Ding C, Cheng W, Nie X (2019) Microorganisms and radionuclides. In: Interface science and
technology, vol 29. Elsevier, Amsterdam, pp 107–139
Earis P (2009) Cold and ultracold molecules: Durham University, UK, 15–17 April 2009, vol 142.
Royal Society of Chemistry
Erlanger S (1992) Medical care in Russia seems near a collapse. New York Times, pp 1–6
El Mamouni R, Jacquet R, Gerin P, Agathos SN (2002) Influence of electron donors and acceptors
on the bioremediation of soil contaminated with trichloroethene and nickel: laboratory-and
pilot-scale study. Water Sci Technol 45(10):49–54
Espinoza-Sánchez MA, Arévalo-Niño K, Quintero-Zapata I, Castro-González I, Almaguer-Cantú V
(2019) Cr (VI) adsorption from aqueous solution by fungal bioremediation based using Rhizopus sp. J Environ Manag 251:109595
Fontenelle FR, Taniguchi S, da Silva J, Lourenço RA (2019) Environmental quality survey of an
industrialized estuary and an Atlantic Forest Biosphere Reserve through a comparative appraisal
of organic pollutants. Environ Pollut 248:339–348
Francis AJ (2006) Microbial transformations of radionuclides and environmental restoration
through bioremediation. Citeseer
Fredrickson JK, Kostandarithes HM, Li SW, Plymale AE, Daly M (2000) Reduction of fe (III), cr
(VI), U (VI), and tc (VII) by Deinococcus radiodurans R1. Appl Environ Microbiol 66
(5):2006–2011
Fredrickson JK, Zachara JM, Balkwill DL, Kennedy D, Shu-mei WL, Kostandarithes HM,
Brockman FJ (2004) Geomicrobiology of high-level nuclear waste-contaminated vadose sediments at the Hanford site, Washington state. Appl Environ Microbiol 70(7):4230–4241
Gabrieli J, Cozzi G, Vallelonga P, Schwikowski M, Sigl M, Eickenberg J, Cescon P (2011)
Contamination of Alpine snow and ice at Colle Gnifetti, Swiss/Italian Alps, from nuclear
weapons tests. Atmos Environ 45(3):587–593
Gadd GM, Fomina M (2011) Uranium and fungi. Geomicrobiol J 28(5–6):471–482
Gogada R, Singh SS, Lunavat SK, Pamarthi MM, Rodrigue A, Vadivelu B, Apte SK (2015)
Engineered Deinococcus radiodurans R1 with NiCoT genes for bioremoval of trace cobalt
from spent decontamination solutions of nuclear power reactors. Appl Microbiol Biotechnol 99
(21):9203–9213
Hildén K, Mäkelä MR (2018) Role of fungi in wood decay. In: Reference module in life sciences.
Elsevier, Amsterdam
Humphries AC, Macaskie LE (2002) Reduction of Cr (VI) by Desulfovibrio vulgaris and
Microbacterium sp. Biotechnol Lett 24(15):1261–1267
International Atomic Energy Agency (2010) Estimation of global inventories of radioactive waste
and other radioactive materials. Accessed from https://www.iaea.org/publications/7857/estima
tion-of-global-inventories-of-radioactive-waste-and-other-radioactive-materials
Istok JD, Senko JM, Krumholz LR, Watson D, Bogle MA, Peacock A, White DC (2004) In situ
bioreduction of technetium and uranium in a nitrate-contaminated aquifer. Environ Sci Technol
38(2):468–475
Ite AE, Ibok UJ (2019) Role of plants and microbes in bioremediation of petroleum hydrocarbons
contaminated soils. Int J 7(1):1–19
Iwamoto K, Minoda A (2018) Bioremediation of biophilic radionuclides by algae. https://doi.org/
10.5772/intechopen.81492
Jaiswal S, Singh DK, Shukla P (2019) Gene editing and systems biology tools for pesticide
bioremediation: a review. Front Microbiol 10:87
Jiang L, Young MH, Hardee K (2008) Population, urbanization and the environment. World Watch
21(5):34–39
Jiang L, Liu X, Yin H, Liang Y, Liu H, Miao B, Yang J (2019) The utilization of biomineralization
technique based on microbial induced phosphate precipitation in remediation of potentially
toxic ions contaminated soil: a mini review. Ecotoxicol Environ Saf 191:110009
Katarína D, Slavomíra M, Hana D, Katarína L, Hana H (2018) The adaptation mechanisms of
bacteria applied in bioremediation of hydrophobic toxic environmental pollutants: how
13 Role of Microbes in Bioremediation of Radioactive Waste
349
technology, vol 29. Elsevier, Amsterdam, pp 107–139
Earis P (2009) Cold and ultracold molecules: Durham University, UK, 15–17 April 2009, vol 142.
