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REFERENCES
Abdel-Shafy, H. I., & Mansour, M. S. M. (2016). A review on polycyclic aromatic hydrocarbons: source, environmental impact, effort on human health and remediation. Egyptian Journal of Petroleum.
25, 107-123
Adeniji, A. O., Okoh, O. O., & Okoh, A. I. (2019). Levels of polycyclic aromatic hydrocarbons in the water and sediment of Buffalo River Estuary, South Africa and their health risk assessment. Archives of environmental contamination and toxicology, 76, 657-669.
Anokhina, T. O., Esikova, T. Z., Gafarov, A. B., Polivtseva, V. N., Baskunov, B. P., & Solyanikova, I. P.
(2020). Alternative naphthalene metabolic pathway includes formation of ortho-phthalic acid and cinnamic acid derivatives in the Rhodococcus opacus strain 3D. Biochemistry (Moscow), 85, 355-368.
Balati, A., Shahbazi, A., Amini, M. M., & Hashemi, S. H. (2015). Adsorption of polycyclic aromatic hydrocarbons from wastewater by using silica-based organic–inorganic nanohybrid material.
Journal of Water Reuse and Desalination. 10.2166/wrd.2014.013
Baniasadi, M., & Mousavi, S. M. (2018). A comprehensive review on the bioremediation of oil spills.
Microbial action on hydrocarbons, 223-254.
Bergey, D.H. and Holt, J.G. (1994) Bergey’s Manual of Determinative Bacteriology. 9th Edition, Williams & Wilkins, Baltimore, Maryland.
Bodor, A., Bounedjoum, N., Vincze, G. E., Erdeiné Kis, Á., Laczi, K., Bende, G., ... & Rákhely, G. (2020).
Challenges of unculturable bacteria: environmental perspectives. Reviews in Environmental Science and Bio/Technology, 19, 1-22.
Bonnet, M., Lagier, J. C., Raoult, D., & Khelaifia, S. (2020). Bacterial culture through selective and non- selective conditions: the evolution of culture media in clinical microbiology. New microbes and new infections, 34, 100622.
Chaudhary, D. K., Khulan, A., & Kim, J. (2019). Development of a novel cultivation technique for uncultured soil bacteria. Scientific reports, 9(1), 1-11.
Ciric, S., Knezevic, P., & Petrovic, O. (2022). LOW NUTRIENT R2A MEDIUM IN THE ASSESSMENT OF BACTERIOLOGICAL STATUS OF WATER AND OTHER ENVIRONMENTS. environment, 1, 2.
Duran, C., Zhang, S., Yang, C., Falco, M. L., Cravo-Laureau, C., Suzuki-Minakuchi, C., ... & Sassa, F.
(2022). Low-cost gel-filled microwell array device for screening marine microbial consortium.
Frontiers in Microbiology, 13, 1031439.
Ebrahimi, V., Eyvazi, S., Montazersaheb, S., Yazdani, P., Hejazi, M. A., Tarhriz, V., & Hejazi, M. S. (2020).
Polycyclic aromatic hydrocarbons degradation by aquatic bacteria isolated from Khazar Sea, the World’s Largest Lake. Pharmaceutical Sciences, 27(1), 121-130.
Feng, G. D., Wang, Y. H., Zhang, X. J., Chen, W. D., Zhang, J., Xiong, X., & Zhu, H. H. (2019).
Sphingomonas lenta sp. nov., a slowly growing bacterium isolated from an abandoned lead–zinc mine. International Journal of Systematic and Evolutionary Microbiology, 69(8), 2214-2219.
Froger, C., Saby, N., Jolivet, C. C., Boulonne, L., Caria, G., Freulon, X., ... & Bispo, A. (2021). Spatial variations, origins, and risk assessments of polycyclic aromatic hydrocarbons in French soils. Soil, 7(1), 161-178.
Hassard, F., Gwyther, C. L., Farkas, K., Andrews, A., Jones, V., Cox, B., ... & Malham, S. K. (2016).
