Phytoremediation of heavy metal polluted soils and water: Progresses and perspectives

Author:

Lone Mohammad Iqbal,He Zhen-li,Stoffella Peter J.,Yang Xiao-e

Publisher

Zhejiang University Press

Subject

General Pharmacology, Toxicology and Pharmaceutics,General Veterinary,General Biochemistry, Genetics and Molecular Biology,General Medicine

Reference73 articles.

1. Alloway, B.J., 1995. Heavy Metals in Soils. Blackie Academic & Professional, London.

2. Baker, A.J.M., McGrath, S.P., Reeves, R.D., Smith, J.C.A., 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, p.85–108.

3. Brooks, R.R., 1998. Plants that Hyperaccumulate Heavy Metals. CAN International, Wallington, p.379.

4. Brown, S.L., Chaney, R.L., Scott Angle, J., 1995. Zinc and cadmium uptake by hyperaccumulator thlaspi-caerulescens grown in nutrient solution. Soil Sci. Soc. Am. J., 59(1): 125–133.

5. Caille, B., Vauleon, C., Leyval, C., 2005. Metal transfer to plants grown on a dredged sediment: Use of radioactive isotope Hg-203 and titanium. Sci. Total Environ., 341(1–3):227–239. [doi:10.1016/j.scitotenv.2004.09.020]

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