+ All Categories
Home > Documents > Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References...

Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References...

Date post: 14-Oct-2020
Category:
Upload: others
View: 2 times
Download: 0 times
Share this document with a friend
22
____________ References [i] Agnes G., Gravez V. and Edgar G. J. (2003). Assessment of Jessica oil spill impacts on intertidal invertebrate communities. Marine Poll. Bull. 46(11): 1377- 1384. Aislabie, J., McLeodM., and Fraser R. (1998). Potential for biodegradation of hydrocarbons in soil from the Ross Dependency, Antarctica. Appl. Microbiol. Biotechnol. 49:210-214. Ajao A. T., Yakubu S. E., Umoh V. J. and Ameh J. B. (2013). Bioremediation of refinery wastewater using immobilized Burkholderiacepacia and Corynebacterium sp. and their transconjugants. J. Xenobiot. 3(e4): 19-23. Akpofure E. A., Efere M. L. and Ayawei P. (2000). Oil spillage in Nigeria’s Niger Delta. Integrated grass root post impact assessment of acute damaging effects of continuous oil spills in the Niger Delta January 1988-January 2000. Psycho- Morphological and empirical overview. Ambasht R. S. (1990). Environment and Pollution (An Ecological Approach). 1 st ed., Students and Friends Publications, Lanka Varanasi, India. Amin A., Naik A. T. R., Azhar M. and Nayak H. (2013). Bioremediation of different waste waters- A review. Continental J. Fisher. Aq. Sci. 7(2): 7-17. APHA (1998). Standard Methods for the Examination of Water and Waste Water. 19 th Eds., American Public Health Association, Washington DC. Ashok K. S. and Seth P. K. (1989). Degradation of Malathion by microorganism isolated from industrial effluents. Bull. Environ. Contam. Toxicol., New York Inc. 28-35.
Transcript
Page 1: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[i]

Agnes G., Gravez V. and Edgar G. J. (2003). Assessment of Jessica oil spill

impacts on intertidal invertebrate communities. Marine Poll. Bull. 46(11): 1377-

1384.

Aislabie, J., McLeodM., and Fraser R. (1998). Potential for biodegradation of

hydrocarbons in soil from the Ross Dependency, Antarctica. Appl. Microbiol.

Biotechnol. 49:210-214.

Ajao A. T., Yakubu S. E., Umoh V. J. and Ameh J. B. (2013). Bioremediation of

refinery wastewater using immobilized Burkholderiacepacia and

Corynebacterium sp. and their transconjugants. J. Xenobiot. 3(e4): 19-23.

Akpofure E. A., Efere M. L. and Ayawei P. (2000). Oil spillage in Nigeria’s

Niger Delta. Integrated grass root post impact assessment of acute damaging

effects of continuous oil spills in the Niger Delta January 1988-January 2000.

Psycho- Morphological and empirical overview.

Ambasht R. S. (1990). Environment and Pollution (An Ecological Approach).

1st ed., Students and Friends Publications, Lanka Varanasi, India.

Amin A., Naik A. T. R., Azhar M. and Nayak H. (2013). Bioremediation of

different waste waters- A review. Continental J. Fisher. Aq. Sci. 7(2): 7-17.

APHA (1998). Standard Methods for the Examination of Water and Waste

Water. 19th Eds., American Public Health Association, Washington DC.

Ashok K. S. and Seth P. K. (1989). Degradation of Malathion by

microorganism isolated from industrial effluents. Bull. Environ. Contam.

Toxicol., New York Inc. 28-35.

Page 2: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[ii]

Atlas R. M. (1985). “Effects of hydrocarbons on microorganisms and

biodegradation in Arctic ecosystems” in Petroleum Effects in The Arctic

Environments, F. R. Engelhardt Ed. Elsevier London, U.K. 63-99.

Atlas, R.M., (1981). Microbial degradation of petroleum hydrocarbons: An

Environmental Perspective. Microbiol. Rev. 45: 180-209.

Atlas, R.M., (1991). Microbial hydrocarbon degradation; Bioremediation of oil

spills. J. Chem. Technol. Biotechnol. 52: 149-156.

Augustine S. K., Bhavsar S. P. and Kapadnis B. P. (2005). A non polyene

antifungal antibiotic from Streptomyces albidoflavus. J. Biosci. 30(2): 101-111.

Barkley T., Navon-Venezia S., Rone Z. and Rosenberg E. (1999).

Enhancement of solubilization and biodegradation of polyaromatic

hydrocarbons by the bioemulsifierAlasan. Appl. Environ. Microbial. 65(6):

2697-2702.

Bartha R. (1986). Biotechnology of petroleum pollutant biodegradation.

Microbial Ecol. 12:155-172.

Bartha R. and Bossert I. (1984). The fate of petroleum in the soil ecosystems.

