312
C. Bhagat et al.
Table 13.2 Different adsorbent used to removed different antibiotics and corresponding removal
efficiency
Antibiotic
Adsorbent
Efficiency (%) References
Ciprofloxacin
Polysaccharide-based
sodium
alginate/κ-carrageenan
double-network gel beads
55–60
Li et al. (2019)
Activated carbon produced
from Jerivá
93.43
de Oliveira Carvalho et al.
(2019)
ACs from Albizia lebbeck
seed pods by KOH
chemical activation
96.12
Ahmed and Theydan
(2014)
montmorillonite, rectorite,
and illite
95
Wang et al. (2011)
Nano-hydroxyapatite
47.3
Chen et al. (2015)
Modified coal fly ash
Zhang et al.
(2011)
Nano-hydroxyapatite
[Ca 10 (PO 4 ) 6 (OH) 2 ]
47.3
Chen et al. (2015)
Hazelnut shell activated
carbon
92.67
Balarak et al. (2016)
Norfloxacin
ACs from Albizia lebbeck
seed pods by KOH
chemical activation
98.13
Ahmed and Theydan
(2014)
Trapa natans
husk-activated carbon
90.7
Xie et al. (2011)
Nano-hydroxyapatite
51.6
Chen et al. (2015)
Aquatic plant residue
Trapa natans husk
Used H3PO4 activation
method.
90.7
Xie et al. (2011)
Nano-hydroxyapatite
[Ca10(PO4)6(OH)2]
51.6
Chen et al. (2015)
Penicillin G
Dried Rhizopus arrhizus
78.3
Aksu and Tunç (2005)
Dried activated sludge
61.1
Activated carbon
64.4
Dried duckweed (Lemna
minor)
94.6
Balarak et al. (2015)
Decaffeinated tea waste
39.3
Gharbani et al. (2015)
Activated carbon
nanoparticle from vine
wood
38.98–81.26
Pouretedal and Sadegh
(2014)
Tetracycline
Graphene oxide
71.4
Gao et al. (2012)
(continued)
C. Bhagat et al.
Table 13.2 Different adsorbent used to removed different antibiotics and corresponding removal
efficiency
Antibiotic
Adsorbent
Efficiency (%) References
Ciprofloxacin
Polysaccharide-based
sodium
alginate/κ-carrageenan
double-network gel beads
55–60
Li et al. (2019)
Activated carbon produced
from Jerivá
93.43
de Oliveira Carvalho et al.
(2019)
ACs from Albizia lebbeck
seed pods by KOH
chemical activation
96.12
Ahmed and Theydan
(2014)
montmorillonite, rectorite,
and illite
95
Wang et al. (2011)
Nano-hydroxyapatite
47.3
Chen et al. (2015)
Modified coal fly ash
Zhang et al.
(2011)
Nano-hydroxyapatite
[Ca 10 (PO 4 ) 6 (OH) 2 ]
47.3
Chen et al. (2015)
Hazelnut shell activated
carbon
92.67
Balarak et al. (2016)
Norfloxacin
ACs from Albizia lebbeck
seed pods by KOH
chemical activation
98.13
Ahmed and Theydan
(2014)
Trapa natans
husk-activated carbon
90.7
Xie et al. (2011)
Nano-hydroxyapatite
51.6
Chen et al. (2015)
Aquatic plant residue
Trapa natans husk
Used H3PO4 activation
method.
90.7
Xie et al. (2011)
Nano-hydroxyapatite
[Ca10(PO4)6(OH)2]
51.6
Chen et al. (2015)
Penicillin G
Dried Rhizopus arrhizus
78.3
Aksu and Tunç (2005)
Dried activated sludge
61.1
Activated carbon
64.4
Dried duckweed (Lemna
minor)
94.6
Balarak et al. (2015)
Decaffeinated tea waste
39.3
Gharbani et al. (2015)
Activated carbon
nanoparticle from vine
wood
38.98–81.26
Pouretedal and Sadegh
(2014)
Tetracycline
Graphene oxide
71.4
Gao et al. (2012)
(continued)
