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April 26, 2026Journal of soil science and plant nutrition0 citationsOpen Access

Copper Leaching in Vineyard Soils Following Bordeaux Mixture Application: Column Experiments

MCManuel Conde-CidRVRaquel Vázquez-BlancoAGAntía Gómez-Armesto

Key Points

  • This study aims to quantify copper leaching from vineyard soils after Bordeaux mixture application and evaluate factors affecting Cu mobility.
  • Column leaching experiments were conducted using ten vineyard soils with varying pH and organic matter content spiked with 0-800 mg Cu kg−1 as Bordeaux mixture.
  • Leachates were collected over 14 hours, fitting cumulative Cu release curves to kinetic models.
  • Freshly spiked soils were compared with soils incubated for 30 days to assess short-term aging effects.
  • Copper leaching from historically contaminated soils was extremely low (< 1% of total soil Cu), indicating minimal inherent mobility.
  • Acidic and low-organic matter soils exhibited higher leaching, with worst-case inputs of 800 mg Cu kg−1 producing initial concentrations > 200 mg L−1 in acidic soil.
  • Realistic applications (50 mg Cu kg−1) released less than 5% of added Cu, indicating limited leaching risk.

Abstract

Considering that copper-based fungicides, particularly Bordeaux mixture, accumulate in vineyard soils and may pose risks of Cu leaching to groundwater, this study quantified Cu leaching from ten vineyard soils, assessing the influence of soil pH and organic matter (OM) and the effect of short-term aging on Cu mobility. Column leaching experiments were conducted with ten vineyard soils differing in pH and OM, spiked with 0-800 mg Cu kg− 1 as Bordeaux mixture. Leachates were collected over 14 h, and cumulative Cu release curves were fitted to kinetic models. Freshly spiked soils were compared with soils incubated for 30 days to assess short-term aging effects. Cu leaching from historically contaminated soils was extremely low ( 200 mg L− 1 in acidic soil), whereas realistic applications (50 mg Cu kg− 1) released < 5% of added Cu. Short-term aging had no significant effect. Typical Bordeaux mixture applications pose limited Cu leaching risk, although acidic and OM-poor soils are more vulnerable. Importantly, these results indicate that studies of Cu mobility using pure Cu salts, which are rarely used as fungicides under field conditions, may overestimate Cu mobility and leaching potential compared to Bordeaux mixture, which represents a form of Cu widely applied in realistic viticultural settings.

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Cite This Study

Conde-Cid et al. (2026) studied this question.

synapsesocial.com/papers/69edad274a46254e215b4d8ahttps://doi.org/10.1007/s42729-026-03235-3
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