Treatment of Textile Wastewater Using Biochar Produced …
221
18. Saba B, Jabeen M, Mahmood T, Aziz I (2014) Treatment comparison efficiency of microbial
amended agro-waste biochar constructed wetlands for reactive black textile dye. IPCBEE 65.
https://doi.org/10.7763/IPCBEE. 2014. V65. 3
19. Abd-Elhamid AI, Emran M, El-Sadek MH, El-Shanshory AA, Soliman HMA, Akl MA, Rashad
M (2020) Enhanced removal of cationic dye by eco-friendly activated biochar derived from
rice straw. Appl Water Sci 10:45. https://doi.org/10.1007/s13201-019-1128-0
20. Zhang B, Wu Y, Cha L (2019) Removal of methyl orange dye using activated biochar derived
from pomelo peel wastes: performance, isotherm, and kinetic studies. J Dispersion Sci Technol
125–136. https://doi.org/10.1080/01932691.2018.1561298
21. Ates A, Oymak T (2019) Characterization of persimmon fruit peel and its biochar for removal
of methylene blue from aqueous solutions: thermodynamic, kinetic and isotherm studies. Int J
Phytorem 607–616. https://doi.org/10.1080/15226514.2019.1696745
22. Kosaiyakanon C, Kungsanant S (2019) Adsorption of reactive dyes from wastewater using
cationic surfactant-modified coffee husk biochar. Thaijo 18(1). https://doi.org/10.32526/ennrj.
18.1.2020.03
23. Córdova BM, Santa Cruz JP, Ocampo M TV, Huamani-Palomino RG, Baena-Moncada AM
(2020) Simultaneous adsorption of a ternary mixture of brilliant green, rhodamine B and methyl
orange as artificial wastewater onto biochar from cocoa pod husk waste. Quantification of dyes
using the derivative spectrophotometry method. New J Chem 44:8303. https://doi.org/10.1039/
D0NJ00916D
24. da Silva EO, dos Santos VD, de Araujo EB, Guterres FP, Zottis R, Flores WH, de Almeida
ARF (2020) Removal of methylene blue from aqueous solution by ryegrass straw. Int J Environ
Sci Technol. https://doi.org/10.1007/s13762-020-02718-9
25. Dawood S, Sen TK, Phan C (2017) Synthesis and characterisation of slow pyrolysis pine
cone bio-char in the removal of organic and inorganic pollutants from aqueous solution by
adsorption: kinetic, equilibrium, mechanism and thermodynamic. Biores Technol 246:76–81.
https://doi.org/10.1016/j.biortech.2017.07.019
26. Dai L, Zhu W, He L, Tan F, Zhu N, Zhou Q, He M, Hu G (2018) Calcium-rich biochar from crab
shell: an unexpected super adsorbent for dye removal. Biores Technol 267:510–516. https://
doi.org/10.1016/j.biortech.2018.07.090
27. Dawood S, Sen TT, Phan C (2016) Adsorption removal of Methylene Blue (MB) dye from
aqueous solution by bio-char prepared from Eucalyptus sheathiana bark: kinetic, equilibrium,
mechanism, thermodynamic and process design. J Desalin Water Treat 57(59):28964–28980.
https://doi.org/10.1080/19443994.2016.1188732
28. Roy K, Verma KM, Vikrant K, Goswami M, Sonwani RK, Rai BN, Vellingiri K, Kim K-H,
Giri BS, Singh RS (2018) Removal of Patent Blue (V) dye using indian Bael shell biochar:
characterization, application and kinetic studies. Sustainability 10(8):2669. https://doi.org/10.
3390/su10082669
29. Han X, Chu L, Liu S, Chen T, Ding C, Yan J, Cui L, Quan G (2015) Removal of Methylene
Blue from aqueous solution using porous biochar obtained by KOH activation of peanut shell
biochar. BioResources 10(2):2836–2849
30. Vikrant K, Roy K, Goswami M, Tiwari H, Giri BS, Kim K-H, Tsang YF, Singh RS (2020) The
potential application of biochars for dyes with an emphasis on azo dyes: analysis through an
experimental case study utilizing fruit-derived biochar for the abatement of congo red as the
model pollutant. Biochar Appl Agric Environ Manage. https://doi.org/10.1007/978-3-030-409
97-5_3
31. Senthamarai C, Senthil Kumar P, Priyadharshini M, Vijayalakshmi P, Vinoth Kumar V, Baskaralingam P, Thiruvengadaravi KV, Sivanesan S (2012) Adsorption behavior of Methylene Blue
dye onto surface modified Strychnos potatorum seeds. Environ Progress & Sustain Energy
32(3):624–632. https://doi.org/10.1002/ep.11673
32. Senthil Kumar P, Fernando PSA, Tanvir Ahmed R, Srinath R, Priyadharshini M, Vignesh AM,
Thanjiappan A (2014) Effect of temperature on the adsorption of Methylene Blue dye onto
sulfuric acid–treated orange peel. J Chem Eng Commun 201(11):1526–1547. https://doi.org/
10.1080/00986445.2013.819352
221
18. Saba B, Jabeen M, Mahmood T, Aziz I (2014) Treatment comparison efficiency of microbial
amended agro-waste biochar constructed wetlands for reactive black textile dye. IPCBEE 65.
