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Hydrophytes for removing heavy metals

                References                                              doi: 10.21608/asfr.2020.43080.1008
                                                                    13.  Ruey  SJ,  Wen  CH,  Ya  HH.  Treatment  of  phenol  in
                1.  Nafea  EMA.  Floating  macrophytes  efficiency  for   synthetic  saline  wastewater  by  solvent  extraction  and
                   removing of heavy metals and phenol from wastewaters.   two-phase membrane biodegradation. J Hazard Mater.
                   Egypt J Aquat Biol Fish. 2019a;23(4):1-9.            2009;164(1):46-52.
                   doi: 10.21608/EJABF.2019.50020                       doi: 10.1016/j.jhazmat.2008.07.116
                2.  Aziz  KHH, Mustafa FS, Omer KM, Hama  S,        14.  FAO Food and  Agriculture  Organization.  3-Floating
                   Hamarawf RF, Rahman KO. Heavy metal pollution in     Aquatic Macrophytes-Duckweeds. United Nations: FAO
                   the aquatic environment: Efficient and low-cost removal   Food and Agriculture Organization; 2010. p. 29.
                   approaches  to  eliminate  their  toxicity: A  review.  RSC   15.  Sago Pondweed (Stuckenia pectinata). Available from:
                   Adv. 2023;13(26):17595-17610.                        https://www.illinoiswildflowers.info  [Last  accessed  on
                   doi: 10.1039/D3RA00723E                              2023 Jun 17].
                3.  Elshamy  MM,    Heikal   YM,   Bonanomi    G.   16.  Van  Wijk  RJ.  Ecological  studies  on  Potamogeton
                   Phytoremediation  efficiency  of  Portulaca oleracea L.   pectinatus  L.  I.  General  characteristics,  biomass
                   naturally  growing  in  some  industrial  sites,  Dakahlia   production and life cycles under field conditions. Aquat
                   district, Egypt. Chemosphere. 2019;225:678-687.      Bot. 1988;31(3-4):211-258.
                   doi: 10.1016/j.chemosphere.2019.03.099               doi: 10.1016/0304-3770(88)90015-0
                4.  Rizwan M, El-Shamy M, Abdel-Aziz HMM. Assessment   17.  Nafea EMA. Characterization  of environmental
                   of trace element  and  macronutrient  accumulation   conditions required for production of livestock and fish
                   capacity  of  two  native  plant  species  in  three  different   fodder  from  duckweed  (Lemna gibba  L.).  J  Mediterr
                   Egyptian  mine  areas  for  remediation  of  contaminated   Ecol. 2016;14:5-11.
                   soils. Ecol Indic. 2019;106:105463.              18.  Syed I, Fatima  H, Mohammed  A, Siddiqui  MA.
                   doi: 10.1016/j.ecolind.2019.105463                   Ceratophyllum demersum a free-floating aquatic plant:
                5.  Nafea EMA. Ecological  performance  of  Ludwigia    A review. Indian J Pharm Biol Res. 2018;6(2):10-17.
                   stolonifera  (Guill.  &  Perr.)  P.H.  Raven  under      doi: 10.30750/ijpbr.6.2.3
                   different  pollution  loads.  Egypt  J  Aquat  Biol  Fish.   19.  Chen H, Pan SS. Bioremediation potential of spirulina:
                   2019b;23(4):39-50.                                   Toxicity and biosorption studies of lead. J Zhejiang Univ
                   doi: 10.21608/EJABF.2019.50015                       SCI Biol. 2005;6B(3):171-174.
                6.  Jadia CD, Fulekar MH. Phytoremediation of heavy metals:      doi: 10.1631/jzus.2005.B0171
                   Recent techniques. Afr J Biotechnol. 2009;8:921-928.  20.  Salama  ES,  Hyun  SR,  Dev  S,  et al. Algae as a green
                7.  Saravanan P, Pakshirajan K, Saha P. Kinetics of phenol   technology  for heavy metals  removal  from various
                   and  m-cresol  biodegradation  by  an  indigenous  mixed   wastewater. World J Microbiol Biotechnol. 2019;35:75.
                   microbial culture isolated from a sewage treatment plant.      doi: 10.1007/s11274-019-2648-3
                   J Environ Sci (China). 2008;20:1508-1513.        21.  Mofeed J. Biosorption  of heavy  metals  from aqueous
                   doi: 10.1016/S1001-0742(08)62557-7                   industrial effluent by non-living biomass of two marine
                8.  Nafea EMA, Šera B. Bioremoval of heavy metals from   green  algae  Ulva  lactuca  and  Dunaliella  salina  as
                   polluted soil by Schoenoplectus litoralis (Schrad.) Palla   biosorpents. Egypt Soc Environ Sci. 2017;16(1):43-52.
                   and Cyperus rotundus L. (Cyperaceae). Egypt J Aquat      doi: 10.21608/cat.2017.14267
                   Biol Fish. 2020;24(5):217-226.                   22.  Abdel-Aal EI, Mofeed J. Mass production of Arthrospira
                   doi: 10.21608/EJABF.2020.104704                      platensis on the livestock manure for use as a protein
                9.  Dimassi SN, Hahladakis JN, Yahia MND, Ahmad MI,     source in animal feed.  Egypt J  Aquat Biol Fish.
                   Sayadi S, Al-Ghouti MA. Degradation-fragmentation of   2020;24(7):725-739.
                   marine plastic waste and their environmental implications:      doi: 10.21608/ejabf.2020.127643
                   A critical review. Arab J Chem. 2022;15(11):104262.  23.  Hak  K,  Ritchie  RJ,  Dummee  V.  Bioaccumulation  and
                   doi: 10.1016/j.arabjc.2022.104262                    physiological responses of the Coontail, Ceratophyllum
                10.  Meagher RB. Phytoremediation of toxic elemental and   demersum exposed to copper, zinc and in combination.
                   organic pollutants. Curr Opin Plant Biol. 2000;3:153-162.  Ecotoxicol Environ Saf. 2020;189:110049.
                   doi: 10.1016/s1369-5266(99)00054-0                   doi: 10.1016/j.ecoenv.2019.110049
                11.  LeDuc  D,  Terry  N.  Phytoremediation  of  toxic  trace   24.  Alhaithloul  HAS, Soliman KG, Ibrahim  AH,  et al.
                   elements in soil and water. J Ind Microbiol Biotechnol.   Evaluation  of  the  water  quality  index  of  some  drains
                   2005;32:514-520.                                     linked to the bahr el-baqar drain and study of heavy metals
                   doi: 10.1007/s10295-005-0227-0                       in vegetables grown around them and their potential risks
                12.  Nafea EMA. Monitoring of some heavy metals  in the   to the health. Water Air Soil Pollut. 2025;236:539.
                   water and three submerged plants of the southern part of      doi: 10.1007/s11270-025-08110-y
                   lake Manzala. J Aquat Sci Fish Resour. 2020;1:7-10.  25.  Allen  SE,  Grimshaw  HM,  Parkinson  JA,  Quamby



                Volume 22 Issue 4 (2025)                        73                           doi: 10.36922/AJWEP025150105
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