References
- S. Yasin, T. Iqbal, Z. Arshad, M. Rustam, M. Zafar, Environmental
pollution from automobile vehicle service stations, Biotech.
Bioeng., 110 (2012) 286–295.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- Metcalf, Eddy, Wastewater Engineering: Treatment and
Resource Recovery. 5th ed., McGraw-Hill, New York, 2014.
- 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.
- APHA (American Public Health Association), Standard methods
for the examination of water and wastewater, Washington,
DC, USA. 89 (2005) 1888–1897.
- 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.
- 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.
- 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.
- 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.
- 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.
- W.M. Wiegent, Experiences and potential of anaerobic wastewater
treatment in tropical regions, Wat. Sci. Tech., 44(8) (2001)
107–113.
- 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.
- 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.
- G. Lettinga, L.W. Hulshoff Pol, UASB Process design for various
types of wastewaters, Wat. Sci. Tech., 24 (1991) 87–107.
- J.B. Van Lier, G. Lettinga, Appropriate technologies for effective
management of industrial and domestic waste waters,
Wat. Sci. Tech., 40 (1999) 171–183.
- S. Chinnaraj, G.V. Rao, Implementation of an UASB anaerobic
digester at bagasse-based pulp and paper industry, Biomater.
Bioener., 30 (2006) 273–277.
- M. Alexander, Biodegradation and Bioremediation. Academic
Press, San Diego, CA. (1994) 301–309.
- M. Climenhaga, C. Banks, Anaerobic digestion of catering
wastes: effect of micronutrients and solids retention time, Wat.
Sci. Tech., 57 (2008) 687–692.
- 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.
- N. Das, P. Chandran, Microbial degradation of petroleum
hydrocarbon contaminants: An overview, Biotechnol. Res.
Inter., (2011) http://dx.doi.org/10.4061/2011/941810.
- 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.