References

  1. S. Yasin, T. Iqbal, Z. Arshad, M. Rustam, M. Zafar, Environmental pollution from automobile vehicle service stations, Biotech. Bioeng., 110 (2012) 286–295.
  2. S.P. Lohani, S. Wang, S. Lackner, H. Horn, R. Bakke, ADM1 modeling of UASB treating domestic wastewater in Nepal, Renew. Ener., 95 (2016) 263–268.
  3. S. Xu, L. Zhang, S. Huang, G. Zeeman, Y. Liu, Improving the energy efficiency of a pilot scale UASB digester for low temperature domestic wastewater treatment, Biochem. Eng. J., 135 (2018) 71–78.
  4. J. Cheng, X. Zhu, J. Ni, A. Borthwick, Palm oil mill effluent treatment using a two-stage microbial fuel cells system integrated with immobilized biological aerated filters, Bioresour. Technol., 101 (2010) 2729–2734.
  5. G.D. Najafpour, A.A.L. Zinatizadeh, A.R. Mohamed, M. Hasnain Isa, H. Nasrollahzadeh, High-rate anaerobic digestion of palm oil mill effluent in an upflow anaerobic sludgefixed film bioreactor, Proc. Biochem., 41 (2006) 370–379.
  6. T. Narihiro, T. Terada, A. Ohashi, J.H. Wu, W.T. Liu, N. Araki, Y. Kamagata, K. Nakamura, Y. Sekiguchi, Quantitative detection of culturable methanogenic archaea abundance in anaerobic treatment systems using the sequence-specific rRNA cleavage method, ISME J., 3 (2009) 522–535.
  7. J.E.E. Schmidt, B.K. Ahring, Extracellular polymers in granular sludge from different upflow anaerobic sludge blanket (UASB) reactors, Appl. Microbiol. Biotechnol., 42 (1994) 457–462.
  8. E. Colleran, F. Concannon, T. Golden, F. Geoghegan, B. Crumlish, E. Killilea, M. Henry, J. Coates, Use of methanogenic activity tests to characterize anaerobic sludges, screen for anaerobic biodegradability and determine toxicity thresholds against individual anaerobic trophic groups and species, Wat. Sci. Tech., 25 (1992) 31–40.
  9. E.M. Top, D. Springael, N. Boon, Catabolic mobile genetic elements and their potential use in bioaugmentation of polluted soils and waters, FEMS Microbiol. Ecol., 42 (2002) 199–208.
  10. Y. Lee, J. Jeong, I.J. Youn, W.H. Lee, Modified liquid displacement method for determination of pore size distribution in porous membrane, J. Membr. Sci., 130 (1997) 149–156.
  11. Metcalf, Eddy, Wastewater Engineering: Treatment and Resource Recovery. 5th ed., McGraw-Hill, New York, 2014.
  12. F. Maqbool, Z.A. Bhatti, H. Nazir, S. Qayyum, Y.-G. Zhao, I. Khan, R. Kamal, A. Pervez, Confectionery wastewater treatment through upflow microbial fuel cell, Desal. Water Treat., 99 (2017) 248–254.
  13. APHA (American Public Health Association), Standard methods for the examination of water and wastewater, Washington, DC, USA. 89 (2005) 1888–1897.
  14. F. Maqbool, X. Ying, J. Zhao, Z. Wang, D. Gao, Y.-G. Zhao, Z.A. Bhatti, Rhizodegradation of petroleum hydrocarbons by Sesbaniacannabina in bioaugmented soil with free and immobilized consortium, J. Hazard. Mater., 237–238 (2012) 262–269.
  15. P. Sivagurunathan, P. Anburaj, P. Kuman, S. Kim, Effect of hydraulic retention time on biohydrogen production from galactose in an up-flow anaerobic sludge blanket reactor, Int. J. Hydrog. Energy, 41 (2016) 21670–21677.
  16. R.M. Atlas, Bioremediation of fossil fuel contaminated soils. In: In situ Bioreclamation. Applications and Investigations for Hydrocarbon and Contaminated Site Remediation. Hinchee, R.E., Olfenbuttel, R.F., Eds. Butterworth-Heinemann, Stoneham, MA (1991) pp. 14–33.
  17. A. Ueno, Y. Ito, I. Yumoto, H. Okuyama, Isolation and characterization of bacteria from soil contaminated with diesel oil and the possible use of these in autochthonous bioaugmentation, World J. Microbiol. Biotech., 23 (2007) 1739–1745.
  18. J.A. Montes, R. Leivas, D. Martínez-Prieto, C. Rico, Biogas production from the liquid waste of distilled gin production: Optimization of UASB reactor performance with increasing organic loading rate for co-digestion with swine wastewater, Bioresour. Technol., 274 (2019) 43–47.
  19. W.M. Wiegent, Experiences and potential of anaerobic wastewater treatment in tropical regions, Wat. Sci. Tech., 44(8) (2001) 107–113.
  20. S.M.M. Vieira, A.D. Garcia, Sewage treatment by UASB-reactor: Operation results and recommendations for design and utilization, Wat. Sci. Tech., 25 (1993) 143–157.
  21. L.K. Agrawal, Y. Ohashi, E. Mochida, H. Okui, Y. Ueki, H. Harada, A. Ohashi, Treatment of raw sewage in a temperate climate using a UASB reactor and the hanging sponge cubes process, Wat. Sci. Tech., 36 (1997) 433–440.
  22. G. Lettinga, L.W. Hulshoff Pol, UASB Process design for various types of wastewaters, Wat. Sci. Tech., 24 (1991) 87–107.
  23. J.B. Van Lier, G. Lettinga, Appropriate technologies for effective management of industrial and domestic waste waters, Wat. Sci. Tech., 40 (1999) 171–183.
  24. S. Chinnaraj, G.V. Rao, Implementation of an UASB anaerobic digester at bagasse-based pulp and paper industry, Biomater. Bioener., 30 (2006) 273–277.
  25. M. Alexander, Biodegradation and Bioremediation. Academic Press, San Diego, CA. (1994) 301–309.
  26. M. Climenhaga, C. Banks, Anaerobic digestion of catering wastes: effect of micronutrients and solids retention time, Wat. Sci. Tech., 57 (2008) 687–692.
  27. A.A.L. Zinatizadeh, A.R. Mohamed, A.Z. Abdullah, M.D. Mashitah, M.H. Isa, G.D. Najafpour, Process modeling and analysis of palm oil mill effluent treatment in an up-flow anaerobic sludge fixed film bioreactor using response surface methodology, Wat. Res., 40 (2006) 3193–3208.
  28. N. Das, P. Chandran, Microbial degradation of petroleum hydrocarbon contaminants: An overview, Biotechnol. Res. Inter., (2011) http://dx.doi.org/10.4061/2011/941810.
  29. B.M. Macaulay, Understanding the behaviour of oil-degrading micro-organisms to enhance the microbial remediation of spilled petroleum, Appl. Ecol. Environ. Res., 13 (2014) 247–262.