Bioremediation of Lead Compound Using Acinetobacter sp. 158; Optimization of Media and Cell Growth Dynamics
Author:
Publisher
Springer Singapore
Link
http://link.springer.com/content/pdf/10.1007/978-981-13-2784-1_38
Reference11 articles.
1. Wang X, Nie Z, He L, Wang Q, Sheng X (2017) Isolation of As—tolerant bacteria and their potentials of reducing As and Cd accumulation of edible tissues of vegetables in metal (loid)-contaminated soils. Sci Total Env 579:179–189
2. Mahbub MR, Kannan K, Naidu R, Mallavarapu M (2016) Mercury resistance and volatilization by Pseudoxanthomonas sp. SE1 isolated from soil. Environ Technol Innov 6:94–104
3. Mala JGS, Sujatha D, Rose C (2015) Inducible chromate reductase exhibiting extracellular activity in Bacillus methylotrophicus for chromium bioremediation. Microbiol Res 170:235–241
4. Davolos D, Pietrangeli B (2013) A molecular study on bacterial resistance to arsenic-toxicity in surface and underground waters of Latium (Italy). Ecotoxicol. Environ Saf 96:1–9
5. Bose M, Datta S, Bhattacharya P (2017) Studies on isolation, characterization and cell growth dynamics of a lead resistant bacterium Acenetobacter 158. Environ Technol Innov 8:103–112
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