240
15 Photobiological Reactors for the Degradation of Harmful Compounds in Wastewaters
15 Abimbola, O.A., Anuoluwapo, T.A., Omowunmi, A.B. et al. (2020). Detection of
sul1 and sul2 genes in sulfonamide-resistant bacteria (SRB) from sewage, aqua-
culture sources, animal wastes and hospital wastewater in South-West Nigeria.
Gene Reports 20: 100742.
16 Jiaqi, C., Jingjing, W., Chi, M. et al. (2020). Photosynthetic bacteria-based
technology is a potential alternative to meet sustainable wastewater treatment
requirement? Environment International 137: 100742.
17 Xu, D., Xiao, W., Jing, X. et al. (2018). Acidogenic bacteria assisted biodegrada-
tion of nonylphenol in waste activated sludge during anaerobic fermentation for
short-chain fatty acids production. Bioresource Technology 268: 692–699.
18 Olalekan, C.O., Alex, T.K., and Damian, O. (2020). Photo enhanced degradation
of contaminants of emerging concern in waste water. Emerging Contaminants 6:
283–303.
19 Irene, O.J., Stefanos, G., Dominique, G. et al. (2020). Unfolding the action mode
of light and homogeneous vs. heterogeneous photo-Fenton in bacteria disin-
fection and concurrent elimination of micropollutants in urban wastewater,
mediated by iron oxides in Raceway Pond Reactors. Applied Catalysis B: Environ-
mental 263: 118158.
20 Bandara, J., Pulgarin, C., Peringer, P. et al. (1997). Chemical (photo-activated)
coupled biological homogeneous degradation of p-nitro-o-toluene-sulfonic acid
in a flow reactor. Journal of Photochemistry and Photobiology A: Chemistry 111:
253–263.
21 Yasar, A.K.A., Baskaralingam, P., Gopinath, S. et al. (2019). Degradation of phe-
nol from retting-pond wastewater using anaerobic sludge reactor integrated with
photo catalytic treatment. Chemical Physics Letters 734: 136727.
22 Naira, M., Mona, G.I., Manabu, F. et al. (2020). Integrated dark-photo fer-
mentative hydrogen production from synthetic gelatinaceous wastewater via
cost-effective hybrid reactor at ambient temperature. Energy Conversion and
Management 203: 112250.
23 Xiangtong, K., Jinxing, M., Pierre, L. et al. (2020). Management of concentrate
and waste streams for membrane-based algal separation in water treatment.
Water Research 183: 115969.
24 Deshpande, B.D., Agrawal, P.S., Yenkie, M.K.N. et al. (2020). Prospective of nan-
otechnology in degradation of waste water: a new challenges. Nano-Structures &
Nano-Objects 22: 100442.
25 Ankita, M., Abhinav, P., Chandrasekaran, N. et al. (2017). Nano-TiO2 enhances
biofilm formation in a bacterial isolate from activated sludge of a waste water
treatment plant. International Biodeterioration & Biodegradation 116: 17–25.