References
- M. Ponnuchamy, A. Kapoor, B. Pakkirisamy, P. Sivaraman,
K. Ramasamy, Optimization, equilibrium, kinetic and
thermodynamic studies on adsorptive remediation of phenol
onto natural guava leaf powder, Environ. Sci. Pollut. Res.,
27 (2020) 20576–20597.
- P. Muthamilselvi, R. Karthikeyan, A. Kapoor, S. Prabhakar,
Continuous fixed-bed studies for adsorptive remediation
of phenol by garlic peel powder, Int. J. Ind. Chem., 9 (2018)
379–390.
- K. Sofiya, E. Poonguzhali, A. Kapoor, P. Delfino, S. Prabhakar,
Separation of carboxylic acids from aqueous solutions using
hollow fiber membrane contactors, J. Membr. Sci. Res., 5 (2019)
233–239.
- M. Ponnuchamy, A. Kapoor, P. Senthil Kumar, D.V.N. Vo,
A. Balakrishnan, M. Mariam Jacob, P. Sivaraman, Sustainable
adsorbents for the removal of pesticides from water: a review,
Environ. Chem. Lett., 19 (2021) 2425–2463.
- A. Sridhar, D. Kannan, A. Kapoor, S. Prabhakar, Extraction and
detection methods of microplastics in food and marine systems:
a critical review, Chemosphere, 286 (2022) 131653, doi:10.1016/j.chemosphere.2021.131653.
- B.P. Patel, A. Kumar, Biodegradation of 2,4-dichlorophenol
by Bacillus endophyticus strain: optimization of experimental
parameters using response surface methodology and kinetic
study, Desal. Water Treat., 57 (2016) 15932–15940.
- P.M. Armenante, D. Kafkewitz, G.A. Lewandowski,
C.J. Jou, Anaerobic-aerobic treatment of halogenated phenolic
compounds, Water Res., 33 (1999) 681–692.
- M. Rafiee, A. Mesdaghinia, M.H. Ghahremani, S. Nasseri,
R. Nabizadeh, 4-Chlorophenol inhibition on flocculent and
granular sludge sequencing batch reactors treating synthetic
industrial wastewater, Desal. Water Treat., 49 (2012) 307–316.
- A. Kargari, Simultaneous extraction and stripping of
4-chlorophenol from aqueous solutions by emulsion liquid
membrane, Desal. Water Treat., 51 (2013) 2275–2279.
- C. Thakur, A. Dembla, V.C. Srivastava, I.D. Mall, Removal of
4-chlorophenol in sequencing batch reactor with and without
granular-activated carbon, Desal. Water Treat., 52 (2014)
4404–4412.
- A. Kargari, F. Khazaali, Effect of operating parameters on
2-chlorophenol removal from wastewaters by a low-pressure
reverse osmosis system, Desal. Water Treat., 55 (2015) 114–124.
- C. Thakur, A. Dembla, V.C. Srivastava, I.D. Mall, Removal of
4-chlorophenol in sequencing batch reactor with and without
granular-activated carbon, Desal. Water Treat., 52 (2014)
4404–4412.
- F. Fava, P.M. Armenante, D. Kafkewitz, Aerobic degradation
and dechlorination of 2-chlorophenol,
3-chlorophenol and
4-chlorophenol by a Pseudomonas pickettii strain, Lett. Appl.
Microbiol., 21 (1995) 307–312.
- G.A. Hill, B.J. Milne, P.A. Nawrocki, Cometabolic degradation
of 4-chlorophenol by Alcaligenes eutrophus, Appl. Microbiol.
Biotechnol., 46 (1996) 163–168.
- R. Rubio Pérez, G. González Benito, M. Peña Miranda,
Chlorophenol degradation by Phanerochaete chrysosporium,
Bioresour. Technol., 60 (1997) 207–213.
- Y.H. Lin, C.H. Wu, Kinetics of the biodegradation of phenol
and 2-chlorophenol in a fixed biofilm reactor using a dewatered
sludge–fly ash composite ceramic particle as a supporting
medium, Desal. Water Treat., 157 (2019) 39–52.
- H. Zilouei, B. Guieysse, B. Mattiasson, Biological degradation of
chlorophenols in packed-bed bioreactors using mixed bacterial
consortia, Process Biochem., 41 (2006) 1083–1089.
- D.S. Shen, X.W. Liu, H.J. Feng, Effect of easily degradable
substrate on anaerobic degradation of pentachlorophenol in
an upflow anaerobic sludge blanket (UASB) reactor, J. Hazard.
Mater., 119 (2005) 239–243.
- E. Sahinkaya, F.B. Dilek, Effect of biogenic substrate
concentration on the performance of sequencing batch reactor
treating 4-CP and 2,4-DCP mixtures, J. Hazard. Mater.,
128 (2006) 258–264.
- I. Durruty, E. Okada, J.F. González, S.E. Murialdo, Multisubstrate
monod kinetic model for simultaneous degradation of
chlorophenol mixtures, Biotechnol. Bioprocess Eng., 16 (2011)
908–915.
