Details

Title

Identification and characterisation of oil sludge degrading bacteria isolated from compost

Journal title

Archives of Environmental Protection

Yearbook

2016

Volume

vol. 42

Issue

No 2

Authors

Keywords

bioaugmentation ; biodegradation ; bioremediation ; Composting ; oil sludge ; PAHs ; Animal manures

Divisions of PAS

Nauki Techniczne

Publisher

Polish Academy of Sciences

Date

2016.06.15

Type

Artykuły / Articles

Identifier

DOI: 10.1515/aep-2016-0021 ; ISSN 2083-4772 ; eISSN 2083-4810

Source

Archives of Environmental Protection; 2016; vol. 42; No 2

References

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Lily (2009), Degradation of benzo ( a ) pyrene by a novel strain bacillus subtilis BMT i of, Brazilian Journal Microbiology, 40, 9447, doi.org/10.1590/S1517-83822009000400020 ; Churchill (1999), Isolation and characterization of a Mycobacterium species capable of degrading three - and four - ring aromatic and aliphatic hydrocarbons and, Applied Environmental Microbiology, 65, 549. ; Udotong (2011), Bioconversion of crude oil production into soil conditioner Using sawdust as Organic amendment, Geosystem Engineering, 14, 51, doi.org/10.1080/12269328.2011.10541330 ; Vanishree (2014), Biodegradation of petrol using Aspergillus sp Research in Biology, Annual Review, 4, 914. ; Harikrishna (2012), Studies on the potential of bacillus subtilis in the biodegradation of engine oil of Chemical Biological and Physical, Journal Sciences, 2, 1599. ; Liu (2010), Bioremediation of oily sludge - contaminated soil by stimulating indigenous microbes and, Environmental Geochemistry Health, 32, 23, doi.org/10.1007/s10653-009-9262-5 ; 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Wang (2011), Potential approaches to improving biodegradation of hydrocarbons for bioremediation of crude oil pollution Environmental Protection, Journal, 47. ; Diallo (2000), Thermodynamic properties of asphaltene : a predictive approach based on computer assisted structure elucidated and atomistic simulations in : Asphaltene and asphalts II Developments in petroleum Elsevier Amsterdam, science, 103. ; Singh (2014), Treatment of petroleum hydrocarbon polluted environment through bioremediation : A review of Biological, Pakistan Journal Sciences, 17, 1, doi.org/10.3923/pjbs.2014.1.8 ; Cameotra (2010), Biosurfactant - enhanced bioremediation of hydrophobic pollutants and, Pure Applied Chemistry, 82, 97, doi.org/10.1351/PAC-CON-09-02-10 ; Barnabas (2013), Effect of enzymes extracts on bacterial degradation of garage petroleum oils of and Engineering Technology, Journal Environmental Science Computer Science, 206. ; Inceoglu (2010), van Elsas Effect of DNA extraction method on the apparent microbial diversity of soil and, Applied Environmental Microbiology, 76, 3378, doi.org/10.1128/AEM.02715-09 ; Darsa (2014), Biodegradation of Petroleum compound using the bacterium Bacillus subtilis, Science International, 2, 20, doi.org/10.17311/sciintl.2014.20.25 ; Ganesh (2009), Diesel degradation and biosurfactant production by Gram - positive isolates of, African Journal Biotechnology, 8, 5847. ; Bojes (2007), Characterization of EPA s priority pollutant polycyclic aromatic hydrocarbons ( PAHs ) in tank bottom solids and associated contaminated soils at oil exploration and production sites in Texas and, Regulatory Toxicology Pharmacology, 47, 288, doi.org/10.1016/j.yrtph.2006.11.007 ; Sirota (2010), Genome sequence of the pattern forming Paenibacillus vortex bacterium reveals potential for thriving in complex environments, BMC Genomics, 11, 710, doi.org/10.1186/1471-2164-11-710 ; Kumari (2012), Characterization of two biosurfactant producing strains in crude oil degradation, Process Biochemistry, 47, 2463, doi.org/10.1016/j.procbio.2012.10.010 ; Ouyang (2005), Comparison of bioaugmention and composting for remediation of oil sludge A field - scale study in China, Process Biochemistry, 40, 3763, doi.org/10.1016/j.procbio.2005.06.004 ; Phillips (2000), Monitoring bioremediation in creosote - contaminated soils using chemical analysis and toxicology tests of Industrial Microbiology and Biotechnology, Journal, 65, 627.

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