Disperse Blue 79 and Acid Orange 10, by Bacillus fusiformis
KMK5 isolated from the textile dye contaminated soil. Bioresource
Technology, 99, 8999–9003.
Koseoglu-Imer, D. Y. (2013). The determination of performances of
polysulfone (PS) ultrafiltration membranes fabricated at different
evaporation temperatures for the pretreatment of textile wastewater.
Desalination, 316, 110–119.
Koswojo, R., Utomo, R. P., Ju, Y.-H., Ayucitra, A., Soetaredjo, F. E.,
Sunarso, J., & Ismadji, S. (2010). Acid Green 25 removal from
wastewater by organo-bentonite from Pacitan. Applied Clay
Science, 48, 81–86.
Kumar, R., & Ismail, A. (2015). Fouling control on
microfiltration/ultrafiltration membranes: Effects of morphology,
hydrophilicity, and charge. Journal of Applied Polymer Science, 132.
Lau, W.-J., & Ismail, A. (2009). Polymeric nanofiltration membranes
for textile dye wastewater treatment: Preparation, performance
evaluation, transport modelling, and fouling control—A review.
Desalination, 245, 321–348.
Li, X., Jin, X., Zhao, N., Angelidaki, I., & Zhang, Y. (2017). Novel
bio-electro-Fenton technology for azo dye wastewater treatment
using microbial reverse-electrodialysis electrolysis cell. Bioresource
Technology, 228, 322–329.
Lin, S. H., & Chen, M. L. (1997). Treatment of textile wastewater by
chemical methods for reuse. Water Research, 31, 868–876.
Liu, W., Yao, C., Wang, M., Ji, J., Ying, L., & Fu, C. (2013). Kinetics
and thermodynamics characteristics of cationic yellow X-GL
adsorption on attapulgite/rice hull-based activated carbon nanocomposites. Environmental Progress & Sustainable Energy, 32, 655–
662.
Mahmoodi, N. M., Hayati, B., Arami, M., & Lan, C. (2011).
Adsorption of textile dyes on pine cone from colored wastewater:
Kinetic, equilibrium and thermodynamic studies. Desalination, 268,
117–125.
Mahmoud, D. K., Salleh, M. A. M., Karim, W. A. W. A., Idris, A., &
Abidin, Z. Z. (2012). Batch adsorption of basic dye using acid
treated kenaf fibre char: Equilibrium, kinetic and thermodynamic
studies. Chemical Engineering Journal, 181, 449–457.
Mendret, J., Hatat-Fraile, M., Rivallin, M., & Brosillon, S. (2013).
Hydrophilic composite membranes for simultaneous separation and
photocatalytic degradation of organic pollutants. Separation and
Purification Technology, 111, 9–19.
Mittal, A., Mittal, J., Malviya, A., Kaur, D., & Gupta, V. (2010).
Decoloration treatment of a hazardous triarylmethane dye, Light
Green SF (Yellowish) by waste material adsorbents. Journal of
Colloid and Interface Science, 342, 518–527.
Molinari, R., Pirillo, F., Falco, M., Loddo, V., & Palmisano, L. (2004).
Photocatalytic degradation of dyes by using a membrane reactor.
Chemical Engineering and Processing: Process Intensification, 43,
1103–1114.
Moussavi, G., & Khosravi, R. (2011). The removal of cationic dyes
from aqueous solutions by adsorption onto pistachio hull waste.
Chemical Engineering Research and Design, 89, 2182–2189.
Nassar, M. M., & Magdy, Y. H. (1997). Removal of different basic
dyes from aqueous solutions by adsorption on palm-fruit bunch
particles. Chemical Engineering Journal, 66, 223–226.
Pandey, A., Singh, P., & Iyengar, L. (2007). Bacterial decolorization
and degradation of azo dyes. International Biodeterioration &
Biodegradation, 59, 73–84.
Rafatullah, M., Sulaiman, O., Hashim, R., & Ahmad, A. (2010).
Adsorption of methylene blue on low-cost adsorbents: A review.
Journal of Hazardous Materials, 177, 70–80.
Rondon, H., El-Cheikh, W., Boluarte, I. A. R., Chang, C.-Y., Bagshaw,
S., Farago, L., et al. (2015). Application of enhanced membrane
bioreactor (eMBR) to treat dye wastewater. Bioresource Technology, 183, 78–85.
Sabur, M., Khan, A., & Safiullah, S. (2012). Treatment of textile
wastewater by coagulation precipitation method. Journal of Scientific Research, 4, 623–633.
Saggioro, E. M., Oliveira, A. S., Pavesi, T., Maia, C. G., Ferreira, L.
F. V., & Moreira, J. C. (2011). Use of titanium dioxide
photocatalysis on the remediation of model textile wastewaters
containing azo dyes. Molecules, 16, 10370–10386.