- S.J. Wang, K.C. Loh, Facilitation of cometabolic degradation of
4-chlorophenol using glucose as an added growth substrate,
Biodegradation, 10 (1999) 261–269.
- B.P. Patel, A. Kumar, Biodegradation of 4-chlorophenol in an
airlift inner loop bioreactor with mixed consortium: effect of
HRT, loading rate and biogenic substrate, 3 Biotech, 6 (2016)
1–9.
- J. Jaafari, A.B. Javid, H. Barzanouni, A. Younesi, N.A.A.
Farahani, M. Mosazadeh, P. Soleimani, Performance of
modified one-stage phoredox reactor with hydraulic up-flow in
biological removal of phosphorus from municipal wastewater,
Desal. Water Treat., 171 (2019) 216–222.
- S.D. Ashrafi, G.H. Safari, K. Sharafi, H. Kamani, J. Jaafari,
Adsorption of 4-nitrophenol on calcium
alginate-multiwall
carbon nanotube beads: modeling, kinetics, equilibriums and
reusability studies, Int. J. Biol. Macromol., 185 (2021) 66–76.
- D. Naghipour, E. Rouhbakhsh, J. Jaafari, Application of the
biological reactor with fixed media (IFAS) for removal of organic
matter and nutrients in small communities, Int. J. Environ.
Anal. Chem., (2020) 1–11, doi:10.1080/03067319.2020.1803851.
- Q. Xiangchun, S. Hanchang, Z. Yongming, W. Jianlong, Q. Yi,
Biodegradation of 2,4-dichlorophenol in an air-lift honeycomblike
ceramic reactor, Process Biochem., 38 (2003) 1545–1551.
- A.G. De Jesús, F.J. Romano-Baez, L. Leyva-Amezcua, C. Juárez-Ramírez, N. Ruiz-Ordaz, J. Galíndez-Mayer, Biodegradation of
2,4,6-trichlorophenol in a packed-bed biofilm reactor equipped
with an internal net draft tube riser for aeration and liquid
circulation, J. Hazard. Mater., 161 (2009) 1140–1149.
- S.E. Murialdo, R. Fenoglio, P.M. Haure, J.F. González,
Degradation of phenol and chlorophenols by mixed and pure
cultures, Water SA, 29 (2003) 457–463.
- J.H. Kim, K.K. Oh, S.T. Lee, S.W. Kim, S.I. Hong, Biodegradation
of phenol and chlorophenols with defined mixed culture in
shake-flasks and a packed bed reactor, Process Biochem.,
37 (2002) 1367–1373.
- P.S. Majumder, S.K. Gupta, Degradation of 4-chlorophenol
in UASB reactor under methanogenic conditions, Bioresour.
Technol., 99 (2008) 4169–4177.
- F. Kargi, I. Konya, Para-chlorophenol containing synthetic
wastewater treatment in an activated sludge unit: effects of
hydraulic residence time, J. Environ. Manage., 84 (2007) 20–26.
- V. Saravanan, M. Rajasimman, N. Rajamohan, Performance of
packed bed biofilter during transient operating conditions on
removal of xylene vapour, Int. J. Environ. Sci. Technol., 12 (2015)
1625–1634.
- S. Balasubramanian, A. Udayabhanu, P.S. Kumar,
P. Muthamilselvi, C. Eswari, A. Vasantavada, S. Kanetkar,
A. Kapoor, Digital colorimetric analysis for estimation of iron
in water with smartphone-assisted microfluidic paper-based
analytical devices, Int. J. Environ. Anal. Chem., (2021) 1–18,
doi:10.1080/03067319.2021.1893711.
- P. Sri Sruthi, S. Balasubramanian, P. Senthil Kumar, A. Kapoor,
M. Ponnuchamy, M. Mariam Jacob, S. Prabhakar, Ecofriendly
pH detecting paper-based analytical device: towards
process intensification, Anal. Chim. Acta, 1182 (2021) 338953,
doi: 10.1016/j.aca.2021.338953.
- A.K. Govindarajalu, M. Ponnuchamy, B. Sivasamy, M.V. Prabhu,
A. Kapoor, A cellulosic paper-based sensor for detection
of starch contamination in milk, Bull. Mater. Sci., 42 (2019)
255 (1–6).
- R. Ghosh, V. Vaishampayan, A. Mahapatra, R. Malhotra,
S. Balasubramanian, A. Kapoor, Enhancement of limit of
detection by inducing coffee-ring effect in water quality
monitoring microfluidic paper-based devices, Desal. Water
Treat., 156 (2019) 316–322.
- E. Kavitha, E. Poonguzhali, D. Nanditha, A. Kapoor,
G. Arthanareeswaran, S. Prabhakar, Current status and
future prospects of membrane separation processes for value
recovery from wastewater, Chemosphere, 291 (2022) 132690,
doi: 10.1016/j.chemosphere.2021.132690.