References
- A.R. Johnsen, U. Karlson, PAH degradation capacity of soil
microbial communities—does it depend on PAH exposure?,
Microb. Ecol., 50 (2005) 488–495.
- M. Charlesworth, M. Service, C.E. Gibson, PAH contamination
of western Irish Sea sediments, Mar. Pollut. Bull., 44 (2002)
1421–1426.
- Z. Qamar, S. Khan, A. Khan, M. Aamir, J. Nawab, M. Waqas,
Appraisement, source apportionment and health risk of
polycyclic aromatic hydrocarbons (PAHs) in vehicle-wash
wastewater, Pakistan, Sci. Total Environ., 605 (2017) 106–113.
- S. Hall, R. Tang, J. Baeyens, R. Dewil, Removing polycyclic
aromatic hydrocarbons from water by adsorption on silicagel,
Polycyclic Aromat. Compd., 29 (2009) 160–183.
- H.I. Abdel-Shafy, MS.M. Mansour, A review on polycyclic
aromatic hydrocarbons: source, environmental impact, effect
on human health and remediation, Egypt. J. Pet., 25 (2016)
107–123.
- M. Blanchard, M.J. Teil, D. Ollivon, L. Legenti, M. Chevreuil,
Polycyclic aromatic hydrocarbons and polychlorobiphenyls in
wastewaters and sewage sludges from the Paris area (France),
Environ. Res., 95 (2004) 184–197.
- M. Waqas, S. Khan, C. Chao, I. Shamshad, Z. Qamar, K. Khan,
Quantification of PAHs and health risk via ingestion of
vegetable in Khyber Pakhtunkhwa Province, Pakistan,
Sci. Total Environ., 497 (2014) 448–458.
- A.J. Sweetman, K.C. Jones, Declining PCB concentrations
in the UK atmosphere: evidence and possible causes,
Environ. Sci. Technol., 34 (2000) 863–869.
- M. Ilyas, W. Ahmad, H. Khan, Utilization of activated carbon
derived from waste plastic for decontamination of polycyclic
aromatic hydrocarbons laden wastewater, Water Sci. Technol.,
84 (2021) 609–631.
- I. Oller, S. Malato, J. Sánchez-Pérez, Combination of advanced
oxidation processes and biological treatments for wastewater
decontamination—a review, Sci. Total Environ., 409 (2011)
4141–4166.
- C. Comninellis, A. Kapalka, S. Malato, S.A. Parsons, I. Poulios,
D. Mantzavinos, Advanced oxidation processes for water
treatment: advances and trends for R&D, J. Chem. Technol.
Biotechnol., 83 (2008) 769–776.
- I. Ali, Mohd. Asim, T.A. Khan, Low-cost adsorbents for the
removal of organic pollutants from wastewater, J. Environ.
Manage., 113 (2012) 170–183.
- J. Mittal, A. Mittal, Hen Feather: A Remarkable Adsorbent for
Dye Removal, S.K. Sharma FRSC, Ed., Green Chemistry for Dyes
Removal from Wastewater: Research Trends and Applications,
Scrivener Publishing LLC, USA, 2015, pp. 409–457.
- M. Ilyas, W. Ahmad, H. Khan, S. Yousaf, Potentially poisonous
elements removal from vehicle-wash wastewater and aqueous
solutions using composite adsorbents, Desal. Water Treat.,
224 (2021) 331–342.
- M. Ilyas, W. Ahmad, H. Khan, I. Ahmad, Application of
composite adsorbents prepared from waste PS and PET for
removal of Cr and Cu ions from wastewater, Desal. Water
Treat., 171 (2019) 144–157.
- N.M. Alandis, W. Mekhamer, O. Aldayel, J.A.A. Hefne,
M. Alam, Adsorptive applications of montmorillonite clay
for the removal of Ag(I) and Cu(II) from aqueous medium,
J. Chem., 2019 (2019) 7129014, doi: 10.1155/2019/7129014.
- H. Daraei, A. Mittal, Investigation of adsorption performance
of activated carbon prepared from waste tire for the removal
of methylene blue dye from wastewater, Desal. Water Treat.,
90 (2017) 294–298.
- R. Ahmad, I. Hasan, A. Mittal, Adsorption of Cr(VI) and
Cd(II) on chitosan grafted polyaniline-OMMT nanocomposite:
isotherms, kinetics and thermodynamics studies, Desal. Water
Treat., 58 (2017) 144–153.
- J. Mittal, R. Ahmad, A. Mariyam, V.K. Gupta, A. Mittal,
Expeditious and enhanced sequestration of heavy metal ions
from aqueous environment by papaya peel carbon: a green and
low-cost adsorbent, Desal. Water Treat., 210 (2021) 365–376.
