Integrated Biochar–Compost Amendment for Zea mays L. Phytoremediation in Soils Contaminated with Mining Tailings of Quiulacocha, Peru.

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This study evaluated the phytoremediation of mine tailing-contaminated soils in Quiulacocha, Peru, using the combined application of biochar and compost, with Zea mays L. (maize) serving as the phytoremediator due to its high biomass production and stress tolerance. A factorial experimental design w...

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Detalles Bibliográficos
Autores: Virú-Vasquez, Paul Hermes, Pilco-Nuñez, Alex Willy, Tineo-Cordova, Freddy, Madueño-Sulca, César Toribio, Quispe-Ojeda, Teodosio Celso, Arroyo-Paz, Antonio, Alvarez-Arteaga, Ruby, Velasquez-Zuñiga, Yessenia, Oscanoa-Gamarra, Luis Lizardo, Saldivar-Villarroel, Juan, Césare-Coral, Mary Flor, Nuñez-Bustamante, Ever
Formato: artículo
Fecha de Publicación:2025
Institución:Universidad Nacional Autónoma de Chota
Repositorio:UNACH-Institucional
Lenguaje:inglés
OAI Identifier:oai:repositorio.unach.edu.pe:20.500.14142/793
Enlace del recurso:https://repositorio.unach.edu.pe/handle/20.500.14142/793
https://doi.org/10.3390/plants14101448
Nivel de acceso:acceso abierto
Materia:FORESTRY, AGRICULTURAL SCIENCES and LANDSCAPE PLANNING::Plant production::Agronomy
https://purl.org/pe-repo/ocde/ford#4.01.06
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dc.title.none.fl_str_mv Integrated Biochar–Compost Amendment for Zea mays L. Phytoremediation in Soils Contaminated with Mining Tailings of Quiulacocha, Peru.
title Integrated Biochar–Compost Amendment for Zea mays L. Phytoremediation in Soils Contaminated with Mining Tailings of Quiulacocha, Peru.
spellingShingle Integrated Biochar–Compost Amendment for Zea mays L. Phytoremediation in Soils Contaminated with Mining Tailings of Quiulacocha, Peru.
Virú-Vasquez, Paul Hermes
FORESTRY, AGRICULTURAL SCIENCES and LANDSCAPE PLANNING::Plant production::Agronomy
https://purl.org/pe-repo/ocde/ford#4.01.06
title_short Integrated Biochar–Compost Amendment for Zea mays L. Phytoremediation in Soils Contaminated with Mining Tailings of Quiulacocha, Peru.
title_full Integrated Biochar–Compost Amendment for Zea mays L. Phytoremediation in Soils Contaminated with Mining Tailings of Quiulacocha, Peru.
title_fullStr Integrated Biochar–Compost Amendment for Zea mays L. Phytoremediation in Soils Contaminated with Mining Tailings of Quiulacocha, Peru.
title_full_unstemmed Integrated Biochar–Compost Amendment for Zea mays L. Phytoremediation in Soils Contaminated with Mining Tailings of Quiulacocha, Peru.
title_sort Integrated Biochar–Compost Amendment for Zea mays L. Phytoremediation in Soils Contaminated with Mining Tailings of Quiulacocha, Peru.
author Virú-Vasquez, Paul Hermes
author_facet Virú-Vasquez, Paul Hermes
Pilco-Nuñez, Alex Willy
Tineo-Cordova, Freddy
Madueño-Sulca, César Toribio
Quispe-Ojeda, Teodosio Celso
Arroyo-Paz, Antonio
Alvarez-Arteaga, Ruby
Velasquez-Zuñiga, Yessenia
Oscanoa-Gamarra, Luis Lizardo
Saldivar-Villarroel, Juan
Césare-Coral, Mary Flor
Nuñez-Bustamante, Ever
author_role author
author2 Pilco-Nuñez, Alex Willy
Tineo-Cordova, Freddy
Madueño-Sulca, César Toribio
Quispe-Ojeda, Teodosio Celso
Arroyo-Paz, Antonio
Alvarez-Arteaga, Ruby
Velasquez-Zuñiga, Yessenia
Oscanoa-Gamarra, Luis Lizardo
Saldivar-Villarroel, Juan
Césare-Coral, Mary Flor
Nuñez-Bustamante, Ever
author2_role author
author
author
author
author
author
author
author
author
author
author
dc.contributor.author.fl_str_mv Virú-Vasquez, Paul Hermes
Pilco-Nuñez, Alex Willy
Tineo-Cordova, Freddy
Madueño-Sulca, César Toribio
Quispe-Ojeda, Teodosio Celso
Arroyo-Paz, Antonio
Alvarez-Arteaga, Ruby
Velasquez-Zuñiga, Yessenia
Oscanoa-Gamarra, Luis Lizardo
Saldivar-Villarroel, Juan
Césare-Coral, Mary Flor
Nuñez-Bustamante, Ever
dc.subject.none.fl_str_mv FORESTRY, AGRICULTURAL SCIENCES and LANDSCAPE PLANNING::Plant production::Agronomy
topic FORESTRY, AGRICULTURAL SCIENCES and LANDSCAPE PLANNING::Plant production::Agronomy
https://purl.org/pe-repo/ocde/ford#4.01.06
dc.subject.ocde.none.fl_str_mv https://purl.org/pe-repo/ocde/ford#4.01.06