https://doi.org/10.7763/IPCBEE. 2014. V65. 3
19. Abd-Elhamid AI, Emran M, El-Sadek MH, El-Shanshory AA, Soliman HMA, Akl MA, Rashad
M (2020) Enhanced removal of cationic dye by eco-friendly activated biochar derived from
rice straw. Appl Water Sci 10:45. https://doi.org/10.1007/s13201-019-1128-0
20. Zhang B, Wu Y, Cha L (2019) Removal of methyl orange dye using activated biochar derived
from pomelo peel wastes: performance, isotherm, and kinetic studies. J Dispersion Sci Technol
125–136. https://doi.org/10.1080/01932691.2018.1561298
21. Ates A, Oymak T (2019) Characterization of persimmon fruit peel and its biochar for removal
of methylene blue from aqueous solutions: thermodynamic, kinetic and isotherm studies. Int J
Phytorem 607–616. https://doi.org/10.1080/15226514.2019.1696745
22. Kosaiyakanon C, Kungsanant S (2019) Adsorption of reactive dyes from wastewater using
cationic surfactant-modified coffee husk biochar. Thaijo 18(1). https://doi.org/10.32526/ennrj.
18.1.2020.03
23. Córdova BM, Santa Cruz JP, Ocampo M TV, Huamani-Palomino RG, Baena-Moncada AM
(2020) Simultaneous adsorption of a ternary mixture of brilliant green, rhodamine B and methyl
orange as artificial wastewater onto biochar from cocoa pod husk waste. Quantification of dyes
using the derivative spectrophotometry method. New J Chem 44:8303. https://doi.org/10.1039/
D0NJ00916D
24. da Silva EO, dos Santos VD, de Araujo EB, Guterres FP, Zottis R, Flores WH, de Almeida
ARF (2020) Removal of methylene blue from aqueous solution by ryegrass straw. Int J Environ
Sci Technol. https://doi.org/10.1007/s13762-020-02718-9
25. Dawood S, Sen TK, Phan C (2017) Synthesis and characterisation of slow pyrolysis pine
cone bio-char in the removal of organic and inorganic pollutants from aqueous solution by
adsorption: kinetic, equilibrium, mechanism and thermodynamic. Biores Technol 246:76–81.
https://doi.org/10.1016/j.biortech.2017.07.019
26. Dai L, Zhu W, He L, Tan F, Zhu N, Zhou Q, He M, Hu G (2018) Calcium-rich biochar from crab
shell: an unexpected super adsorbent for dye removal. Biores Technol 267:510–516. https://
doi.org/10.1016/j.biortech.2018.07.090
27. Dawood S, Sen TT, Phan C (2016) Adsorption removal of Methylene Blue (MB) dye from
aqueous solution by bio-char prepared from Eucalyptus sheathiana bark: kinetic, equilibrium,
mechanism, thermodynamic and process design. J Desalin Water Treat 57(59):28964–28980.
https://doi.org/10.1080/19443994.2016.1188732
28. Roy K, Verma KM, Vikrant K, Goswami M, Sonwani RK, Rai BN, Vellingiri K, Kim K-H,
Giri BS, Singh RS (2018) Removal of Patent Blue (V) dye using indian Bael shell biochar:
characterization, application and kinetic studies. Sustainability 10(8):2669. https://doi.org/10.
3390/su10082669
29. Han X, Chu L, Liu S, Chen T, Ding C, Yan J, Cui L, Quan G (2015) Removal of Methylene
Blue from aqueous solution using porous biochar obtained by KOH activation of peanut shell
biochar. BioResources 10(2):2836–2849
30. Vikrant K, Roy K, Goswami M, Tiwari H, Giri BS, Kim K-H, Tsang YF, Singh RS (2020) The
potential application of biochars for dyes with an emphasis on azo dyes: analysis through an
experimental case study utilizing fruit-derived biochar for the abatement of congo red as the
model pollutant. Biochar Appl Agric Environ Manage. https://doi.org/10.1007/978-3-030-409
97-5_3
31. Senthamarai C, Senthil Kumar P, Priyadharshini M, Vijayalakshmi P, Vinoth Kumar V, Baskaralingam P, Thiruvengadaravi KV, Sivanesan S (2012) Adsorption behavior of Methylene Blue
dye onto surface modified Strychnos potatorum seeds. Environ Progress & Sustain Energy
32(3):624–632. https://doi.org/10.1002/ep.11673
32. Senthil Kumar P, Fernando PSA, Tanvir Ahmed R, Srinath R, Priyadharshini M, Vignesh AM,
Thanjiappan A (2014) Effect of temperature on the adsorption of Methylene Blue dye onto
sulfuric acid–treated orange peel. J Chem Eng Commun 201(11):1526–1547. https://doi.org/
10.1080/00986445.2013.819352
