Chrysochoou M, Zhang X, Amador J (2013) Comparison of Cr(VI) reduction by aerobic bacteria in
culture and soil conditions. Soil Sediment Contam 22(3):273–287
Colica G, Mecarozzi PC, De Philippis R (2010) Treatment of Cr(VI)-containing wastewaters with
exopolysaccharide-producing cyanobacteria in pilot flow through and batch systems. Appl
Microbiol Biotechnol 87(5):1953–1961
Cramer LA, Basson J, Nelson LR (2004) The impact of platinum production from UG2 ore on
ferrochrome production in South Africa. J South Afr Inst Min Metall 104(9):517–527
Dakiky M, Khamis M, Manassra A, Mer’eb M (2002) Selective adsorption of Cr(VI) in industrial
waste water using low-cost abundantly available adsorbents. Adv Environ Res 6(4):533–540
Dastidar A, Wang YT (2010) Kinetics of arsenite oxidation by chemoautotrophic
Thiomonasarsenivorans strain b6 in a continuous stirred tank reactor. J Environ Eng 136
(10):1119–1127
Eisler R (1988) Lead hazards to fish, wildlife, and invertebrates: a synoptic review. Organization
series: contaminant hazard reviews-contaminant hazard reviews-report 14. Biological Report 85
(1.14). U.S. Department of the Interior, Fish and Wildlife Service
EPA-Odessa (2005) Pump and treat and in situ chemical treatment of contaminated groundwater at
the Odessa Chromium II South Plume Superfund Site Odessa, Ector County, Texas.
U.S. Environmental Protection Agency. Available online at http://costperformance.org/pdf/
odessa_ii_06-30-2005.pdf
Federal Register (1999) Executive order 13751- safeguarding the nation from the impacts of
invasive species (Dec 5, 2016). https://www.invasivespeciesinfo.gov/laws/execorder.shtml.
Last accessed 14/02/18, 3:00 PM
Federal Register (2004) Occupational Safety and Health Administration. Occupational exposure to
hexavalent chromium. 69 Federal Register 59404. October 4, 2004
Flessel CP (1979) Trace metals in health and disease. Raven Press, New York, pp 109–122
Foulkes JM, Deplanche K, Sargent F, Macaskie L, Lloyd JR (2016) A novel aerobic mechanism for
reductive palladium biomineralization and recovery by Escherichia coli. Geomicrobiol J 33
(3–4):230–236
Francis W, Croft H (1849) The chemical gazette, or, Journal of Practical Chemistry, in all its
applications to pharmacy, arts and manufactures, vol. 7. London, R. and J. E. Taylor [etc., 184259]
Fu F, Wang Q (2011) Removal of heavy metal ions from wastewaters: a review. J Environ Manag
92(3):407–418
Gadd GM (2009) Biosorption: critical review of scientific rationale, environmental importance and
significance for pollution treatment. J Chem Technol Biotechnol 84(1):13–28
Gao Y, Truong YB, Cacioli P, Butler P, Kyratzis IL (2014) Bioremediation of pesticide contaminated water using an organophosphate degrading enzyme immobilized on nonwoven polyester
textiles. Enzym Microb Technol 10(54):38–44
Garrels RM, Christ CL (1965) In solutions, minerals and equilibria. Harper and Row, New York, pp
403–435
Gaur N, Flora G, Yadav M, Tiwari A (2014) A review with recent advancements on
bioremediation-based abolition of heavy metals. Environ Sci Process Impacts 16(2):180–193
Gautam S, Kaithwas G, Bharagava RN, Saxena G (2017) Pollutants in tannery wastewater,
pharmacological effects and bioremediation approaches for human health protection and environmental safety. In: Bharagava RN (ed) Environmental pollutants and their bioremediation
approaches, 1st edn. CRC Press/Taylor & Francis, Boca Raton, pp 369–396. https://doi.org/10.
1201/9781315173351-14
Gilmour CC, Henry EA (1991) Mercury methylation in aquatic systems affected by acid deposition.