In Atlas, RM (Ed.), Petroleum Microbiology. Macmillan, New York. 435-473.

Berry C. J., Story S., Altman D. J., Upchurch R., Whitman W., Singleton D.,

Plaza G. andBrigmon R. L.(2006). Biological treatment of petroleum in

radiologically contaminated soil. In: Clayton J. Clark II, Angela Stephenson

Lindner (eds.) Remediation of hazardous waste in the subsurface. Bridging

flask and field. American Chemical Society, Washington, DC, pp.87.

Page 3: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[iii]

Bestawy E. El, Helmy S., Hussien H., Fahmy M. and Amer R. (2013).

Bioremediation of heavy metal contaminated effluent using optimized activated

sludge bacteria. Appl. Water Sci. 3: 181-192.

Bharti P., Das S., Konwar B. K. and Thakur A. J. (2001). Crude biosurfactant

from thermophilicAlcaligenesfaecalis: Feasibility in Petro spill bioremediation.

Int. J. Biodeterio. Biodegra. 65: 682-690.

Bhatnagar S. and Kumari R. (2013). Bioremediation: A sustainable tool for

environmental management- A Review. Ann. Rev. Res. Biol. 3(4): 974-993.

Bhattacharya D., Sharma P. M., Krishnan S., Mishra S. and Lal B. (2003).

Evaluation of genetic diversity among Pseudomonas citronellolis strains

isolated from oily sludge contaminated sites. Appl. Environ. Microbiol. 69:

1431-1441.

Bonaventura C. and Johnson F. M. (1997). Healthy environments for healthy

people: Bioremediation today and tomorrow. Environ. Healt. Perspec. 105: 5-

20.

Burry S.J. and Miller C.A. (1993). Effect of micellarsolubilization on

biodegradation rates of hydrocarbons. Environ. Sci. Technol. 27: 104-110.

Carpenten C. P., Geary D. L., Myers R. C., Nachreiner D. J., Sullivan L. J. and

King J. M. (1977). Petroleum hydrocarbon toxicity studies: XIV Animal and

human Response to vapors of high aromatic solvent. Toxicol. Appl. Pharmacol.

41(2): 235-249.

Page 4: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[iv]

Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic

hydrocarbons: Past, present and future applications in bioremediation. J. Ind.

Microbiol. Biotechnol. 19: 324-333.

Chandra S., Sharma R., Singh K. and Sharma A. (2012). Application of

bioremediation technology in the environment contaminated with petroleum

hydrocarbon. Ann. Microbiol. DOI: 10.1007/s13213-012-0543-3.

Chapman A. M. (1979). Degradation Mechanisms, In Proceedings of

Workshop, microbial degradation of pollutants in marine environments (A. W.

Bourguin and D. H. Pritchard Eds.) EPA-66019-79-012. Environmental

research Laboratory, Gulf Breeze, Florida. 28-66.

Chaineau, C. H., VidalieJ. F., Geneste P., DucreuxJ., and BalleriniD. (2000).

Bioremediation of a crude oil-polluted clay soil in a temperate zone, pp. 1-12.

In Proceedings of the SPE International Conference on Health, Safety, and the

Environment in Oil and Gas Exploration and Production. Society of Petroleum

Engineers, Houston, Tex.

Chen C. S., Hseu Y. C., Liang S. H., Kuo J. Y. and Chen S. C. (2008).

Assessment of genotoxicity of methyl-tert-butyl-ether, benzene, toluene,

ethylbenzene and xylene to human lymphocytes using comet assay. J. Hazar.

Mat. 153(1-2): 351-356.

Chhatre S, Purohit H., Shanker R.&Khanna P. (1996). Bacterial consortia for

crude oil spill remediation. Water Sci.Technol. 34:187-193.

Page 5: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[v]

Chikere C. B. (2013). Application of Molecular Microbiology techniques in

bioremediation of hydrocarbons and other pollutants. Brit. Biotechnol. J. 3(1):

90-115.

Churchill P.F., Dubley R. J. and Churchill S.A.(1995). Surfactant enhanced

bioremediation. Waste Manage. 15: 371-377.

Claus D. and Berkley R. C. W. (1986). Genus BacillusCohn. In: Sneath PHA

Eds. Bergey’s Manual of Systematic Bacteriology, Section 13(2), Baltimore,

MD, USA. Williams & Wilkins Co. 1105-1139.

Clausen C. A. (2000). Isolating metal-tolerant bacteria capable of removing

copper, chromium and arsenic from treated wood. Waste Manag. Res. 18:

264-268.

Coelho A., Castro V. A., Dezotti M. and Sant’AnnaIr G. L. (2006). Treatment of

petroleum refinery wastewater by advanced oxidation processes. J. Haz. Matr.

B137: 178-184.

