Arsenic bioremediation potential of a new arsenite-oxidizing bacterium Stenotrophomonas sp. MM-7 isolated from soil

Author:

Bahar Md. Mezbaul,Megharaj Mallavarapu,Naidu Ravi

Publisher

Springer Science and Business Media LLC

Subject

Pollution,Environmental Chemistry,Bioengineering,Microbiology,Environmental Engineering

Reference34 articles.

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2. Bhumbla DK, Keefer RF (1994) Arsenic mobilization and bioavailability in soils. In: Nriagu JO (ed) Arsenic in the environment. Part 1 Cycling and characterization. Wiley, New York, pp 51–82

3. Botes E, Heerden EV, Litthauer D (2007) Hyper-resistance to arsenic in bacteria isolated from an antimony mine in South Africa. S Afr J Sci 103:279–282

4. Cai L, Liu G, Rensing C, Wang G (2009) Genes involved in arsenic transformation and resistance associated with different levels of arsenic-contaminated soils. BMC Microbiol 9:4. doi: 10.1186/1471-2180-9-4

5. Clifford D (1990) Ion exchange and inorganic adsorption. In: Pontius F (ed) Water quality and treatment, AWWA handbook. McGraw-Hill, New York, p 9

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