Environ Pollut 71(2–4):131–169
Gioia SMCL, Pimentel MM, Tessler M, Dantas EL, Campos JEG, Guimarães EM, Maruoka MTS,
Nascimento ELC (2006) Sources of anthropogenic lead in sediments from an artificial lake in
Brasília–central Brazil. Sci Total Environ 356(1-3):125–142
2 Advances in Bioremediation of Toxic Heavy Metals and Radionuclides in. . .
47
culture and soil conditions. Soil Sediment Contam 22(3):273–287
Colica G, Mecarozzi PC, De Philippis R (2010) Treatment of Cr(VI)-containing wastewaters with
exopolysaccharide-producing cyanobacteria in pilot flow through and batch systems. Appl
Microbiol Biotechnol 87(5):1953–1961
Cramer LA, Basson J, Nelson LR (2004) The impact of platinum production from UG2 ore on
ferrochrome production in South Africa. J South Afr Inst Min Metall 104(9):517–527
Dakiky M, Khamis M, Manassra A, Mer’eb M (2002) Selective adsorption of Cr(VI) in industrial
waste water using low-cost abundantly available adsorbents. Adv Environ Res 6(4):533–540
Dastidar A, Wang YT (2010) Kinetics of arsenite oxidation by chemoautotrophic
Thiomonasarsenivorans strain b6 in a continuous stirred tank reactor. J Environ Eng 136
(10):1119–1127
Eisler R (1988) Lead hazards to fish, wildlife, and invertebrates: a synoptic review. Organization
series: contaminant hazard reviews-contaminant hazard reviews-report 14. Biological Report 85
(1.14). U.S. Department of the Interior, Fish and Wildlife Service
EPA-Odessa (2005) Pump and treat and in situ chemical treatment of contaminated groundwater at
the Odessa Chromium II South Plume Superfund Site Odessa, Ector County, Texas.
U.S. Environmental Protection Agency. Available online at http://costperformance.org/pdf/
odessa_ii_06-30-2005.pdf
Federal Register (1999) Executive order 13751- safeguarding the nation from the impacts of
invasive species (Dec 5, 2016). https://www.invasivespeciesinfo.gov/laws/execorder.shtml.
Last accessed 14/02/18, 3:00 PM
Federal Register (2004) Occupational Safety and Health Administration. Occupational exposure to
hexavalent chromium. 69 Federal Register 59404. October 4, 2004
Flessel CP (1979) Trace metals in health and disease. Raven Press, New York, pp 109–122
Foulkes JM, Deplanche K, Sargent F, Macaskie L, Lloyd JR (2016) A novel aerobic mechanism for
reductive palladium biomineralization and recovery by Escherichia coli. Geomicrobiol J 33
(3–4):230–236
Francis W, Croft H (1849) The chemical gazette, or, Journal of Practical Chemistry, in all its
applications to pharmacy, arts and manufactures, vol. 7. London, R. and J. E. Taylor [etc., 184259]
Fu F, Wang Q (2011) Removal of heavy metal ions from wastewaters: a review. J Environ Manag
92(3):407–418
Gadd GM (2009) Biosorption: critical review of scientific rationale, environmental importance and
significance for pollution treatment. J Chem Technol Biotechnol 84(1):13–28
Gao Y, Truong YB, Cacioli P, Butler P, Kyratzis IL (2014) Bioremediation of pesticide contaminated water using an organophosphate degrading enzyme immobilized on nonwoven polyester
textiles. Enzym Microb Technol 10(54):38–44
Garrels RM, Christ CL (1965) In solutions, minerals and equilibria. Harper and Row, New York, pp
403–435
Gaur N, Flora G, Yadav M, Tiwari A (2014) A review with recent advancements on
bioremediation-based abolition of heavy metals. Environ Sci Process Impacts 16(2):180–193
Gautam S, Kaithwas G, Bharagava RN, Saxena G (2017) Pollutants in tannery wastewater,
pharmacological effects and bioremediation approaches for human health protection and environmental safety. In: Bharagava RN (ed) Environmental pollutants and their bioremediation
approaches, 1st edn. CRC Press/Taylor & Francis, Boca Raton, pp 369–396. https://doi.org/10.
1201/9781315173351-14
Gilmour CC, Henry EA (1991) Mercury methylation in aquatic systems affected by acid deposition.
Environ Pollut 71(2–4):131–169
Gioia SMCL, Pimentel MM, Tessler M, Dantas EL, Campos JEG, Guimarães EM, Maruoka MTS,
Nascimento ELC (2006) Sources of anthropogenic lead in sediments from an artificial lake in
Brasília–central Brazil. Sci Total Environ 356(1-3):125–142
2 Advances in Bioremediation of Toxic Heavy Metals and Radionuclides in. . .
47
