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Micro-morphological analysis of foliar uptake and retention of airborne particulate matter (PM)-bound toxic metals: implications for their phytoremediation

Authors
Gajbhiye, TriratneshPandey, Sudhir KumarMalik, Tanzil GaffarKim, Ki-HyunKhan, Mohammed Latif
Issue Date
Aug-2022
Publisher
TAYLOR & FRANCIS LTD
Keywords
Foliar dust; urban environment; leaf surface morphology; green belt development; pollution management
Citation
CHEMISTRY AND ECOLOGY, v.38, no.7, pp.636 - 654
Indexed
SCIE
SCOPUS
Journal Title
CHEMISTRY AND ECOLOGY
Volume
38
Number
7
Start Page
636
End Page
654
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/186180
DOI
10.1080/02757540.2022.2108021
ISSN
0275-7540
Abstract
While airborne particulate matter (PM) pollution is a serious problem for urban environments, it can be reduced through uptake by plant leaves. In this study, we investigated and compared the uptake of PM-bound toxic metals by different plant species. Enrichment factor (EF) and correlation analyses across different sample types indicated anthropogenic origins of these toxic metals with airborne source signatures. Scanning electron microscopy (SEM) analyses of both leaf surfaces (adaxial and abaxial) suggested that the micro-morphological properties of the leaf surface (e.g. stomata, trichomes, epicuticular wax, and epidermal appendages) control the accumulation of PM and associated metals in plant leaves. Senna siamea leaves showed the most micro-morphological variation as well as the maximum concentration of toxic metals. It was found that foliar uptake of PM-bound toxic metals is affected by leaf surface morphological characteristics. Our results imply that plant speciation strategies can be used to help decrease PM pollution.
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