Phytoremediation of toxic metal polluted soil: screening for new indigenous accumulator and translocator plant species, northern Anambra Basin, Nigeria

Author:

Ameh E. G.,Omatola O. D.,Akinde S. B.

Publisher

Springer Science and Business Media LLC

Subject

Earth-Surface Processes,Geology,Pollution,Soil Science,Water Science and Technology,Environmental Chemistry,Global and Planetary Change

Reference31 articles.

1. Baker AJM, Brooks RR (1989) Terrestrial higher plants which hyperaccumulate metallic elements. A review of their distribution, ecology and phytochemistry. Biorecovery 1:81–126

2. Baker AJM, McGrath SP, Reeves RD, Smith JAC (2000) Metal hyperaccumulator plants: a review of the ecology and physiology of a biological resource for phytoremediation of metal-polluted soils. In: Terry N, Banuelos G (eds) Phytoremediation of contaminated soil and water. Lewis Publishers, Boca Raton, FL, pp 85–107

3. Balabanova B, Stafilov T, Baceva K (2015) Bioavailability and bioaccumulation characterization of essential and heavy metal, contents in R. acetosa, S. oleracea and U. dioica from copper polluted and referent areas. J Environ Health Sci 13(2):1–13

4. Bowen HJM (1979) Environmental chemistry of the elements. Academic press, London, p 333

5. Bu-Olayan AH, Thomas BV (2009) Translocation and bioaccumulation of trace metals in desert plants of Kuwait Governorates. Res J Environ Sci 3:581–587

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