Title of article
Role of plants in metal cycling in a tidal wetland: Implications for phytoremidiation Original Research Article
Author/Authors
Johannes Teuchies، نويسنده , , Sander Jacobs، نويسنده , , Lotte Oosterlee، نويسنده , , Lieven Bervoets، نويسنده , , Patrick Meire، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2013
Pages
9
From page
146
To page
154
Abstract
Accumulation of 8 metals and the semimetal As in 29 plant species was quantified in a restored tidal wetland on a contaminated site. Transfer coefficients between sediment and aboveground plant tissues were lower than in many other systems; from 0.013 (Pb) to 0.189 (Mn). A minor fraction of the sediment metal pool cycled through the aboveground vegetation (≤ 0.02%). However, during the four years of this study, species composition changed, and plant biomass as well as the metal pool in the vegetation increased (≤ 0.12%). Succession to either a willow dominated brushwood or a monospecific reed stand can further enlarge this pool (2.5%). Since the amount of trace metals in the wetland soil or in suspended solids deposited during tidal flooding is some orders of magnitude larger than the vegetation pool, phytoextraction is not applicable. The growth of plant species with low accumulation in aboveground tissues, e.g. Scirpus maritimus or Typha latifolia, may be preferred since this might result in lower toxic metal distribution to the wider environment.
Keywords
Phytoextraction , Phytostabilization , Scheldt estuary , Managed realignment , Controlled Reduced Tide (CRT) , Heavy metal
Journal title
Science of the Total Environment
Serial Year
2013
Journal title
Science of the Total Environment
Record number
988823
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