison, and geostatistical analysis with Ordinary Kriging interpolation were used for data analysis. The results showed low coffee yields (0.70 ± 0.16 t ha⁻¹) due to soil acidification. The interquartile ranges (IQR) were found to be 3.80–5.10 for pH, 0.21–0.87 cmol Kg⁻¹ for Al⁺³, and 2.55–6.53 mg Kg⁻¹ for available P, which are limiting soil conditions for coffee plantations. Moreover, pH, Al⁺³, Ca⁺², and organic matter (OM) were the variables with the highest accuracy and quality in the spatial prediction of soil acidity (R² between 0.77 and 0.85). The estimation method of liming requirements, MPM (integration of pH and organic material method), obtained the highest correlation with soil acidity-modulating variables and had a high spatial predictability (R² = 0.79), estimating doses between 1.50 and 3.01 t ha⁻¹ in soils with organic matter (OM) > 4.00%. The MAC (potential acidity method) method (R² = 0.59) estimated liming doses between 0.51 and 0.88 t ha⁻¹ in soils with OM < 4.00% and potential acidity greater than 0.71 cmol Kg⁻¹. Regarding phosphorus fertilization (DAP), the results showed high requirements (median = 137.21 kg ha⁻¹, IQR = 8.28 kg ha⁻¹), with high spatial predictability (R² = 0.74). However, coffee plantations on Ferralsols, with Paleogene parental material, mainly in dry forests, had the lowest predicted fertilization requirements (between 6.92 and 77.55 kg ha⁻¹ of DAP). This research shows a moderate spatial variation of acidity, the need to optimize phosphorus fertilization, and an optimal prediction of liming requirements using the MPM and MAC methods, which indicate high requirements in the southwest of the Pichanaqui district.Funding: This research was funded by the Instituto Nacional de Innovación Agraria—INIA, Peru, project CUI 2487112, “Mejoramiento de los servicios de investigación y transferencia tecnológica en el manejo y recuperación de suelos agrícolas degrada-dos y aguas para riego en la pequeña y mediana agricultura en los departamentos de Lima, Áncash, San Martín, Cajamarca, Lambayeque, Junín, Ayacucho, Arequipa, Puno y Ucayali”.application/pdfengMDPICHurn:issn: 2077-0472Agricultureinfo:eu-repo/semantics/openAccesshttp://creativecommons.org/licenses/by/4.0/Instituto Nacional de Innovación Agrariareponame:INIA-Institucionalinstname:Instituto Nacional de Innovación Agrariainstacron:INIARepositorio Institucional - INIASite-specific nutrient managementAcid soil remediationTropical agroecosystemsSoil pH variabilityGeostatistical mappingManejo de nutrientes sitio-específicoRemediación de suelos ácidosAgroecosistemas tropicalesVariabilidad del pH del sueloMapeo geoestadísticohttps://purl.org/pe-repo/ocde/ford#4.01.04Café; Coffee; Ph del suelo; Soil ph; Fósforo; Phosphorus; Encalado; Liming; Kriging; Krigeage; Soil sampling; Muestreo de suelo; Fertilizer application; Aplicación de abonoSpatial analysis of soil acidity and available phosphorus in coffee-growing areas of Pichanaqui: Implications for liming and site-specific fertilizationinfo:eu-repo/semantics/articleLICENSElicense.txtlicense.txttext/plain; charset=utf-81792https://repositorio.inia.gob.pe/bitstreams/a6de361e-63a3-431b-9a50-c1489370f1ee/downloada1dff3722e05e29dac20fa1a97a12ccfMD51ORIGINALQuispe_et-al_2025_Spatial_Analysis_Soil.pdfQuispe_et-al_2025_Spatial_Analysis_Soil.pdfapplication/pdf34152027https://repositorio.inia.gob.pe/bitstreams/0cdb2f05-60a7-4293-85a5-050ff450ad7b/download0fe82d1a5acb1afdd4c6dc9b75343c27MD52THUMBNAILQuispe_et-al_2025_Spatial_Analysis_Soil_carátula.jpgimage/jpeg189714https://repositorio.inia.gob.pe/bitstreams/4876dd06-83d9-4b54-a9ae-568506747e79/download62261899aed70345b25e651ea7855e57MD5320.500.12955/3106oai:repositorio.inia.gob.pe:20.500.12955/31062026-05-08 09:27:58.671http://creativecommons.org/licenses/by/4.0/info:eu-repo/semantics/openAccessopen.accesshttps://repositorio.inia.gob.peRepositorio Institucional INIArepositorio@inia.gob.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