Cohen Y. (2002). Bioremediation of oil by marine microbial mats. Int. Microbial.

5: 189—193.

Cole G. M. (1994). Assessment and remediation of petroleum contaminated

sites. CRC Press, Boca Raton, Florida.

Colwell R. R. (1994). Scientific foundation of bioremediation and gaps

remaining to befilled. Res. Microbiol. 145: 40-41.

Cookson J. T. (1995). Bioremediation engineering: Design and application.

McGraw Hill Publication, U.S.A.

Page 6: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[vi]

Cooney J. J. (1984). The fate of petroleum pollutants in fresh water

ecosystems. Petroleum Microbiology, edited by R. M. Atlas. Macmillan Pub.

Co., New York, 399.

Crawford J. H. (2002). Review of composting. Process Biochem. 18: 14-15.

Cybulski Z., Dzuirla E., Kaczorek E. and Olszanowski A.(2003). The influence

of emulsifiers on hydrocarbon biodegradation by Pseudomonadacea and

Bacillacea strains. Spill Sci. Technol. Bull. 8: 503-507.

Das M, Das M.K. & Mukherjee R.(1998). surface active properties of the

culture filtrates of a Micrococcus species grown on n-alkanes and sugars.

Bioresour. Technol. 63: 231-235.

Das N. and Chandran P. (2011). Microbial degradation of petroleum

hydrocarbon contaminants: An overview. Biotechnol. Res. Int. 1-13. Article ID

941810. DOI: 10.4061/2011/941810.

Deeb R. and Alvarez-Cohen L. (1999). Temperature effects and substrate

interactions during the aerobic biotransformation of BTEX mixtures by toluene-

enriched consortia and Rhodococcusrhodocrous. Biotechnol. Bioengg. 62:

526-536.

Dibble J. T. and Bartha R. (1976). The effect of iron on the biodegradation of

petroleum in seawater. Appl. Environ. Microbiol. 31: 544-550.

Dibble J. T. and Bartha R. (1979). The effect of environmental parameters on

the biodegradation of oily sludge. Appl. Environ. Microbiol. 37: 729-739.

Page 7: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[vii]

Diver S. (2001). Nature farming and effective microorganisms retrieved from

Rhizosphere II: Publications, Resources Lists and Web Links from Steve Diver.

Dold P. L. (1989). Current practice for treatment of petroleum refinery waste

water and toxics removal. Wat. Qual. Res. J. Can. 24: 363-390.

Doong R. & Lei W.G. (2003). Solubilization and mineralization of polycyclic

aromatic hydrocarbons by Pseudomonas putida in the presence of surfactant.

J. Hazard. Mater. B96: 15-27.

El-Sheshtawy H. S., El-Tabei A. S., Kobisy A. S. and Doheim M. M. (2013).

Application of biosurfactant produced by Bacillus licheniformis and chemical

surfactant in biodegradation of crude oil: Part I. Biosci. Biotechnol. Res. Asia.

10(2): 515-526.

Enontiemonria E. V., Kofi F. H., Cybil O. and Gbenga T. (2012). The effects of

Pseudomonas aeruginosa and Aspergillus niger on the bioremediation of raw

and treated crude oil polluted water. Int. J. Sci. Technol. 2(6): 345-352.

Environment Canada’s Methods for Assessing Oil Spill Treating Agents (2011).

In Oil Spill Science and Technology: Prevention, Response and Clean up. Ed.s

M. Fingas, Elsevier, Burlington, U.S.A. 643-671.

EPA (undated). Wildlife and oil spills. EPA Office of Emergency and Remedial

Response. http://www.epa.gov/oem/docs/oil/edu/oilspill_book/chap5.pdf/

Epko M. A. and Udofia U. S. (2008). Rate of biodegradation of crude oil by

micro organisms isolated from oil sludge environment. Afr. J. Biotechnol. 7(24):

4495-4499.

Page 8: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[viii]

Erdogan E. E. and Karaca A. (2011). Bioremediation of crude oil polluted soils.

Asian J. Biotechnol. 3(3): 206-213.

Ericksson M. G., Dalhammar A. K. and Borg-Karson (1995). Aerobic

degradation of hydrocarbon mixture in natural contaminated potting soil in

indigenous microorganisms at 20°C and 6°C. Appl. Microbiol. Biotechnol. 51:

532-535.

Exner J. H., Flathman P. E., Jerger D. E. (1994). Bioremediation: Field

experience, edited by Lewis Publishers, Boca Raton, F.L., U.S.A.

Fayal, N. M., and Overton E. (1995). A unique biodegradation pattern of the oil

spilled during the 1991 Gulf War. Mar. Poll. Bull. 30:239-246.

Floodgate G. (1984). “The fate of petroleum in marine ecosystems” in

Petroleum Microbiology, R. M. Atlas Ed., Macmillan, New York, USA, 355-398.