description This study evaluated the phytoremediation of mine tailing-contaminated soils in Quiulacocha, Peru, using the combined application of biochar and compost, with Zea mays L. (maize) serving as the phytoremediator due to its high biomass production and stress tolerance. A factorial experimental design was implemented, varying two main factors: the mining tailings dose (30% and 60% w/w) and the biochar pyrolysis temperature (300 ◦C and 500 ◦C). The mine tailings were characterized by high concentrations of heavy metals and unfavourable physico-chemical properties (pH, low organic matter), whereas the biochar, produced from pine forest residues, and the compost, derived from urban organic waste, exhibited attributes that enhance soil quality. During the pot experiment, response variables including the Bioconcentration Factor (BCF) and Translocation Factor (TF) for various metals were evaluated to assess the capacity for contaminant immobilization and their distribution between plant roots and aerial tissues. The results demonstrated that the incorporation of biochar and compost significantly improved soil quality by increasing pH, cation exchange capacity, and nutrient retention, while simultaneously reducing the bioavailability of heavy metals and limiting their translocation to the aerial parts of maize. Factorial analysis further indicated that both the tailings dose and biochar pyrolysis temperature significantly influenced the efficacy of the phytoremediation process. In conclusion, the combined application of biochar and compost presents an effective and sustainable strategy for rehabilitating mine tailing-contaminated soils by stabilizing heavy metals and promoting the safe growth of Zea mays L.
publishDate 2025
dc.date.accessioned.none.fl_str_mv 2025-09-24T17:53:06Z
dc.date.available.none.fl_str_mv 2025-09-24T17:53:06Z
dc.date.issued.fl_str_mv 2025-05
dc.type.none.fl_str_mv info:eu-repo/semantics/article
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dc.identifier.doi.none.fl_str_mv https://doi.org/10.3390/plants14101448
url https://repositorio.unach.edu.pe/handle/20.500.14142/793
https://doi.org/10.3390/plants14101448
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language eng
dc.relation.ispartof.none.fl_str_mv Plants
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dc.publisher.none.fl_str_mv Multidisciplinary Digital Publishing Institute
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spelling Virú-Vasquez, Paul HermesPilco-Nuñez, Alex WillyTineo-Cordova, FreddyMadueño-Sulca, César ToribioQuispe-Ojeda, Teodosio CelsoArroyo-Paz, AntonioAlvarez-Arteaga, RubyVelasquez-Zuñiga, YesseniaOscanoa-Gamarra, Luis LizardoSaldivar-Villarroel, JuanCésare-Coral, Mary FlorNuñez-Bustamante, Ever2025-09-24T17:53:06Z2025-09-24T17:53:06Z2025-05https://repositorio.unach.edu.pe/handle/20.500.14142/793https://doi.org/10.3390/plants14101448This study evaluated the phytoremediation of mine tailing-contaminated soils in Quiulacocha, Peru, using the combined application of biochar and compost, with Zea mays L. (maize) serving as the phytoremediator due to its high biomass production and stress tolerance. A factorial experimental design was implemented, varying two main factors: the mining tailings dose (30% and 60% w/w) and the biochar pyrolysis temperature (300 ◦C and 500 ◦C). The mine tailings were characterized by high concentrations of heavy metals and unfavourable physico-chemical properties (pH, low organic matter), whereas the biochar, produced from pine forest residues, and the compost, derived from urban organic waste, exhibited attributes that enhance soil quality. During the pot experiment, response variables including the Bioconcentration Factor (BCF) and Translocation Factor (TF) for various metals were evaluated to assess the capacity for contaminant immobilization and their distribution between plant roots and aerial tissues. The results demonstrated that the incorporation of biochar and compost significantly improved soil quality by increasing pH, cation exchange capacity, and nutrient retention, while simultaneously reducing the bioavailability of heavy metals and limiting their translocation to the aerial parts of maize. Factorial analysis further indicated that both the tailings dose and biochar pyrolysis temperature significantly influenced the efficacy of the phytoremediation process. In conclusion, the combined application of biochar and compost presents an effective and sustainable strategy for rehabilitating mine tailing-contaminated soils by stabilizing heavy metals and promoting the safe growth of Zea mays L.application/pdfengMultidisciplinary Digital Publishing InstituteCHPlantsurn:issn: 22237747info:eu-repo/semantics/openAccesshttps://creativecommons.org/licenses/by-nc-nd/4.0/FORESTRY, AGRICULTURAL SCIENCES and LANDSCAPE PLANNING::Plant production::Agronomyhttps://purl.org/pe-repo/ocde/ford#4.01.06Integrated Biochar–Compost Amendment for Zea mays L. 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