Improved Understanding of Hyperaccumulation Yields Commercial Phytoextraction and Phytomining Technologies

Author:

Chaney Rufus L.1,Angle J. Scott2,Broadhurst C. Leigh1,Peters Carinne A.3,Tappero Ryan V.4,Sparks Donald L.4

Affiliation:

1. USDA-ARS-Environmental Management and By-Product Utilization Lab.; Beltsville MD 20705

2. Univ. of Georgia; Athens GA 30602

3. Dep. Plant Science and Landscape Architecture; Univ. of Maryland; College Park MD 20742

4. Plant and Soil Sciences Dep.; Univ. of Delaware; Newark DE 19717

Publisher

Wiley

Subject

Management, Monitoring, Policy and Law,Pollution,Waste Management and Disposal,Water Science and Technology,Environmental Engineering

Reference192 articles.

1. Bacterial inoculants affecting nickel uptake by Alyssum murale from low, moderate, and high Ni soils;Abou-Shanab;Soil Biol. Biochem.,2006

2. Rhizobacterial effects on nickel extraction from soil and uptake by Alyssum murale;Abou-Shanab;New Phytol.,2003

3. Utilization of rice plants for phytoremediation in heavy metal polluted soils;Ae;Farming Japan,2002

4. Phytomining for nickel, thallium, and gold;Anderson;J. Geochem. Explor.,1999

5. Metal phytoextraction-A survey of potential risks;Angle;Int. J. Phytorem.,2005

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