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2025 (English)In: Environmental Sciences Europe, ISSN 2190-4707, E-ISSN 2190-4715, Vol. 37, no 1, article id 117Article in journal (Refereed) Published
Abstract [en]
Background
Wastewater discharges from the old pulp and paper industry led to the accumulation of contaminated wood pulping fbers and debris—referred to as fberbanks (FB)—in the Baltic Sea and freshwater bodies across Sweden and other pulp-producing countries. These anthropogenic sediments are polluted with toxic metal(oid)s and persistent organic pollutants, and their decomposition releases greenhouse gases. Phytoremediation ofers a nature-based solution for the ex-situ treatment of these fbrous sediments, but they present unique challenges due to the abundant and unstable organic matter and aged pollution. This study aims to identify potential plant candidates and to address the limitations of fberbanks as a plants growing media for phytoremediation.In a greenhouse experiment, we assessed the performance of fve plant species (Brassica juncea, Brassica napus, Helianthus annuus, Hordeum vulgare, and Poa annua) grown in substrates formulated with fberbank. The evaluation included plant growth parameters, bioconcentration and uptake efciency of metal(oid)s (V, Cr, Co, Ni, Cu, Zn, As, Cd, and Pb), and the degradation of polycyclic and linear hydrocarbons.
Results
Despite initial concerns, fberbanks displayed favorable physical characteristics and a degree of fertility conducive to plant growth. Even though all tested species seeds could cope with fberbanks acute toxicity, H. vulgare and P. annua showed better tolerance to the fberbanks substrates and superior aerial biomass development, which promoted a highest toxic metal(oid)s uptake efciency, regardless of lower bioconcentration factors for most of the target elements. Zn (17.16–23.25 mg/kg of FB), Cu (4.18–6.48 mg/kg of FB) and Cr (1.05–1.36 mg/kg of FB) were most efectively taken up by these plants. The uptake of Co (0.04–0.18 mg/kg of FB) and Ni (0.05–0.17 mg/kg of FB) was lower. As (0.01–0.02 mg/kg of FB), Cd (0.02–0.06 mg/kg of FB), Pb (0.02–0.04 mg/kg of FB) and V (0.02–0.03 mg/kg of FB) phytoextraction was not signifcant. None of the species exhibited a signifcant removal of targeted organic pollutants.
Conclusions
Phytoremediation, either on its own or in combination with other strategies, shows promise for the remediation of fberbanks. However, further research is needed to understand how the organic matrix and long-term underwater aging of fberbanks afect pollutants bioavailability.
Place, publisher, year, edition, pages
Springer Nature, 2025
Keywords
Fiberbanks, Multielement pollution, Organic pollutants, Brassica juncea, Brassica napus, Helianthus annuus, Hordeum vulgare, Poa annua
National Category
Environmental Sciences
Identifiers
urn:nbn:se:miun:diva-55169 (URN)10.1186/s12302-025-01168-9 (DOI)001536537500002 ()2-s2.0-105010637701 (Scopus ID)
Funder
Mid Sweden University
2025-07-152025-07-152025-09-25