Phytoremediation Potential of Native Herbaceous Plant Species Growing on a Paradigmatic Brownfield Site

Phytomanagement techniques using native species allow the recovery of contaminated soils at low cost and circumvent the ecological risks associated with the use of non-native species. In this context, a paradigmatic brownfield megasite highly contaminated by As and Pb was sampled in order to analyze...

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Published inWater, air, and soil pollution Vol. 232; no. 7
Main Authors Matanzas, N., Afif, E., Díaz, T. E., Gallego, J. R.
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.07.2021
Springer
Springer Nature B.V
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Abstract Phytomanagement techniques using native species allow the recovery of contaminated soils at low cost and circumvent the ecological risks associated with the use of non-native species. In this context, a paradigmatic brownfield megasite highly contaminated by As and Pb was sampled in order to analyze soil–plant interactions and identify plant species with phytoremediation potential. A survey was first carried out in a 20-ha area to obtain an inventory of species growing spontaneously throughout the site. We then performed another survey in the most polluted sub-area (1 ha) within the site. Pseudototal concentrations of contaminants in the soil, aerial parts of the plants, and roots were measured by ICP-MS. A detailed habitat classification was done, and a specific index of coverage was applied by means of a 1-year quadrat study in various sampling stations. Results converged in the selection of six herbaceous species ( Dysphania botrys , Lotus corniculatus , Lotus hispidus , Plantago lanceolata , Trifolium repens , Medicago lupulina ). All of these plants are fast-growing, thereby making them suitable for use in phytostabilization strategies. Furthermore, they are all easy to grow and propagate and are generally self-sustaining. All six plants showed accumulation factors below 1, thus revealing them as pseudomethallophytes and excluders. However, L. hispidus and M. lupulina showed translocation capacity and are considered worthy of further study.
AbstractList Phytomanagement techniques using native species allow the recovery of contaminated soils at low cost and circumvent the ecological risks associated with the use of non-native species. In this context, a paradigmatic brownfield megasite highly contaminated by As and Pb was sampled in order to analyze soil-plant interactions and identify plant species with phytoremediation potential. A survey was first carried out in a 20-ha area to obtain an inventory of species growing spontaneously throughout the site. We then performed another survey in the most polluted sub-area (1 ha) within the site. Pseudototal concentrations of contaminants in the soil, aerial parts of the plants, and roots were measured by ICP-MS. A detailed habitat classification was done, and a specific index of coverage was applied by means of a 1-year quadrat study in various sampling stations. Results converged in the selection of six herbaceous species (Dysphania botrys, Lotus corniculatus, Lotus hispidus, Plantago lanceolata, Trifolium repens, Medicago lupulina). All of these plants are fast-growing, thereby making them suitable for use in phytostabilization strategies. Furthermore, they are all easy to grow and propagate and are generally self-sustaining. All six plants showed accumulation factors below 1, thus revealing them as pseudomethallophytes and excluders. However, L. hispidus and M. lupulina showed translocation capacity and are considered worthy of further study.
Abstract Phytomanagement techniques using native species allow the recovery of contaminated soils at low cost and circumvent the ecological risks associated with the use of non-native species. In this context, a paradigmatic brownfield megasite highly contaminated by As and Pb was sampled in order to analyze soil–plant interactions and identify plant species with phytoremediation potential. A survey was first carried out in a 20-ha area to obtain an inventory of species growing spontaneously throughout the site. We then performed another survey in the most polluted sub-area (1 ha) within the site. Pseudototal concentrations of contaminants in the soil, aerial parts of the plants, and roots were measured by ICP-MS. A detailed habitat classification was done, and a specific index of coverage was applied by means of a 1-year quadrat study in various sampling stations. Results converged in the selection of six herbaceous species ( Dysphania botrys , Lotus corniculatus , Lotus hispidus , Plantago lanceolata , Trifolium repens , Medicago lupulina ). All of these plants are fast-growing, thereby making them suitable for use in phytostabilization strategies. Furthermore, they are all easy to grow and propagate and are generally self-sustaining. All six plants showed accumulation factors below 1, thus revealing them as pseudomethallophytes and excluders. However, L. hispidus and M. lupulina showed translocation capacity and are considered worthy of further study.