Focht and Vastreaete (1977). Biochemical ecology of nitrification and

denitrification. In: Alexender M (ed.) Advances in Microbial Ecology, Plenum

Press, New York. Vol.1, 135-214.

Gauthier M. J., Lafay B., Christen R., Fernandez L., Acquaviva M., Bonin P.

and Bertrand J. C. (1992). Marinobacterhydrocarbonocalsticus, a new

extremely halotolerant, hydrocarbon degrading marine bacterium. Int. J. Syst.

Bacteriol. 42: 568-576.

Gomer C. J. and Smith D. M. (1980). Acute skin phototoxicity in hairless mice

following exposure to crude shale oil or natural petroleum oil. Toxicol. 18(1):

75-85.

Page 9: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[ix]

Grishchenkov V.G., Townsend R.T., McDonald T.J., Autenrieth R.L., Bonner J.

S. andBoronnin A.M. (2000). Degradation of petroleum hydrocarbons by

facultative anaerobic bacteria under aerobic and anaerobic conditions. Process

Biochem. 35: 889-896.

Hamza U. D., Mohammed I. A. and Sale A. (2012). Potentials of bacterial

isolates in bioremediation of Petroleum Refinery wastewater. J. Appl.

Phytotechnol. Environ. Sanitat. 1(3): 131-138.

Harkavy R. E. (1997). Strategic geography and the changing Middle East.

Brookings Institution Press.

Herman D.C., Lenhard R.J.and Miller R.M. (1997). Formation and removal of

hydrocarbon residual in porous media: Effects of attached bacteria and

biosurfactants. Environ Sci. Technol. 31: 1290-1294.

Higa T. and Chinen N. (1998). EM treatment of odor, wastewater and

environmental problems. Okinawa, Japan: University of the Ryukyus.

Higgins I. J. and Gilbert P. D. (1978). The biodegradation of hydrocarbons. In

Chapter KWA. Somerville H. J. (Eds.). The oil industry and microbial

ecosystems. Heyden and Son Ltd., London. 80-117.

Hollaway S. L., Faw G. M. and Sizemore R. K. (1980). The bacterial

community composition of an active oil field in the Northwestern Gulf of

Mexico. Mar. Poll. Bull. 11(6): 153-156.

Page 10: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[x]

Holmes S. H. and Thompson L. E. (1982). Nitrogen distribution in hydro-

treated shale oil products from commercial-scale refining. Review draft.

Laramie WY: Laramie Energy Technology Centre. 4.

Hookoom M. and Puchooa D. (2013). Isolation and identification of heavy

metals tolerant bacteria from industrial and agricultural areas in Mauritius.

Curr. Res. Microbiol. Biotechnol. 1(3): 119-123.

Horowitz A. (1989). Microbial degradation of hydrocarbons. ASSIGNEE The

BF GOODRICH COMPANY OF GAZ US PAT TRADEMARK OFF PAT (US

Patent 4833086 May 23, 1989, USCL-435-225, 1102 (4): 2595.

Hua Z., Chen J., Lun S. and Wang X. (2003). Influence of biosurfactants

produced by Candida antarctica on surface properties of microorganisms and

biodegradation of n-alkanes. Water Res. 37: 4143-4150.

Hwang, E., Namkoong W. and Park J. (2001). Recycling of remediated soil for

effective composting of diesel-contaminated soil. Compo. Sci. Utiliz. 143-149.

Ijah U.J.J. (1998). Studies on relative capabilities of bacterial and yeast

isolates from tropical soil in degrading crude oil. Waste Manage. 18: 293-299.

Ishak S., Malakahmad A. and Isa M. H. (2012). Refinery wastewater biological

treatment: A short review. J. Sci. Ind. Res. 71(4): 251-256.

Jain P. K., Gupta V. K., Gaur R. K., Lowry M., Jaroli D. P. and Chauhan U. K.

(2011). Bioremediation of petroleum oil contaminated soil and water. Res. J.

Environ. Toxicol. 5(1): 1-26.

Page 11: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xi]

Jamijan C., Biedenbach D. J. and Jones R. N. (1997). Evaluation of a novel

ketolide antimicrobial agent. RU-64004. Antimicro. Agen. Chemother. 41: 454-

459.

Jayashree R., Nithya S. E., Rajesh P. P. and Krishnaraju M. (2012).

Biodegradation capability of bacterial species isolated from oil contaminated

soil. J. Academia Indus. Res. 1(3): 140-143.

Jenneman, G. E. (1989). The potential for in-situ microbial applications. Dev.

Petrol. Sci. 22:37-74.

Jilani S. and Khan M. A. (2013). Biological treatment of industrial waste water

using Biosimulator. Middle East J Scient. Res. 13(2): 124-132.

