Dickinson NM, Baker AJM, Doronila A, Laidlaw S, Reeves RD (2009) Phytoremediation of
inorganics: realism and synergies. Int J Phytoremediation 11:97–114
Domínguez MT, Madrid F, Marañón T, Murillo JM (2009) Cadmium availability in soil and
retention in oak roots: potential for phytostabilization. Chemosphere 76:480–486
Dunnet G, Crisp D, Conan G, Bourne W (1982) Oil pollution and seabird populations and
discussion. Philos Trans R Soc Lond B 297(1087):413–427
Elektorowicz M (1994) Bioremediation of petroleum-contaminated clayey soil with pretreatment.
Environ Technol 15:373–380
Ensley BD (2000) Rationale for use of phytoremediation. In: Raskin I, Ensley BD (eds)
Phytoremediation of toxic metals. Using plants to clean up the environment. Wiley,
New York, pp 3–11
Evanko CR, Dzombak DA (1997) Remediation of metals-contaminated soils and groundwater.
Technology evaluation report. GWRTAC – Ground-Water Remediation Technologies Analysis
Center, Pittsburgh
Ewan KB, Pamphlett R (1996) Increased inorganic mercury in spinal motor neurons following
chelating agents. Neurotoxicology 17:343–349
Firmino PIM, Farias RS, Barros AN, Buarque PMC, Rodrı’guez E, Lopes AC, dos Santos AB
(2015) Understanding the anaerobic BTEX removal in continuous-flow bioreactors for ex situ
bioremediation purposes. Chem Eng J 281:272–280
Forsyth JV, Tsao YM, Blem RD (1995) Bioremediation: when is augmentation needed? In:
Hinchee RE et al (eds) Bioaugmentation for site remediation. Battelle Press, Columbus, OH,
pp 1–14
Frutos FJG, Escolano O, García S, Mar Babín M, Fernández MD (2010) Bioventing remediation
and ecotoxicity evaluation of phenanthrene-contaminated soil. J Hazard Mater 183:806–813.
https://doi.org/10.1016/j.jhazmat.2010.07.098
Frutos FJG, Pérez R, Escolano O, Rubio A, Gimeno A, Fernandez MD, Carbonell G, Perucha C,
Laguna J (2012) Remediation trials for hydrocarbon-contaminated sludge from a soil washing
process: evaluation of bioremediation technologies. J Hazard Mater 199:262–271. https://doi.
org/10.1016/j.jhazmat.2011.11.017
Goldstein RM, Mallory LM, Alexander M (1985) Reasons for possible failure of inoculation to
enhance biodegradation. Appl Environ Microbiol 50:977–983
Gómez Orea D (2004) Recuperación de espacios degradados. Ediciones Mundi-Prensa, Madrid
Hamzah A, Phan CW, Abu Bakar NF, Wong KK (2013) Biodegradation of crude oil by constructed
bacterial consortia and the constituent single bacteria isolated from Malaysia. Biorem J 17:1–10
Hernández-Allica J, Becerril JM, Garbisu C (2008) Assessment of the phytoextraction potential of
high biomass crop plants. Environ Pollut 152:32–40
Hogan CN (2008) Magellanic penguin. http://www.igoterra.com/artspec_information
Katyayan A (2019) Fundamentals of agriculture, vol 2. Kushal Publication and Distributors,
Varanasi, pp 1–539
Kensa VM (2011) Bioremediation - an overview. J Indus Pollut Control 27(2):161–168
Killham K (1994) Soil ecology. Cambridge University Press, Cambridge
Kim S, Krajmalnik-Brown R, Kim J-O, Chung J (2014) Remediation of petroleum hydrocarboncontaminated sites by DNA diagnosis-based bioslurping technology. Sci Total Environ
497:250–259
Kumar A, Bisht BS, Joshi VD, Dhewa T (2011) Review on bioremediation of polluted environment: a management tool. Int J Environ Sci 1
Leahy JG, Colwell RR (1990) Microbial degradation of hydrocarbons in the environment. Microbial Rev 53(3):305–315
Ma LQ, Komar KM, Tu C, Zhang W, Cai Y, Kennelley ED (2001) A fern that hyperaccumulates
arsenic. Nature 409:579
Manning J, Boopathy R, Kulpa CF (1995) A laboratory study in support of the pilot demonstration
of a biological soil slurry reactor. Report no. SFIM-AEC-TS-CR-94038. US Army Environmental Center, Aberdeen Proving Ground, MD
Margesin R, Schinner F (2001) Bioremediation (natural attenuation and biostimulation) of dieseloil-contaminated soil in an alpine glacier skiing area. Appl Environ Microbiol 67:3127–3133
98
S. K. Yadav
inorganics: realism and synergies. Int J Phytoremediation 11:97–114
Domínguez MT, Madrid F, Marañón T, Murillo JM (2009) Cadmium availability in soil and
retention in oak roots: potential for phytostabilization. Chemosphere 76:480–486
Dunnet G, Crisp D, Conan G, Bourne W (1982) Oil pollution and seabird populations and
discussion. Philos Trans R Soc Lond B 297(1087):413–427
Elektorowicz M (1994) Bioremediation of petroleum-contaminated clayey soil with pretreatment.
