Performance of Persicaria amphibia (L.) for Phytoremediation of Heavy Metals Contaminated Water

被引:0
|
作者
Cay, Seydahmet [1 ]
Yayla, Bahar [1 ]
Uyanik, Ahmet [2 ]
机构
[1] Giresun Univ, Fac Engn, Dept Environm Engn, TR-28200 Gure, Giresun, Turkiye
[2] Ondokuz Mayis Univ, Fac Sci, Dept Chem, TR-55139 Kurupelit, Samsun, Turkiye
关键词
Persicaria amphibia; Aquatic plant; Heavy metals; Phytoremediation; AQUATIC PLANTS; ACCUMULATION; CHROMIUM; SEDIMENT; REMOVAL; LAKE;
D O I
10.1007/s00128-024-03991-x
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Fast-paced global industrialization due to population growth poses negative water implications, such as pollution by heavy metals. Phytoremediation is deemed as an efficient and environmentally friendly alternative which utilizes different types of hyperaccumulator plants known as macrophytes for the removal of heavy metal pollutants from contaminated water. In this study, the removal of Cu(II), Ni(II), Pb(II), and Cd(II) heavy metal ions contaminated water was studied by using an aquatic plant, Persicaria amphibia (L.) collected from Ladik Lake, Samsun, Turkiye. The experiments were carried out hydroponically in the laboratory conditions. Synthetic heavy metals contaminated water (5, 10, 25, 50, 100 mg kg(- 1)), and domestic and industrial water were used in the experiments. The domestic and industrial water samples were taken from Aksu and Batlama streams in Giresun province. All physical plant changes were noted, and pH, conductivity, and dissolved oxygen levels of the hydroponic system were measured regularly during the experiments. In order to determine the effects of heavy metals on the plant, the chlorophyll (a, b and total) and carotenoid contents as well as the biomass of the plant, were measured. According to the phytoremediation experiments the amounts of accumulated heavy metals in plants were found as Cd(II) > Ni(II) > Cu(II) > Pb(II) in single systems and as Cd(II) > Ni(II) > Pb(II) > Cu(II) in competitive systems. The maximum amounts of heavy metals accumulated in plants were determined as 171 +/- 9 mg kg-1 for Cd(II), 143 +/- 7 mg kg-1 for Ni(II), 134 +/- 8 mg kg-1 for Cu(II) and 55 +/- 4 mg kg-1 for Pb(II). In addition, bioconcentration factor (BCF) values were calculated to make comparisons with the phytoextraction potential of the plant. This study emphasizes the importance of P. amphibia with high bioaccumulation potential for phytoremediation and suggests that it could be employed to restore water in heavy metal-contaminated areas.
引用
收藏
页数:9
相关论文
共 50 条
  • [41] Potential of kenaf (Hibiscus cannabinus L.) and corn (Zea mays L.) for phytoremediation of dredging sludge contaminated by trace metals
    Sarra Arbaoui
    Aricia Evlard
    Mohamed El Wafi Mhamdi
    Bruno Campanella
    Roger Paul
    Taoufik Bettaieb
    Biodegradation, 2013, 24 : 563 - 567
  • [42] Improving the phytoremediation of heavy metals contaminated soil by use of sewage sludge
    Placek, Agnieszka
    Grobelak, Anna
    Kacprzak, Malgorzata
    INTERNATIONAL JOURNAL OF PHYTOREMEDIATION, 2016, 18 (06) : 605 - 618
  • [43] Biochar influences phytoremediation of heavy metals in contaminated soils: an overview and perspectives
    Ren, Wei-Lin
    Ullah, Abid
    Yu, Xiao-Zhang
    Environmental Science and Pollution Research, 2024, 31 (52) : 61397 - 61425
  • [44] Phytoremediation potential of Xanthium strumarium for heavy metals contaminated soils at roadsides
    Khalid, N.
    Noman, A.
    Aqeel, M.
    Masood, A.
    Tufail, A.
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2019, 16 (04) : 2091 - 2100
  • [45] Phytoremediation potential of Xanthium strumarium for heavy metals contaminated soils at roadsides
    N. Khalid
    A. Noman
    M. Aqeel
    A. Masood
    A. Tufail
    International Journal of Environmental Science and Technology, 2019, 16 : 2091 - 2100
  • [46] Phytoremediation strategies for soils contaminated with heavy metals: Modifications and future perspectives
    Sarwar, Nadeem
    Imran, Muhammad
    Shaheen, Muhammad Rashid
    Ishaque, Wajid
    Kamran, Muhammad Asif
    Matloob, Amar
    Rehim, Abdur
    Hussain, Saddam
    CHEMOSPHERE, 2017, 171 : 710 - 721
  • [47] Phytoremediation potential of wild plants growing on soil contaminated with heavy metals
    Cudic, Vladica
    Stojiljkovic, Dragoslava
    Jovovic, Aleksandar
    ARHIV ZA HIGIJENU RADA I TOKSIKOLOGIJU-ARCHIVES OF INDUSTRIAL HYGIENE AND TOXICOLOGY, 2016, 67 (03): : 229 - 239
  • [48] Discussion on phytoremediation using energy plants for heavy metals contaminated soil
    Yan, J.
    Ji, M. L.
    Lin, H.
    Li, H. X.
    ADVANCES IN ENERGY SCIENCE AND EQUIPMENT ENGINEERING, 2015, : 1315 - 1319
  • [49] Phytoremediation of contaminated soils by heavy metals and PAHs. A brief review
    Cristaldi, Antonio
    Conti, Gea Oliveri
    Jho, Eun Hea
    Zuccarello, Pietro
    Grasso, Alfina
    Copat, Chiara
    Ferrante, Margherita
    ENVIRONMENTAL TECHNOLOGY & INNOVATION, 2017, 8 : 309 - 326
  • [50] The use of dialdehyde starch derivatives in the phytoremediation of soils contaminated with heavy metals
    Antonkiewicz, Jacek
    Para, Andrzej
    INTERNATIONAL JOURNAL OF PHYTOREMEDIATION, 2016, 18 (03) : 245 - 250