Johnson K., Anderson S. and Jacobson C. S. (1996). Phenotypic and

genotypic characterization of phenanthrene-degrading fluorescent

Pseudomonas biovars. Appl. Environ. Microbiol. 62: 3818-3825.

Khaing T. H., Li J., Wai N. and Wong F. (2010). Feasibility study on

petrochemical wastewater treatment and reuse using a novel submerged

membrane distillation bioreactor. Sep. Purif. Technol. 74: 138-143.

Khan K., Naeem M., Arshed M. J. and Asif M. (2006). Extraction and

characterization of oil degrading bacteria. J. Appl. Sci. 6(10): 2302-2306.

Kim S. U., Cheong Y. H., Seo D. C., Hu J. S., Heo J. S. and Cho J. S. (2007).

Characterization of heavy metals tolerance and biosorption capacity of

bacterium strains CPBY (Bacillus spp.). Water Sci. Technol. 55(1): 105-111.

Page 12: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xii]

Kiyohara H., Takizawa N. and Nagao V. (1992). Natural distribution of bacteria

metabolizing many kinds of polycyclic aromatic hydrocarbons. J. Ferment.

Bioengg. 74: 49-51.

Knafla A., Pillipps K. A., Brecher R. W., Petrovic S. and Richardson M. (2006).

Development of a dermal cancer slope factor for benzo[a]pyrene. Regul.

Toxicol. Pharmacol. 45(2): 159-168.

Koma D., Hasumi S. and Motoki K. (2003). Biodegradation of n-alkyl

cyclohexanes by co-oxidation via multiple pathways in Acinetobacter sp.

ODDK71. J. Biosci. Bioengg. 95: 641-644.

Korda A., Santas P.,Tenete A. andSantas R. (1997). Appl. Microbial.

Biotechnol. 48:677

Kumar V., Sudhamani M. and Mallu U. R. (2013). Heavy metal resistance and

bioremediation activity of microorganisms from polluted water and soil

environment. Int. J. Sci. Innov. Discov. 3(1): 49-57.

Kwok C. K. andLoh K.C. (2003). Effects of Singapore soil type on

bioavailability of nutrients in soil bioremediation. Adv. Environ Res. 7: 889-900.

Lal B. and Khanna S. (1996). Degradation of crude oil by Acinetobacter

calcoaceticus and Alcaligenes odorans. J. Appl. Bacteriol. 81: 355-362.

Leahy J. G. and Colwell R. R. (1990). Microbial degradation of hydrocarbons in

the environment. Microbiol. Rev. 9:305-315.

Page 13: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xiii]

Lee A. S., Michael R. B. and Mellins R. B. (2006). Lung injury from

hydrocarbon aspiration and smoke inhalation. Kendig’s Disorders of the

Respiratory Tract in Children. VII Ed. 653-660.

Lewis C., Pook C. and Galloway T. (2008). Reproductive toxicity of the water

accommodated fraction (WAF) of crude oil in the polychaetesArenicola marina

(L.) and Nereisvirens (Sars.). Aqua. Toxicol. 90(1): 73-81.

Li A., Zhang C., Zhao L., Fu Z. and Zhou X. (2013). Treatment technologies for

organic waste water: Water Treatment. In Tech, 249-286.

Ma F. and Guo J. B. (2009). Application of bioaugmentation to improve the

activated sludge system into the contact oxidation system treating

petrochemical waste water. Biores. Technol. 100: 597-602.

Mandal A. K., Sharma P. M., Dwivedi M., Swaleh A., Lal B., Agnihotri A., Hazra

U. S., Doraiah A. and Patidar S. S. (2007). Bioremediation of oil contaminated

soil at South Santhal CTF, ONGC, Mehsana Asset, India. Proceedings of 2007

Asia Pacific Oil and Gas Conference and Exhibition, Jakarta, Indonesia,

Society of Petroleum Engineers (SPE). Paper no. 109571.

Mandal A. K., Sharma P. M., Singh B., Jeyaseelan C. P., Channashetta V. A.,

Lal B. and Datta J. (2011). Bioremediation: A sustainable ecofriendly solution

for environmental pollution in oil industries. J. Sustain. Develop. Env. Protec.

1(3): 5-23.

Mandal A. K., Sharma P. M., Singh B., Jeyaseelan C. P., Channashetta V. A.,

Lal B. and Datta J. (2012). Bioremediation: An environment friendly

Page 14: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xiv]

sustainable biotechnological solution for remediation of petroleum hydrocarbon

contaminated waste. J. Sci. Technol. 2: 1-12.

Massol-Deya AA, Rodriguez-Martinez EM, Perez Ex-Schadt CW & Zhou J.