Environ Technol 15:373–380
Ensley BD (2000) Rationale for use of phytoremediation. In: Raskin I, Ensley BD (eds)
Phytoremediation of toxic metals. Using plants to clean up the environment. Wiley,
New York, pp 3–11
Evanko CR, Dzombak DA (1997) Remediation of metals-contaminated soils and groundwater.
Technology evaluation report. GWRTAC – Ground-Water Remediation Technologies Analysis
Center, Pittsburgh
Ewan KB, Pamphlett R (1996) Increased inorganic mercury in spinal motor neurons following
chelating agents. Neurotoxicology 17:343–349
Firmino PIM, Farias RS, Barros AN, Buarque PMC, Rodrı’guez E, Lopes AC, dos Santos AB
(2015) Understanding the anaerobic BTEX removal in continuous-flow bioreactors for ex situ
bioremediation purposes. Chem Eng J 281:272–280
Forsyth JV, Tsao YM, Blem RD (1995) Bioremediation: when is augmentation needed? In:
Hinchee RE et al (eds) Bioaugmentation for site remediation. Battelle Press, Columbus, OH,
pp 1–14
Frutos FJG, Escolano O, García S, Mar Babín M, Fernández MD (2010) Bioventing remediation
and ecotoxicity evaluation of phenanthrene-contaminated soil. J Hazard Mater 183:806–813.
https://doi.org/10.1016/j.jhazmat.2010.07.098
Frutos FJG, Pérez R, Escolano O, Rubio A, Gimeno A, Fernandez MD, Carbonell G, Perucha C,
Laguna J (2012) Remediation trials for hydrocarbon-contaminated sludge from a soil washing
process: evaluation of bioremediation technologies. J Hazard Mater 199:262–271. https://doi.
org/10.1016/j.jhazmat.2011.11.017
Goldstein RM, Mallory LM, Alexander M (1985) Reasons for possible failure of inoculation to
enhance biodegradation. Appl Environ Microbiol 50:977–983
Gómez Orea D (2004) Recuperación de espacios degradados. Ediciones Mundi-Prensa, Madrid
Hamzah A, Phan CW, Abu Bakar NF, Wong KK (2013) Biodegradation of crude oil by constructed
bacterial consortia and the constituent single bacteria isolated from Malaysia. Biorem J 17:1–10
Hernández-Allica J, Becerril JM, Garbisu C (2008) Assessment of the phytoextraction potential of
high biomass crop plants. Environ Pollut 152:32–40
Hogan CN (2008) Magellanic penguin. http://www.igoterra.com/artspec_information
Katyayan A (2019) Fundamentals of agriculture, vol 2. Kushal Publication and Distributors,
Varanasi, pp 1–539
Kensa VM (2011) Bioremediation - an overview. J Indus Pollut Control 27(2):161–168
Killham K (1994) Soil ecology. Cambridge University Press, Cambridge
Kim S, Krajmalnik-Brown R, Kim J-O, Chung J (2014) Remediation of petroleum hydrocarboncontaminated sites by DNA diagnosis-based bioslurping technology. Sci Total Environ
497:250–259
Kumar A, Bisht BS, Joshi VD, Dhewa T (2011) Review on bioremediation of polluted environment: a management tool. Int J Environ Sci 1
Leahy JG, Colwell RR (1990) Microbial degradation of hydrocarbons in the environment. Microbial Rev 53(3):305–315
Ma LQ, Komar KM, Tu C, Zhang W, Cai Y, Kennelley ED (2001) A fern that hyperaccumulates
arsenic. Nature 409:579
Manning J, Boopathy R, Kulpa CF (1995) A laboratory study in support of the pilot demonstration
of a biological soil slurry reactor. Report no. SFIM-AEC-TS-CR-94038. US Army Environmental Center, Aberdeen Proving Ground, MD
Margesin R, Schinner F (2001) Bioremediation (natural attenuation and biostimulation) of dieseloil-contaminated soil in an alpine glacier skiing area. Appl Environ Microbiol 67:3127–3133
98
S. K. Yadav