- P.R. Yaashikaa, P.S. Kumar, A. Saravanan, D.-V.N. Vo, Advances
in biosorbents for removal of environmental pollutants: a
review on pretreatment, removal mechanism and future
outlook, J. Hazard. Mater., 420 (2021) 126596, doi: 10.1016/j.
jhazmat.2021.126596.
- A. Saravanan, P. Senthil Kumar, B. Preetha, Optimization of
process parameters for the removal of chromium(VI) and
nickel(II) from aqueous solutions by mixed biosorbents (custard
apple seeds and Aspergillus niger) using response surface
methodology, Desal. Water Treat., 57 (2016) 14530–14543.
- A. Saravanan, S. Karishma, P.S. Kumar, S. Varjani,
P.R. Yaashikaa, S. Jeevanantham, R. Ramamurthy, B. Reshma,
Simultaneous removal of Cu(II) and reactive green 6 dye from
wastewater using immobilized mixed fungal biomass and
its recovery, Chemosphere, 271 (2021) 129519, doi: 10.1016/j.chemosphere.2020.129519.
- A. Saravanan, P.S. Kumar, P.R. Yaashikaa, S. Karishma,
S. Jeevanantham, S. Swetha, Mixed biosorbent of agro waste
and bacterial biomass for the separation of Pb(II) ions from
water system, Chemosphere, 277 (2021) 130236, doi: 10.1016/j.chemosphere.2021.130236.
- A. Saravanan, T.R. Sundararaman, S. Jeevanantham,
S. Karishma, P.S. Kumar, P.R. Yaashikaa, Effective adsorption
of Cu(II) ions on sustainable adsorbent derived from mixed
biomass (Aspergillus campestris and agro waste): optimization,
isotherm and kinetics study, Groundwater Sustainable Dev.,
11 (2020) 100460, doi: 10.1016/j.gsd.2020.100460.
- R. Jain, P. Sharma, S. Sikarwar, J. Mittal, D. Pathak, Adsorption
kinetics and thermodynamics of hazardous dye Tropaeoline 000
unto Aeroxide Alu C (nano alumina): a non-carbon adsorbent,
Desal. Water Treat., 52 (2014) 7776–7783.
- Y.S. Ren, H. Khan, B. Khan, M. Ilyas, S. Iqbal, Application
of eucalyptus wood waste derived biochar for adsorption
of aluminum from aqueous solutions, Desal. Water Treat.,
287 (2023) 116–123.
- M. Ilyas, W. Ahmad, H. Khan, Polycyclic aromatic hydrocarbons
removal from vehicle-wash wastewater using activated char,
Desal. Water Treat., 236 (2021) 55–68.
- M. Ilyas, H. Khan, W. Ahmad, Conversion of waste plastics
into carbonaceous adsorbents and their application for
wastewater treatment, Int. J. Environ. Anal. Chem., (2022),
doi: 10.1080/03067319.2022.2062571.
- J.L. Figueiredo, J.A. Moulijn, Carbon and Coal Gasification:
Science and Technology, Vol. 105, Springer Dordrecht, 2012.
- S. Wadhawan, A. Jain, J. Nayyar, S.K. Mehta, Role of
nanomaterials as adsorbents in heavy metal ion removal from
wastewater: a review, J. Water Process Eng., 33 (2020) 101038,
doi: 10.1016/j.jwpe.2019.101038.
- V.K. Gupta, I. Ali, T.A. Saleh, M.N. Siddiqui, S. Agarwal,
Chromium removal from water by activated carbon developed
from waste rubber tires, Environ. Sci. Pollut. Res., 20 (2013)
1261–1268.
- J. Lyklema, Fundamentals of Interface and Colloid Science,
Vol. II. Solid–Liquid Interfaces, Academic Press, New York,
1995.
- A. Puszkarewicz, J. Kaleta, The efficiency of the removal of
naphthalene from aqueous solutions by different adsorbents,
Int. J. Environ. Res. Public Health, 17 (2020) 5969, doi: 10.3390/ijerph17165969.
- M. Smol, M. Włodarczyk-Makuła, M.D. Włóka, Adsorption
of polycyclic aromatic hydrocarbons (PAHs) from aqueous
solutions on different sorbents, Civ. Environ. Eng. Rep.,
13 (2014) 87–96.
- A. Awoyemi, Understanding the Adsorption of Polycyclic
Aromatic Hydrocarbons From Aqueous Phase onto Activated
Carbon, University of Toronto, Toronto (ON), 2011.
- M. Yuan, S. Tong, S. Zhao, C.Q. Jia, Adsorption of polycyclic
aromatic hydrocarbons from water using petroleum cokederived
porous carbon, J. Hazard. Mater., 181 (2010) 1115–1120.