Abundance and distribution of enteric bacteria and viruses in coastal and estuarine sediments—
a review. Frontiers in microbiology, 7, 1692.
42 Honda, M., & Suzuki, N. (2020). Toxicities of polycyclic aromatic hydrocarbons for aquatic animals.
International Journal of Environmental Research and Public Health, 17(4), 1363.
Imam, A., Suman, S. K., Kanaujia, P. K., & Ray, A. (2022). Biological machinery for polycyclic aromatic hydrocarbons degradation: A review. Bioresource Technology, 343, 126121.
Jesus, F., Pereira, J. L., Campos, I., Santos, M., Ré, A., Keizer, J., ... & Serpa, D. (2022). A review on polycyclic aromatic hydrocarbons distribution in freshwater ecosystems and their toxicity to benthic fauna. Science of The Total Environment, 153282.
Kieta, K. A., Owens, P. N., Petticrew, E. L., French, T. D., Koiter, A. J., & Rutherford, M. (2022). Polycyclic aromatic hydrocarbons in terrestrial and aquatic environments following wildfire: a review.
Environmental Reviews, (ja).
Kovács, A. T., & Kuipers, O. P. (2011). Rok regulates yuaB expression during architecturally complex colony development of Bacillus subtilis 168. Journal of bacteriology, 193(4), 998-1002.
Kronenberg, M., Trably, E., Bernet, N., & Patureau, D. (2017). Biodegradation of polycyclic aromatic hydrocarbons: Using microbial bioelectrochemical systems to overcome an impasse.
Environmental pollution (Barking, Essex : 1987), 231(Pt 1), 509–523.
https://doi.org/10.1016/j.envpol.2017.08.048
Kshikhundo, R., & Itumhelo, S. (2016). Bacterial species identification. World News of Natural Sciences, 3.
Kumar, A., & Gupta, H. (2020). Activated carbon from sawdust for naphthalene removal from contaminated water. Environmental Technology & Innovation, 20, 101080.
Kumar, S. S., & Ghosh, A. R. (2019). Assessment of bacterial viability: a comprehensive review on recent advances and challenges. Microbiology, 165(6), 593-610.
Liu, W., Shaikh, D. B., Rao, P. S., Bhosale, R. S., Said, A. A., Mak, A. M., ... & Zhang, Q. (2020). Molecular aggregation of naphthalene diimide (NDI) derivatives in electron transport layers of inverted perovskite solar cells and their influence on the device performance. Chemistry–An Asian Journal, 15(1), 112-121.
Lu, Z., Guo, W., & Liu, C. (2018). Isolation, identification and characterization of novel Bacillus subtilis. Journal of Veterinary Medical Science, 80(3), 427-433.
Maia, M. R., Marques, S., Cabrita, A. R., Wallace, R. J., Thompson, G., Fonseca, A. J., & Oliveira, H. M.
(2016). Simple and Versatile Turbidimetric Monitoring of Bacterial Growth in Liquid Cultures Using a Customized 3D Printed Culture Tube Holder and a Miniaturized Spectrophotometer:
Application to Facultative and Strictly Anaerobic Bacteria. Frontiers in microbiology, 7, 1381.
https://doi.org/10.3389/fmicb.2016.01381
Maier, R. M., & Pepper, I. L. (2015). Bacterial growth. In Environmental microbiology (pp. 37-56).
Academic Press.
Mallick, S. (2019). Biodegradation of acenaphthene by Sphingobacterium sp. strain RTSB involving trans-3-carboxy-2-hydroxybenzylidenepyruvic acid as a metabolite. Chemosphere.
10.1016/j.chemosphere.2018.12.046
Mamou, G., Mohan, G. B. M., Rouvinski, A., Rosenberg, A., & Ben-Yehuda., S. (2016). Early Developmental Program Shapes Colony Morphology in Bacteria. Cell Reports, 14(8).