(2006). Microbial diversity and bioremediation of a hydrocarbon contaminated

aquifer (Vega Baja, Puerto Rico).Int. J. Environ. Res. Publ. Health. 3(3) 292-

298.

Mathewson, Joseph R. and Grubbs R. B. (1988). Innovative techniques for the

bioremediation of contaminated soils. 2nd Annual CWPCA Industrial and

Hazardous waste Information Exchange, Oakland, C.A.

Meagher R. B. (2000). Phytoremediation of toxic elemental and organic

pollutants. Curr. Opin. Plan. Biol. 3(2): 153-162.

Michele L. W. and Peckol P. (2000). Effects of bioremediation on toxicity and

chemical composition of No.2 fuel oil: Growth responses of the brown algae

Fucusvesiculosus. Marine Poll. Bull. 40(2): 135-139.

Mishra S., Jyot J., Kuhad R. C. and Lal B. (2001). In situ bioremediation

potential of an oily sludge-degrading bacterial consortium. Curr. Microbiol. 43:

328-335.

Mittal A. and Singh P. (2009). Isolation of hydrocarbon degrading bacteria from

soils contaminated with crude oil spills. Ind. J. Exp. Biol. 47: 760-765.

Moacir A., Torres, Marcelo P. B., Sara C. G. C., Ernami P., Rajamani S., Sayre

R. T. and Colepicolo P. (2008). Biochemical biomarkers in algae and marine

pollution: A review. Ecotoxicol. Environ.Saf. 71(1): 1-15.

Page 15: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xv]

Mohanty S. and Mukherji S. (2013). Surfactant aided biodegradation of NAPLs

by Burkholderiamultivorans: Comparison between Triton X-100 and

rhamnolipid JBR-515. Colloids Surf. B. 102: 644-652.

Monod J. (1942). In “Recherchessur la croissance des cultures bacteriennes”,

2: 139-210, Hermann, Paris: Cf. R. Bartha and Atlas R. M. (1977) The

microbiology of aquatic oil spills. Adv. Appl. Microbiol. 22: 225-266.

Mrayyan and Baltikhi. (2004). Biodegradation of total petroleum hydrocarbon

(TPH) in Jordanian petroleum sludge. World Rev. Sci., Technol and Sustain.

Dev. 1(2): 138-150.

Murugan A., Babu S. S., Vijayakumar N. and Jayashree A. (2013). Efficiency

of BTEX degrader isolated from industrial wastewater. Int. J. Innov. Res. Sci.

Engg. Technol. 2(9): 4922-4929.

Nadim F., Hoag G. E., Liu S., Carley R. J. and Zack P. (2000). Detection and

remediation of soil aquifer systems contaminated with petroleum products: an

overview. J. Petro. Sci. Engg. 26: 169-178.

National Academy of Sciences (NAS) (1985). Oil in the sea: Inputs, fates and

effects. Washington DC: National Academy Press.

Nelson-Smith A. (1971). Oil pollution. Proceedings of Joint Conference on

Prevention and Control of Oil Spills. 95-98.

Nie M., Yin X., Ren C., Wang Y., Xu F. and Shen Q. (2010). Novel

rhamnolipidbiosurfactants produced by a polycyclic aromatic hydrocarbon-

Page 16: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xvi]

degrading bacterium Pseudomonas aeruginosa strain NY3. Biotechnol. Adv.

28(5): 635-643.

Odokuma L. O. and Dickson A. A. (2003). Bioremediation of crude oil polluted

tropical mangrove environment. J. Appl. Sci. Environ. Manag. 7: 23-29.

Olguin E. J. (2003). Phycoremediation key issues for cost effective nutrient

removal proesses. Biotechnol. Adv. 22: 81-91.

Onwurah I. N. E. and Nwuke C. (2004). Enhanced bioremediation of crude oil-

contaminated soil by a Pseudomonas species and mutually associated

adapted Azotobacter vinelandii.J. Chem. Technol. Biotechnol. 79: 491-498.

Pandeyea S. C., Puri G. S. and Singh J. S. (1968). Research method in plant

ecology. Asia Publishing House, New Delhi.

Parr J. L., Claff R. E., Kocurek D. S. and Lowry J. C. (1994). Interlaboratory

study of analytical methods for petroleum hydrocarbons. Analysis of Soil

Contaminated with Petroleum Constituents. Edited by O’Shay T. A. and

Hoddinott K. B. ASTM Publication. Phiadelphia, P. A. U.S.A. 53-60.

Park A.J., Cha D. K. andHolsen T.M. (1998). Enhancing solubilization of

sparingly soluble organic compounds by biosurfactants produced by

Nocardiaerythropolis. Water Environ Res. 70; 351-355.

Patel K. P., Pandya R. R., Malival G. L., Patel K. C., Ramani V. P. and George

V. (2004). Heavy metal contents of different effluents and their relative

availability in soils irrigated with effluent waters around major industrial cities of

Gujarat. J. Ind. Soc. Soil Sci. 52: 89-94.

