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  5. Nature-Based Options for Improving Urban Environmental Quality: Using Black Poplar Trees for Monitoring Heavy Metals Pollution in Urbanized Contexts
 
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Nature-Based Options for Improving Urban Environmental Quality: Using Black Poplar Trees for Monitoring Heavy Metals Pollution in Urbanized Contexts

Author(s)
Perri, Gilda
Gargano, Domenico
Randazzo, Luciana  
Calabrese, Sergio  
La Russa, Mauro Francesco  
Fuoco, Ilaria  
Apollaro, Carmine  
Brusca, Lorenzo  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Palermo, Palermo, Italia  
La Russa, Mauro Francesco  
Language
English
Status
Published
JCR Journal
JCR Journal
Peer review journal
Yes
Journal
Resources  
Issue/vol(year)
/13 (2024)
ISSN
2079-9276
Publisher
MDPI
Pages (printed)
85
Date Issued
June 19, 2024
DOI
https://doi.org/10.3390/resources13060085
URI
https://www.earth-prints.org/handle/2122/57803
Subjects

biomonitoring

ecosystem services

environmental quality...

soil pollution

urban forestry

Abstract
Several researchers recognize the importance of plants as effective tools for environmental biomonitoring. The black poplar (Populus nigra L.) often emerges as a useful bioindicator of air quality in urban environments, where this tree species is widely employed for urban areas. Here, we used ICP-MS analysis to assess the presence and concentration of trace elements, with a special focus on heavy metals (HMs), in black poplar leaves and soil samples from three urbanized sites showing varying degrees of environmental quality. Specifically, the foliar concentrations of Zn (173.3 ppm), Cd (0.7 ppm), Co (1.1 ppm) and As (0.2 ppm) exceeded reference values for unpolluted sites, indicating potential environmental hazards. Additionally, we correlated the foliar concentrations of HMs with those quantified in soil and with air quality data provided by the regional air quality-monitoring network. Subsequently, we estimated the values of foliar fluctuating asymmetry, and evaluated their relationships with HM concentrations in both leaves and soil. Our results suggest that element concentrations in black poplar leaves are related to soil contamination and atmospheric quality, and the extent depends on the proximity to relevant pollution sources. Furthermore, the study species showed a pronounced accumulation capacity for some HMs (i.e., Zn, Cd) commonly found in particulate matter. The extent of foliar fluctuating asymmetry is related to atmospheric quality and HM soil concentration, possibly because of the growth anomalies induced by this kind of environmental contamination. Overall, our data indicate the study species can supply an effective biomonitoring service in urbanized contexts, offering valuable insights into the occurrence and biological implications of heavy metal contamination.
Type
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Perri G et al., 2024_resources-13-00085.pdf

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Size

1.56 MB

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Checksum (MD5)

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