Juan Carlos Nóvoa-Muñoz
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Juan Carlos Nóvoa-Muñoz is a Professor at Universidade de Vigo in Spain. His research focuses on mercury dynamics and soil chemistry, with recent publications exploring topics such as litterfall mercury deposition, sediment transport post-fire, and soil metal fractionation. His work contributes to understanding the environmental impacts of mercury in various forest and soil types across southern Europe.
Recent Grants
Grant: Close
Desarrollo e implementación integral de nuevas tecnologías, productos y estrategias para reducir la aplicación de cobre en viñedos y remediar suelos contaminados en la región SUDOE-COPPEREPLACE
Open Date: 2020-11-01
Close Date: 2023-02-01
Grant: Close
Soil biodiversity enhancement in European agroecosystems to promote their stability and resilence by external inputs reduction and crop performance increase (SoildiverAgro)
Open Date: 2019-01-01
Close Date: 2024-01-01
Grant: Close
Antibióticos de consumo humano en zonas agrícolas tratadas con lodos de depuradora y estrategias de control usando bioadsorbentes: Degradación y efectos en los microorganismos
Open Date: 2019-01-01
Close Date: 2021-01-01
Grant: Close
Evaluación de la contaminación difusa por metales pesados en suelos de Galicia
Open Date: 2018-01-01
Close Date: 2022-01-01
Grant: Close
Nuevos aprovechamientos micológicos para la obtención de productos innovadores en los soutos tradicionales de castaño
Open Date: 2017-01-01
Close Date: 2019-01-01
Articles (18)
Soil Abandonment as a Trigger for Changes in Zn Fractionation in Afforested Former Vineyard Acidic Soils
Zinc is an essential element for plant nutrition, but it may cause toxicity depending on its bioavailability and potential transformation in soil. In vineyard soils, high concentrations of Zn are usually found, mainly due to agricultural practices. However, a great abandonment of vineyards has recently occurred, leading to changes in the total and bioavailable Zn concentrations, as well as Zn fractionation. We analyzed Zn concentrations (total, ZnT, and bioavailable, ZnED) and fractionation in the soil of three paired sites (PM, PT, and AR) up to depths of 50 cm in active and adjacent abandoned vineyards that were already transformed into forests. The ZnT averaged at 210 mg kg−1 among all studied vineyards. The results showed changes in the vertical pattern ZnT concentrations after vineyard abandonment at the PM and PT sites, while at the AR site, no great variation occurred. The ZnED (mean values = 7 mg kg−1) decreased after abandonment at PM and AR in the uppermost surface layers, while it increased in the top 10 cm at the PT site, reaching up to 60 mg kg−1. Regarding Zn fractionation in active vineyards, the residual fraction (ZnR) was the most abundant, followed by Zn bound to crystalline Fe and Al oxy-hydroxides (ZnC) and Zn bound to soil organic matter (ZnOM). After abandonment, the ZnR slightly increased and the ZnC slightly decreased at the PM and AR sites at all depths, while the ZnOM showed a noticeable variation in the uppermost 10 cm of the PT site. These results suggest that the soil organic matter that is provided during afforestation may play an important role in Zn fractionation and mobilization, depending on its humification degree and chemical stability. Zn mobilization could result in a positive nutrient supply for plants, but caution must be taken, since an excess of Zn could cause toxicity in long-term abandoned vineyards.
Year:
2023
Collaborators (5)
Manuel Arias-Estévez
Professor
Universidade de Vigo
David Fernández-Calviño
Universidade de Vigo
Felícia Fonseca
Professora Coordenadora
Universidad Politecnica de Madrid. Escuela Tecnica Superior de Ingenieros Agronomos
Tomás d' Aquino Freitas Rosa de Figueiredo
Professor Coordenador
Instituto Politécnico de Leiria
Andrea Parente Sendín
Universidade de Vigo

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