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. Author manuscript; available in PMC: 2021 Apr 1.
Published in final edited form as: J Environ Manage. 2020 Jan 9;259:110044. doi: 10.1016/j.jenvman.2019.110044

Table 3.

Compilation of the main studies regarding the synthesis of CS-GO for the removal of organics in water.

Composite precursors Target pollutants Removal capacity (mg g−1) Reference
CS; GO Methylene blue
Eosin Y
320
240
(Chen, 2013)
CS; GO;
Fe3O4
Methylene blue 180.83 (Fan, 2012)
CS; GO; FeCl3·6H2O;
FeCl2·4H2O;
gluteraldehyde
Reactive black 5 221 (Travlou, 2013)
CS; GO; FeCl3·6H2O;
FeCl2·4H2O; gluteraldehyde;
EPC; β-ciclodextrin
Methylene blue 50.12; 84.32 (Fan, 2013)
Cellulose; GO Methylene blue 70.63 (Shi, 2013)
CS; GO; FeCl3·6H2O AO7 42.7 (Shesmani, 2014)
CS; GO; FeCl3·6H2O;
FeCl2·4H2O;
Fuchsine 75.31 (Leilei, 2014)
CS; GO; Fly ash; Acid red and cationic red 40
60
(Sheng, 2016)
CS/GO ratio = 0.1 Benzene
Toluene
Naphthalene
147
60
8
This study