García G;Faz A;Conesa H M,Selection of autochthonous plant species from SE Spain for soil lead phytoremediation purposes,Water,Air & Soil Pollution,2003.
Clemente R;Walker D J;Roig A,Heavy metal bioavailability in a soil affected by mineral sulphides contamination following the mine spillage at Aznalcóllar (Spain),Biodegradation,2003(3).
[13]
Kambhampati M S;Begonia G B;Begonia M F T,Phytoremediation of a lead-contaminated soil using morning glory (Ipomoea iacunosa):Effects of a synthetic chelate,Environmental Contamination and Toxicology,2003(2).
Padmavathiamma P K;Li L Y,Phytoremediation technology:Hyperaccumulation metals in plants,Water,Air & Soil Pollution,2007(1/4).
[16]
Mendez M O;Glenn E P;Maier R M,Phytostabilization potential of quailbush for mine tailings:Growth,metal accumulation,and microbial community changes,Journal of Environmental Quality,2007(1).
[17]
Lux A ;Sottnikova A ;Opatrna J ;Greger M,Differences in structure of adventitious roots in Salix clones with contrasting characteristics of cadmium accumulation and sensitivity,Physiologia plantarum?,2004, 120(4).
Baker A J M,Accumulators and excluders-strategies in the response of plants to heavy-metals,Journal of Plant Nutrition and Soil Science,1981.
[21]
Kabata-Pendias A;Pendias H,Trace elements in soils and plants,Florida:CRC Press,2000.
[22]
Matos A T;Fontes M P F;Jordao C P,Mobility and retention of Cd,Zn,Cu and Pb in a Brazilian Oxisol profiles,Acapulco.New York:Transactions,1994.
[23]
Kyung Won Seo ;Yowhan Son ;Charles C. Rhoades ;Nam Jin Noh ;Jin Woo Koo ;Jeong-Gyu Kim,Seedling Growth And Heavy Metal Accumulation Of Candidate Woody Species For Revegetating Korean Mine Spoils,Restoration Ecology?,2008, 16(4).
Sinhal V K;Srivastava A;Singh V P,EDTA and citric acid mediated phytoextraction of Zn,Cu,Pb and Cd through marigold(Tagetes erecta),Journal of Environmental Biology,2010.