Page 17: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xvii]

Pathak H., Jain P. K., Jaroli D. P. and Lowry M. (2008). Degradation of

phenanthrene and anthracene by Pseudomonas strain, isolated from coastal

area. Biorem. J. 12: 111-116.

PEDCO Environmental, Inc. (1978). Assessment of gasoline toxicity. USEPA,

pp. 25.

Pedro J. J. A. and Walter A. I. (2006). Bioremediation and natural attenuation:

process fundamentals and mathematical models. John Wiley & Sons Inc.

Peterson C. H. (2001). The “Exxon Valdez” oil spill in Alaska: Acute, indirect

and chronic effects on the ecosystem. Adv. Marin. Biol. 39: 1-103.

Petrikevich S. B., Kobzev E. N. and Shkidchenko A. N. (2003). Estimation of

the hydrocarbon-oxidizing activity of micro organisms. Appl. Biochem.

Microbiol. 301: 19-23.

Petrov A. A. (1987). Petroleum hydrocarbons. Springer Verlag. New York.

Phillips G. J. M. and Stewart J. E. (1974). Distribution of hydrocarbon utilizing

bacteria in Northwestern Atlantic waters and coastal sediments. Can. J.

Microbiol. 20(7): 955-962.

Pointing S. B. (2001). Feasibility of Bioremediation by White-rot Fungi. App.

Microbiol. Biotechnol. 57(1): 20-33.

Potter J. L. (1993). Analysis of petroleum contaminated soil and water: An

overview. In Calabrese, E. J. and Kostecki P. T. (Eds.) Principles and

Practices for Petroleum Contaminated Soils. Lewis Publishers, Chelsea. 11-

14.

Page 18: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xviii]

Prasad R. (2000). Petroleum refinery technology. Ist edition.

Prince C. R. (1993). Petroleum spill bioremediation in marine environments.

Critic. Rev. Microbiol. 19: 217-242.

Rahman K.S.M., Rahman J.H., Lakshmanaperumalsamy L. and Banat I.M.

(2002). Towards efficient crude oil degradation by a mixed bacterial

consortium. J. Bioresour. Technol. 85(3):257-261.

Rajbanshi A. (2008). Study on heavy metal resistant bacteria in Guheswori

sewage treatment plant. Our Nature. 6: 52-57.

Razi A. F., Pendashteh A., Chuah A. L., Radiah D. A. B. and Sayed S. M.

(2009). Review of technologies for oil and gas produced water treatment. J.

Haz. Mat. 170: 530-551.

Rice S. D., Short J. W., Carls M. G., Moles A. and Spies R. B. (2007). The

Exxon Valdez oil spill, long term ecological change in the Northern Gulf of

Alaska. 419-520.

Samal B. and Kotiyal P. B. (2013). Bioremediation of copper contaminated soil

using bacteria. Oct. J. Env. Res. 1(1): 5-8.

Samiullah Y. (1985). Biological effects of marine oil pollution. Oil Petrochem.

Poll. 2(4): 235-264.

Sangakkara U. R. (2012). The technology of effective microorganisms: case

studies of application. University of Peradeni, Sri Lanka.

Sarma P. M., Bhattacharya D., Krishnan S. and Lal B. (2004). Assessment of

intra-species diversity among strains of Acinetobacterbaumannii isolated from

Page 19: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xix]

sites contaminated with petroleum hydrocarbon. Can. J. Microbiol. 50: 405-

414.

Sayler G.S. and Fox R. (1991). Environmental biotechnology for waste

treatment. Ed. 10th Plenum Press, New York.

Shailubhai K. (1986). Treatment of petroleum industry oil sludge in soil. Trends

in Biotechnol. 4(8): 202-206.

Shakibaie M. R., Khosravan A., Frahmand A. and Zare S. (2008). Application

of metal resistant bacteria by mutational enhancement technique for

bioremediation of copper and zinc from industrial wastes. Iran J. Environ

Health Sci. Engg. 5(4): 251-256.

Sharma A. and Rehman M.B. (2009). Laboratory scale bioremediation of

diesel hydrocarbon in soil by indigenous bacterial consortium. Indian J. Exp.

Biol. 47:766-769.

Shokrollahzadeh S., Azizmohseni F., Golmohammad F., Shokouhi and

Khademhaghighat F. (2008). Biodegradation potential and bacterial diversity of

a petrochemical wastewater treatment plant in Iran. Biores. Technol. 99: 6127-

6133.

Shrivastava J. N., Raghav N. and Singh A. (2012). Laboratory scale

bioremediation of the Yamuna water with Effective Microbes (EM) Technology

and Nanotechnology. J. Bioremed. Biodegrad. 3(8): 160-164.