Phytomanagement techniques using native species allow the recovery of contaminated soils at low cost and circumvent the ecological risks associated with the use of non-native species. In this context, a paradigmatic brownfield megasite highly contaminated by As and Pb was sampled in order to analyze soil–plant interactions and identify plant species with phytoremediation potential. A survey was first carried out in a 20-ha area to obtain an inventory of species growing spontaneously throughout the site. We then performed another survey in the most polluted sub-area (1 ha) within the site. Pseudototal concentrations of contaminants in the soil, aerial parts of the plants, and roots were measured by ICP-MS. A detailed habitat classification was done, and a specific index of coverage was applied by means of a 1-year quadrat study in various sampling stations. Results converged in the selection of six herbaceous species ( Dysphania botrys , Lotus corniculatus , Lotus hispidus , Plantago lanceolata , Trifolium repens , Medicago lupulina ). All of these plants are fast-growing, thereby making them suitable for use in phytostabilization strategies. Furthermore, they are all easy to grow and propagate and are generally self-sustaining. All six plants showed accumulation factors below 1, thus revealing them as pseudomethallophytes and excluders. However, L. hispidus and M. lupulina showed translocation capacity and are considered worthy of further study.
ArticleNumber 290
Audience Academic
Author Afif, E.
Díaz, T. E.
Gallego, J. R.
Matanzas, N.
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  organization: INDUROT and Environmental Biotechnology & Geochemistry Group, University of Oviedo, C/Gonzalo Gutiérrez Quirós S/N
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IsOpenAccess true
IsPeerReviewed true
IsScholarly true
Issue 7
Keywords Brownfield
Soil pollution
Phytoavailability
Phytoremediation
Herbaceous plants
Language English
LinkModel DirectLink
MergedId FETCHMERGED-LOGICAL-c402t-7b5bbef8f7e3708790d88523a8f9585a98cf43e457745970a8ce0511fb054dbe3
OpenAccessLink https://doi.org/10.1007/s11270-021-05234-9
PQID 2548453802
PQPubID 54157
ParticipantIDs proquest_journals_2548453802
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crossref_primary_10_1007_s11270_021_05234_9
springer_journals_10_1007_s11270_021_05234_9
PublicationCentury 2000
PublicationDate 2021-07-01
PublicationDateYYYYMMDD 2021-07-01
PublicationDate_xml – month: 07
  year: 2021
  text: 2021-07-01
  day: 01
PublicationDecade 2020
PublicationPlace Cham
PublicationPlace_xml – name: Cham
– name: Dordrecht
PublicationSubtitle An International Journal of Environmental Pollution
PublicationTitle Water, air, and soil pollution
PublicationTitleAbbrev Water Air Soil Pollut
PublicationYear 2021
Publisher Springer International Publishing
Springer
Springer Nature B.V
Publisher_xml – name: Springer International Publishing
– name: Springer
– name: Springer Nature B.V
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Snippet Phytomanagement techniques using native species allow the recovery of contaminated soils at low cost and circumvent the ecological risks associated with the...
Abstract Phytomanagement techniques using native species allow the recovery of contaminated soils at low cost and circumvent the ecological risks associated...
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SubjectTerms Alfalfa
Analysis
Atmospheric Protection/Air Quality Control/Air Pollution
Bioremediation
Brownfields
Climate Change/Climate Change Impacts
Contaminants
Coverage
Earth and Environmental Science
Environment
Environmental monitoring
Flowers & plants
Hydrogeology
Indigenous species
Introduced species
Medicago lupulina
Native organisms
Native species
Phytoremediation
Plant species
Polls & surveys
Pollution
Soil
Soil analysis
Soil contamination
Soil pollution
Soil Science & Conservation
Soils
Surveying
Surveys
Translocation
Water Quality/Water Pollution
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Title Phytoremediation Potential of Native Herbaceous Plant Species Growing on a Paradigmatic Brownfield Site
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