Mohapatra, B., & Phale, P. S. (2021). Microbial degradation of naphthalene and substituted naphthalenes: metabolic diversity and genomic insight for bioremediation. Frontiers in Bioengineering and Biotechnology, 9, 602445.
43 Mojiri, A., Zhou, J. L., Ohashi, A., Ozaki, N., & Kindaichi, T. (2019). Comprehensive review of polycyclic aromatic hydrocarbons in water sources, their effects and treatments. Science of the total environment, 696, 133971.
Mu, D. S., Ouyang, Y., Chen, G. J., & Du, Z. J. (2021). Strategies for culturing active/dormant marine microbes. Marine Life Science & Technology, 3, 121-131.
Naud, S., Khelaifia, S., Mbogning Fonkou, M. D., Dione, N., Lagier, J. C., & Raoult, D. (2020). Proof of concept of culturomics use of time of care. Frontiers in cellular and infection microbiology, 10, 524769.
Ningthoujam, D. (2005). Isolation and Identification of a Brevibacterium linens strain degrading p- nitrophenol. African Journal of Biotechnology, 4(3), 256-257.
Patel, V., Patel, J., & Madamwar, D. (2013). Biodegradation of phenanthrene in bioaugmented microcosm by consortium ASP developed from coastal sediment of Alang-Sosiya ship breaking yard. Marine pollution bulletin, 74(1), 199-207.
Patel, A. B., Shaikh, S., Jain, K. R., Desai, C., & Madamwar, D. (2020). Polycyclic aromatic hydrocarbons:
sources, toxicity, and remediation approaches. Frontiers in Microbiology, 11, 562813.
Petersson, P., Forssen, P., Edström, L., Samie, F., Tatterton, S., Clarke, A., & Fornstedt, T. (2011). Why ultra high performance liquid chromatography produces more tailing peaks than high performance liquid chromatography, why it does not matter and how it can be addressed.
Journal of Chromatography A, 1218(39), 6914-6921.
Pushpanathan, M., Jayashree, S., Gunasekaran, P., & Rajendhran, J. (2014). Microbial bioremediation:
a metagenomic approach. In Microbial biodegradation and bioremediation (pp. 407-419).
Elsevier.
Qazi, F., Shahsavari, E., Prawer, S., Ball, A. S., & Tomljenovic-Hanic, S. (2021). Detection and identification of polyaromatic hydrocarbons (PAHs) contamination in soil using intrinsic fluorescence. Environmental Pollution, 272, 116010.
Qiao, M., Qi, W., Liu, H., Bai, Y., & Qu, J. (2016). Formation of oxygenated polycyclic aromatic hydrocarbons from polycyclic aromatic hydrocarbons during aerobic activated sludge treatment and their removal process. Chemical Engineering Journal. 10.1016/j.cej.2016.04.139
Rabani, M. S., Sharma, R., Singh, R., & Gupta, M. K. (2022). Characterization and Identification of naphthalene degrading bacteria isolated from petroleum contaminated Sites and their possible use in bioremediation. Polycyclic Aromatic Compounds, 42(3), 978-989.
Saleh, I. A., Zouari, N., & Al-Ghouti, M. A. (2020). Removal of pesticides from water and wastewater:
Chemical, physical and biological treatment approaches. Environmental Technology &
Innovation, 19, 101026.
Schlusselhuber, M., Girard, L., Cousin, F. J., Lood, C., De Mot, R., Goux, D., & Desmasures, N. (2021).
Pseudomonas crudilactis sp. nov., isolated from raw milk in France. Antonie van Leeuwenhoek, 114, 719-730.
Shahsavari, E., Schwarz, A., Aburto-Medina, A., & Ball, A. S. (2019). Biological degradation of polycyclic aromatic compounds (PAHs) in soil: a current perspective. Current Pollution Reports, 5, 84-92.