Singh A., Kumar V. and Srivastava J. N. (2010). Green biotechnology of

effective microbes in bioremediation of waste water. Geobios. 37: 236-237.

Page 20: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xx]

Singh A., Kumar V. and Srivastava J. N. (2012). Bioremediation for petroleum

cleanup: A promising tool for petroleum contamination. Lap Lambert Academic

Publishing, Germany.

Skrtic L. (2006). Hydrogen sulfide, oil and gas and people’s health. Master’s

Thesis, Energy and Resources Group, University of California, Berkley.

Soltan E. S.(2001). Isolation and characterization of antibiotic and heavy metal

resistance P. stutzeri. Biometals. 7: 30-40.

Stamet P. (1999). Earth’s Natural Internet. Whole Earth Magazine. Unied

States.

Straube W. L., Mehaan J., Pritchard P. H. and Jones W.R. (1999). Bench scale

optimization and bioaugmentation strategies for treatment of solids

contaminated with high molecular weight polyaromatic hydrocarbons. Resour.

Conserv. & Recycling. 27: 27-37.

Sugiura K., Ishihara M. and Shimauchi T. (1997). Physico-chemical properties

and biodegradability of crude oil. Environ. Sci. Technol. 31: 45-51.

Sunggyu L. (2003). Bioremediation of polycyclic aromatic hydrocarbon-

contaminated soil. J. Cleaner Prod. 3: 255.

Swannell R. P. J., Lee K. and Mcdonagh M. (1996). Field evaluations of

marine oil spills bioremediation. Microbial Rev. 60(2): 342-365.

Szaro R. C., Albers P. H. and Coon N. C. (1978). Petroleum: Effects on

Mallard egg hatchability. J. Wildlif. Manag. 42(2): 404-406.

Page 21: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xxi]

USEPA (U.S. Environmental Protection Agency). (1982).”Development

Document for Effluent Limitations Guidelines and Standards for the Petroleum

Refinering Point Source Category.” Washington D.C.

Van Hamme J. D., Singh A. and Ward O. P. (2003). Recent advances in

petroleum microbiology. Microbiol. Mol. Biol. Rev. 67: 503-549.

Verstraete W., Vanloocke R., De Borger R. and Verlindne A. (1975). Modeling

of the breakdown and the mobilization of hydrocarbons in unsaturated soil

layers. In Proceedings of 3rd International Biodegradation Symposium,

Sharpley J. M. and Kalpan A. M. (Eds.) Applied Science Publishers, London.

98-112.

Vidali M. (2011). Bioremediation An overview © IUPAC. Pure Appl. Chem.

73(7): 1163-1172.

Vinas V., Grifoll M., Sabate J. and Solanas A. M. (2002). Biodegradation of a

crude oil by three microbial consortia of different origins and metabolic

capabilities. J. Indus. Microbiol. Biotechnol. 28: 252-260.

Volkering F., Breure A.M. and Van Andel J.G. (1993). Effects of

microorganisms on the bioavailability and biodegradation of crystalline

naphthalene. Appl. Microbiol. Biotechnol. 40: 535-540.

Willumsen P. A. and Arvin E. (1999). Kinetics of degradation of surfactant-

solubilized fluoranthene by a Sphingomonaspaucimobilis. Environ. Sci.

Technol. 33: 2571-2578.

Page 22: Referencesshodhganga.inflibnet.ac.in/bitstream/10603/33650/16/16_references.… · _____ References [iv] Cerniglia C. E. (1997). Fungal metabolism of polycyclic aromatic hydrocarbons:

____________ References

[xxii]

World Bank, (1998). “Pollution Prevention and Abatement Handbook.” Project

Guidelines: Industry sector guidelines. Environment Department, Washington,

D.C.

Yuste L., Corbella M. E., Turiegano M. J., Karlson U., Puyet A. and Rojo F

(2000). Characterization of bacterial strains able to grow on high molecular

mass residues from crude oil processing. FEMS Microbiol. Ecol. 32: 69-75.

Zakaria M. P., Takada H..Tsutsumi S., Ohno K., Yamada J., Kouno E. and

Kumata H. (2002). Distribution of polycyclic aromatic hydrocarbons (PAHs) in

rivers and estuaries in Malaysia: a widespread input of petrogenic PAHs.

Environ. Sci. Technol. 36: 1907-1918.

Zarooni M. A. and Elshorbagy W. (2006). Characterization and assessment of

Al Ruwais refinery wastewater. J. Haz. Mat. 136: 398-405.

Zhang L., Sannes K., Shusterman A. J. and Hansch C. (1992). The structure

activity relationship of skin carcinogenicity of aromatic hydrocarbons and

heterocycles. Chemico. Biolnterac. 81(1-2): 149-180.


Recommended