Mitigating the Accumulation of Mercury (Hg) and Lead (Pb) through Humic Acid Application under Aquaponic Conditions Using Watercress (Nasturtium officinale R. Br.) as a Model Plant

Author:

Lelesz Judit Éva1ORCID,Csajbók József2ORCID,Molnár Péter István1ORCID,Virág István Csaba2,Kutasy Erika Tünde2ORCID

Affiliation:

1. Department of Animal Husbandry, Institute of Animal Science, Biotechnology and Nature Conservation, Faculty of Agricultural and Food Sciences and Environmental Management, University of Debrecen, Böszörményi Str. 138, H-4032 Debrecen, Hungary

2. Department of Crop Production, Applied Ecology and Plant Breeding, Institute of Crop Sciences, Faculty of Agricultural and Food Sciences and Environmental Management, University of Debrecen, Böszörményi Str. 138, H-4032 Debrecen, Hungary

Abstract

In aquaponic farming, there is a potential risk that heavy metals will contaminate the water, which can lead to heavy metal accumulation in the plants. Our research investigated the accumulation of mercury (Hg) and lead (Pb) under aquaponic conditions and the effect of their increased presence on the uptake of other macro- and micronutrients using watercress (Nasturtium officinale) as a model plant. The potential modifying effect of humic acid on heavy metal accumulation was also investigated. Adding Hg and Pb increased the mercury and lead levels of the watercress plants to over 300 µg kg−1, while the addition of humic acid significantly reduced the concentration of both mercury and lead in the plants compared to plants treated with heavy metals alone, from 310.647 µg kg−1 to 196.320 µg kg−1 for Hg and from 313.962 µg kg−1 to 203.508 µg kg−1 for Pb. For Fe and Mn, higher values were obtained for the Hg + humic acid treatments (188.13 mg kg−1 and 6423.92 µg kg−1, respectively) and for the Pb + humic acid treatments (198.26 mg kg−1 and 6454.31 µg kg−1, respectively). Conversely, the Na, K, Cu levels were lower compared to those in plants treated with heavy metals alone. Our results demonstrated that watercress can accumulate mercury, leading to high levels, even above food safety standards, highlighting the importance of water quality control in aquaponic systems. Furthermore, these results suggest that watercress could be used as a natural filter in recirculation systems. The addition of humic acid significantly reduced the accumulation of heavy metals and altered the element content in the plant.

Publisher

MDPI AG

Reference85 articles.

1. FAO (2022). The State of World Fisheries and Aquaculture 2022, FAO. Towards Blue Transformation.

2. (2024, June 10). Europe Aquaponics Market Size, Share & Industry Trends Analysis Report by Facility Type, by Equipment, by Component, by Produce (Fish, Fruits & Vegetables and Others), by Application, by Growing Mechanism, by Country and Growth Forecast, 2023–2030. KBV-15743 Research Report. Available online: https://www.kbvresearch.com/europe-aquaponics-market/.

3. (2024, June 10). Global Aquaponics Market Size, Share & Industry Trends Analysis Report by Facility Type, by Equipment, by Component, by Produce (Fish, Fruits & Vegetables and Others), by Application, By Growing Mechanism, by Regional Outlook and Forecast, 2023–2030. KBV-15741 Research Report. Available online: https://www.kbvresearch.com/aquaponics-market/.

4. Towards urban food sovereignty: The trials and tribulations of community-based aquaponics enterprises in Milwaukee and Melbourne;Laidlaw;Local Environ.,2014

5. Villarroel, M., Junge, R., Komives, T., König, B., Plaza, I., Bittsánszky, A., and Joly, A. (2016). Survey of Aquaponics in Europe. Water, 8.

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