ID | 64276 |
フルテキストURL | |
著者 |
Akhtar, Muhammad Shahbaz
Department of Environmental Sciences, Forman Christian College University
Aslam, Sohaib
Department of Environmental Sciences, Forman Christian College University
Ditta, Allah
Department of Environmental Sciences, Shaheed Benazir Bhutto University
Albalawi, Bedur Faleh A.
Department of Biology, University of Tabuk
Oki, Yoko
Department of Environmental Management Engineering, Graduate School of Environmental and Life Science, Okayama University
Kaken ID
publons
researchmap
Nakashima, Yoshitaka
Department of Environmental Management Engineering, Graduate School of Environmental and Life Science, Okayama University
Kaken ID
publons
researchmap
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抄録 | The phytoremediation potential of aquatic plants, particularly for Cu, is scarcely reported in the pertinent literature. In this regard, differential growth behavior and phytoaccumulation ability of three free-floating Azolla species (A. japonica, A. pinnata, and A. hybrid) were evaluated in a climatically controlled (a temperature of 25/20 degrees C, light/dark 16/8 h, a light intensity of 60 mu mol m(-2) s(-1), and a relative humidity of 65%) microcosm study. Azolla plants were exposed to solutions having three Cu concentrations (0, 3, and 6 mg L-1) under two incubation periods (4 and 8 days). Different Cu treatments significantly reduced Azolla biomass during both incubation periods and A. pinnata was the most sensitive species. Azolla plants grown in aqueous solutions showed substantial variations in Cu removal capacity. Higher bioconcentration values displayed by Azolla plants indicated that these plants can be deployed as potential plants for Cu removal from Cu contaminated water. Nevertheless, the plants exposed to higher Cu concentrations displayed color changes and root detachment due to Cu phytotoxic effects which may also ultimately lead to plant death. Significant correlations between Cu removed from the aqueous solutions and Cu contents of plant biomass indicated that Cu phytoremediation by Azolla plants was due to the phytoaccumulation mechanism because the removed Cu from aqueous solutions was accumulated in plant biomass. Introduced Azolla species, i.e., A. hybrid, displayed comparable Cu removal efficiency with naturally grown Azolla species, i.e., A. japonica and A. pinnata. Tested Azolla species proved to be suitable candidates to remediate Cu contaminated water and can be deployed for phytoremediation.
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キーワード | Azolla biomass
bioconcentration factor
Cu removal efficiency
Cu toxicity
translocation factor
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発行日 | 2022-12-28
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出版物タイトル |
Sustainability
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巻 | 15巻
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号 | 1号
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出版者 | MDPI
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開始ページ | 497
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ISSN | 2071-1050
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資料タイプ |
学術雑誌論文
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言語 |
英語
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OAI-PMH Set |
岡山大学
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著作権者 | © 2022 by the authors.
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論文のバージョン | publisher
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DOI | |
Web of Science KeyUT | |
関連URL | isVersionOf https://doi.org/10.3390/su15010497
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ライセンス | https://creativecommons.org/licenses/by/4.0/
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