Royal Society of Chemistry
Erlanger S (1992) Medical care in Russia seems near a collapse. New York Times, pp 1–6
El Mamouni R, Jacquet R, Gerin P, Agathos SN (2002) Influence of electron donors and acceptors
on the bioremediation of soil contaminated with trichloroethene and nickel: laboratory-and
pilot-scale study. Water Sci Technol 45(10):49–54
Espinoza-Sánchez MA, Arévalo-Niño K, Quintero-Zapata I, Castro-González I, Almaguer-Cantú V
(2019) Cr (VI) adsorption from aqueous solution by fungal bioremediation based using Rhizopus sp. J Environ Manag 251:109595
Fontenelle FR, Taniguchi S, da Silva J, Lourenço RA (2019) Environmental quality survey of an
industrialized estuary and an Atlantic Forest Biosphere Reserve through a comparative appraisal
of organic pollutants. Environ Pollut 248:339–348
Francis AJ (2006) Microbial transformations of radionuclides and environmental restoration
through bioremediation. Citeseer
Fredrickson JK, Kostandarithes HM, Li SW, Plymale AE, Daly M (2000) Reduction of fe (III), cr
(VI), U (VI), and tc (VII) by Deinococcus radiodurans R1. Appl Environ Microbiol 66
(5):2006–2011
Fredrickson JK, Zachara JM, Balkwill DL, Kennedy D, Shu-mei WL, Kostandarithes HM,
Brockman FJ (2004) Geomicrobiology of high-level nuclear waste-contaminated vadose sediments at the Hanford site, Washington state. Appl Environ Microbiol 70(7):4230–4241
Gabrieli J, Cozzi G, Vallelonga P, Schwikowski M, Sigl M, Eickenberg J, Cescon P (2011)
Contamination of Alpine snow and ice at Colle Gnifetti, Swiss/Italian Alps, from nuclear
weapons tests. Atmos Environ 45(3):587–593
Gadd GM, Fomina M (2011) Uranium and fungi. Geomicrobiol J 28(5–6):471–482
Gogada R, Singh SS, Lunavat SK, Pamarthi MM, Rodrigue A, Vadivelu B, Apte SK (2015)
Engineered Deinococcus radiodurans R1 with NiCoT genes for bioremoval of trace cobalt
from spent decontamination solutions of nuclear power reactors. Appl Microbiol Biotechnol 99
(21):9203–9213
Hildén K, Mäkelä MR (2018) Role of fungi in wood decay. In: Reference module in life sciences.
Elsevier, Amsterdam
Humphries AC, Macaskie LE (2002) Reduction of Cr (VI) by Desulfovibrio vulgaris and
Microbacterium sp. Biotechnol Lett 24(15):1261–1267
International Atomic Energy Agency (2010) Estimation of global inventories of radioactive waste
and other radioactive materials. Accessed from https://www.iaea.org/publications/7857/estima
tion-of-global-inventories-of-radioactive-waste-and-other-radioactive-materials
Istok JD, Senko JM, Krumholz LR, Watson D, Bogle MA, Peacock A, White DC (2004) In situ
bioreduction of technetium and uranium in a nitrate-contaminated aquifer. Environ Sci Technol
38(2):468–475
Ite AE, Ibok UJ (2019) Role of plants and microbes in bioremediation of petroleum hydrocarbons
contaminated soils. Int J 7(1):1–19
Iwamoto K, Minoda A (2018) Bioremediation of biophilic radionuclides by algae. https://doi.org/
10.5772/intechopen.81492
Jaiswal S, Singh DK, Shukla P (2019) Gene editing and systems biology tools for pesticide
bioremediation: a review. Front Microbiol 10:87
Jiang L, Young MH, Hardee K (2008) Population, urbanization and the environment. World Watch
21(5):34–39
Jiang L, Liu X, Yin H, Liang Y, Liu H, Miao B, Yang J (2019) The utilization of biomineralization
technique based on microbial induced phosphate precipitation in remediation of potentially
toxic ions contaminated soil: a mini review. Ecotoxicol Environ Saf 191:110009
Katarína D, Slavomíra M, Hana D, Katarína L, Hana H (2018) The adaptation mechanisms of
bacteria applied in bioremediation of hydrophobic toxic environmental pollutants: how
13 Role of Microbes in Bioremediation of Radioactive Waste
349
