160

Bioremediation for Sustainable Environmental Cleanup

Adriano, D. C., J. Albright, F. W. Whick, I. K. Islandar and C. Sherony. 1997. Remediation of soil contaminated with

metals and radionuclide-contaminated soils. pp. 27–46. In: I. K. Islandar and D. C. Adriano (Eds.). Remediation

of Soils Contaminated with Metals. Northwood, UK. SciRev-Review the scientific review process.

Adriano, D. C. 2001. Bioavailability of trace metals. In: Trace Elements in Terrestrial Environments Springer, New

York.

Adriano, D. C., W. W. Wenzel, J. Vangronsveld and N. S. Bolan. 2004. Role of assisted natural remediation in

environmental cleanup. Geoderma. 2-4: 121–142.

Agnello, A. C., M. Bagard, E. D. van Hullebusch, G. Esposito and D. Huguenot. 2016. Comparative bioremediation

of heavy metals and petroleum hydrocarbons co-contaminated soil by natural attenuation, phytoremediation,

bioaugmentation and bioaugmentation-assisted phytoremediation. Sci. Total Environ. 563: 693–703.

Alexander, M. 2000. Aging, bioavailability, and overestimation of risk from environmental pollutants. Environ. Sci.

Technol. 34: 4259–4265.

Alloway, B. J. 2013. Sources of heavy metals and metalloids in soils. In: B. Alloway (Eds.). Heavy Metals in Soils:

Environmental Pollution Springer, Dordrecht.

Ando, J. 1987. Thermal phosphate. pp. 93–124. In: F. T. Nielsson (Eds.). Manual of Fertilizer Processing, Fertilizer

Science and Technology Series. New York, Marcel Dekker Inc.

Anjaneya, O., S. Y. Souche, M. Santoshkumar and T. B. Karegoudar. 2011. Decolorization of sulfonated azo dye

Metanil Yellow by newly isolated bacterial strains: Bacillus sp. strain AK1 and Lysinibacillus sp. strain AK2.

J. Hazard. Mater. 190(1): 351–358.

Anju, M. and D. K. Banerjee. 2003. Heavy metal levels and solid phase speciation in street dusts of Delhi, India.

Environ. Pollut. 123: 95–105.

Anju, M. and D. K. Banerjee. 2010. Comparison of two sequential extraction procedures for heavy metal partitioning

in mine tailings. Chemosphere. 78: 1393–1402.

Anju, M. and D. K. Banerjee. 2011. Associations of cadmium, zinc, and lead in soils from a lead and zinc mining area

as studied by single and sequential extractions. Environ. Monit. Assess. 176: 67–85.

Baath, E. 1989. Effects of heavy metals in soil on microbial processes and populations (a review). Water Air Soil

Pollut. 47: 335–379.

Babich, H. and G. Stotzky. 1985. Heavy metal toxicity to microbe-mediated ecologic processes: a review and potential

application to regulatory policies. Environ. Res. 36: 111–37.

Babu, A. G., P. J. Shea, D. Sudhakar, I. BooJung and B. T. Oh. 2015. Potential use of Pseudomonas koreensis

AGB-1 in association with Miscanthus sinensis to remediate heavy metal(loid)-contaminated mining site soil.

J. Environ. Manage. 151: 160–166.

Bachate, S. P., Khapare, R. M. Kisan and M. K. Kodam. 2012. Oxidation of arsenite by two β-proteobacteria isolated

from soil. Appl. Microbiol. Biotechnol. 93: 2135–2145.

Baker, A. and R. Brooks. 1989. Terrestrial higher plants which hyper accumulate metallic elements—a review of their

distribution, ecology and phytochemistry. Biorecovery. 1: 81–126.

Battaglia‐Brunet, F., M. C. Dictor, F. Garrido, C. Crouzet, D. Morin and K. Dekeyser. 2002. An arsenic (III)‐oxidizing

bacterial population: selection, characterization, and performance in reactors. J. Appl. Microbiol. 93: 656–6.

Bauelos, G. and D. Meek. 1990. Accumulation of selenium in plants grown on selenium-treated soil. J. Environ. Qual.

19: 772.

Bernd, L. 2007. Characterization, Treatment and Environmental Impacts. In Mine Wastes.: Springer, Berlin,

Heidelberg.

Baualos, G. S., G. Cardon, B. Mackey, J. Ben-Asher, L. Wu, P. Beuselinck, S. Akohoue and S. Zambrzuski. 1993.

Plant and environment interactions, boron and selenium removal in boron-laden soils by four sprinkler

irrigated plant species. J. Environ. Quali. 22: 786–792.

Bittsanszkya. A., T. Kömives, G. Gullner, G. Gyulai, J. Kiss, L. Heszky, L. Radimszky and H. Rennenberg. 2005.

Ability of transgenic poplars with elevated glutathione content to tolerate zinc (2+) stress. Environ. Int.

31: 251–254.

Blaylock, M. J., D. E. Salt, S. Dushenkov, O. Zakharova, C. Gussman, Y. Kapulnik, B. D. Ensley and I Raskin.

1997. Enhanced accumulation of Pb in Indian mustard by soil-applied chelating agents. Environ. Sci. Technol.

31: 860–865.

Bolan, N., A. Kunhikrishnan, R. Thangarajan, J. Kumpiene, J. Park and T. Makino. 2014. Remediation of heavy

metal(loid)s contaminated soils-To mobilize or to immobilize. J. Hazard. Mater. 266: 141–166.

Bolan, S., C. Adriano and R. Naidu. 2003. Role of phosphorus mobilization and bioavailability of heavy metals in the

soil-plant system. Rev. Environ. Contam. Toxicol. 177: 1–44.

Boros-Lajszner, E., J. Wyszkowska, A. Borowik and J. Kucharski 2021. The response of the soil microbiome to

contamination with cadmium, cobalt and nickel in soil sown with Brassica napus. Minerals. 11: 498.

Bradl, H. 2004. Adsorption of heavy metal ions on soils and soils constituents. J. Colloid Interface Sci. 277: 1–18.