4.7 Article

Accumulation of metallic trace elements in Reynoutria japonica: a risk assessment for plant biomass valorization

期刊

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
卷 29, 期 44, 页码 67390-67401

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-022-20485-7

关键词

Asian R; japonica (syn; Fallopia spp; ); Biological invasion; Cadmium; Environmental safety; Transfer soil-plant; Bioaccumulation; Roughage; Organic amendment

资金

  1. Agroscope
  2. Fondation de France
  3. Conseil General Meurthe et Moselle
  4. Direction regionale Grand-Est de l'Environnement, de l'Amenagement et du Logement -DREAL

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This study measured the accumulation of metallic trace elements (MTE) in Reynoutria japonica and assessed the eco-toxicological risk related to the valorization of its biomass. The results showed that the Cd content in R. japonica grown in MTE-contaminated soil was close to the regulatory limit, posing a potential threat to food safety.
Sustainable solutions aiming at limiting Reynoutria japonica invasion consist of frequent removal of its aerial biomass. The aims of this study were to measure the accumulation of metallic trace elements (MTE) in R. japonica, and to assess the eco-toxicological risk related to the valorization of the produced biomass. R. japonica fragmented rhizomes were regenerated in pots for 41 days on a control soil (CTL) or a moderately MTE-contaminated soil (POL, 3.6 mg Cd kg(-1) DM). Growth traits were recorded, as well as MTE bioconcentration (BCF) and translocation factors (TF) from soil to plant organs. Whatever the MTE and plant organs, BCF remained below one (mean Cd-BCF for stem and leaf: 0.07 and 0.29 for CTL and POL, respectively), conversely to TF (until 2.2 for Cd and Ni in POL soil). When grown on the POL soil, R. japonica stem and leaf Cd content was close to the EU maximum regulatory limit for organic amendments or animal feed. Model simulations suggested that liver and kidney Cd concentrations would exceed the regulatory limit in food when adult cattle or sheep constantly ingest R. japonica grown on the POL soil over 200 to 800 days. The results of the present study will be useful to help managers in selecting efficient and safe solutions for the control of R. japonica invasion.

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