Shaltami, O. R, Hamed, N. M., Fares F., Errishi, H., El Oshebi, F. M., & Maceda, E. (2020). Soil pollution – A review. Virtual Conference on Environment and Health (VCEH).
Shimada, K., Nohchi, M., Maeshima, K., Uchino, T., Kobayashi, Y., Ono, K., ... & Okochi, H. (2022).
Effects of changes in polycyclic aromatic hydrocarbons (PAHs) emissions and degradation on their concentrations in Tokyo from 2007 and 2016. Scientific Reports, 12(1), 4249.
44 Singh, S. K., & Haritash, A. K. (2019). Polycyclic aromatic hydrocarbons: soil pollution and remediation.
International Journal of Environmental Science and Technology, 16, 6489-6512.
Smol, M., & Wlodarczyk-Makula, M. (2015). The Effectiveness in the Removal of PAHs from Aqueous Solutions in Physical and Chemical Processes: A Review. Polycyclic Aromatic Compounds.
10.1080/10406638.2015.1105828
Sonwani, R. K., Giri, B. S., Singh, R. S., & Rai, B. N. (2019). Studies on optimization of naphthalene biodegradation using surface response methodology: kinetic study and performance evaluation of a pilot scale integrated aerobic treatment plant. Process Safety and Environmental Protection, 132, 240-248.
Sun, Y., Zhao, X., Zhang, D., Ding, A., Chen, C., Huang, W. E., & Zhang, H. (2017). New naphthalene whole-cell bioreporter for measuring and assessing naphthalene in polycyclic aromatic hydrocarbons contaminated site. Chemosphere, 186, 510-518.
Tirkey, S. R., Ram, S., & Mishra, S. (2021). Naphthalene degradation studies using Pseudomonas sp.
strain SA3 from Alang-Sosiya ship breaking yard, Gujarat. Heliyon, 7(3), e06334.
Toyofuku, M., Inaba, T., Kiyokawa, T., Obana, N., Yawata, Y., & Nomura, N. (2016). Environmental factors that shape biofilm formation. Bioscience, biotechnology, and biochemistry, 80(1), 7-12.
Travkin, V. M., & Solyanikova, I. P. (2021). Salicylate or phthalate: the main intermediates in the bacterial degradation of naphthalene. Processes, 9(11), 1862.
Ukaogo, P. O., Ewuzie, U., & Onwuka, C. V. (2020). Environmental pollution: causes, effects, and the remedies. In Microorganisms for sustainable environment and health (pp. 419-429). Elsevier.
Wu, W., Nguyen, B. T. T., Liu, P. Y., Cai, G., Feng, S., Shi, Y., ... & Chin, L. K. (2022). A self-driven carbon- doped high-density microwell array for single cell analysis. Sensors and Actuators B: Chemical, 368, 132198.
Zazouli, M. A., & Kalankesh, L. R. (2017). Removal of precursors and disinfection by-products (DBPs) by membrane filtration from water; a review. Journal of Environmental Health Science and Engineering. 10.1186/s40201-017-0285-z
Zeng, G., Yang, R., Fu, X., Zhou, Z., Xu, Z., Zhou, Z., ... & Lyu, S. (2021). Naphthalene degradation in aqueous solution by Fe (II) activated persulfate coupled with citric acid. Separation and Purification Technology, 264, 118441.
Zhang, J., Yin, R., Lin, X., Liu, W., Chen, R., & Li, X. (2010). Interactive Effect of Biosurfactant and Microorganism to Enhance Phytoremediation for Removal of Aged Polycyclic Aromatic Hydrocarbons from Contaminated Soils. Journal of Health Science. 10.1248/jhs.56.257
Zhang, X., Yu, T., Li, X., Yao, J., Liu, W., Chang, S., & Chen, Y. (2019). The fate and enhanced removal of polycyclic aromatic hydrocarbons in wastewater and sludge treatment system: A review.
Critical Reviews in Environmental Science and Technology, 49(16), 1425-1475.