Sahinkaya, E., Sahin, A., Yurtsever, A., & Kitis, M. (2018).
Concentrate minimization and water recovery enhancement using
pellet precipitator in a reverse osmosis process treating textile
wastewater. Journal of Environmental Management, 222, 420–427.
Sasaki, T., Iizuka, A., Watanabe, M., Hongo, T., & Yamasaki, A.
(2014). Preparation and performance of arsenate (V) adsorbents
derived from concrete wastes. Waste Management, 34, 1829–1835.
Seow, T. W., & Lim, C. K. (2016). Removal of dye by adsorption: A
review. International Journal of Applied Engineering Research, 11,
2675–2679.
Shen, X., Lu, L., Gao, B., Xu, X., & Yue, Q. (2018). Development of
combined coagulation-hydrolysis acidification-dynamic membrane
bioreactor system for treatment of oilfield polymer-flooding wastewater. Frontiers of Environmental Science & Engineering, 13, 9.
Shenvi, S. S., Isloor, A. M., & Ismail, A. (2015). A review on RO
membrane technology: Developments and challenges. Desalination,
368, 10–26.
Singh, K., & Arora, S. (2011). Removal of synthetic textile dyes from
wastewaters: A critical review on present treatment technologies.
Critical Reviews in Environmental Science and Technology, 41,
807–878.
Tahri, N., Jedidi, I., Cerneaux, S., Cretin, M., & Amar, R. B. (2013).
Development of an asymmetric carbon microfiltration membrane:
Application to the treatment of industrial textile wastewater.
Separation and Purification Technology, 118, 179–187.
Tehrani-Bagha, A., Nikkar, H., Mahmoodi, N., Markazi, M., &
Menger, F. (2011). The sorption of cationic dyes onto kaolin:
Kinetic, isotherm and thermodynamic studies. Desalination, 266,
274–280.
Verma, A. K., Dash, R. R., & Bhunia, P. (2012). A review on chemical
coagulation/flocculation technologies for removal of colour from
textile wastewaters. Journal of Environmental Management, 93,
154–168.
Wang, J., Zhang, T., Mei, Y., & Pan, B. (2018). Treatment of
reverse-osmosis concentrate of printing and dyeing wastewater by
electro-oxidation process with controlled oxidation-reduction potential (ORP). Chemosphere, 201, 621–626.
Wang, L., Xiong, W., Yao, L., & Wang, Z. (2016). Novel photocatalytic membrane reactor with TiO 2 nanotubes for azo dye wastewater treatment. In MATEC Web of Conferences (p. 06020). EDP
Sciences.
Wang, Z., Xue, M., Huang, K., & Liu, Z. (2011). Textile dyeing
wastewater treatment. In Advances in treating textile effluent.
IntechOpen.
Xing, M., Shen, F., Liu, L., Chen, Z., Guo, N., Wang, X., et al. (2012).
Antimicrobial efficacy of the alkaloid harmaline alone and in
combination with chlorhexidine digluconate against clinical isolates
of Staphylococcus aureus grown in planktonic and biofilm cultures.
Letters in Applied Microbiology, 54, 475–482.
Zaharia, C., & Suteu, D. (2013). Coal fly ash as adsorptive material for
treatment of a real textile effluent: Operating parameters and
treatment efficiency. Environmental Science and Pollution
Research, 20, 2226–2235.
Zhou, H., & Smith, D. W. (2002). Advanced technologies in water and
wastewater treatment. Journal of Environmental Engineering and
Science, 1, 247–264.
108
M. H. D. Othman et al.
KMK5 isolated from the textile dye contaminated soil. Bioresource
Technology, 99, 8999–9003.
Koseoglu-Imer, D. Y. (2013). The determination of performances of
polysulfone (PS) ultrafiltration membranes fabricated at different
evaporation temperatures for the pretreatment of textile wastewater.
Desalination, 316, 110–119.
Koswojo, R., Utomo, R. P., Ju, Y.-H., Ayucitra, A., Soetaredjo, F. E.,
Sunarso, J., & Ismadji, S. (2010). Acid Green 25 removal from
wastewater by organo-bentonite from Pacitan. Applied Clay
Science, 48, 81–86.
Kumar, R., & Ismail, A. (2015). Fouling control on
microfiltration/ultrafiltration membranes: Effects of morphology,
hydrophilicity, and charge. Journal of Applied Polymer Science, 132.
Lau, W.-J., & Ismail, A. (2009). Polymeric nanofiltration membranes
for textile dye wastewater treatment: Preparation, performance
evaluation, transport modelling, and fouling control—A review.
Desalination, 245, 321–348.
Li, X., Jin, X., Zhao, N., Angelidaki, I., & Zhang, Y. (2017). Novel
bio-electro-Fenton technology for azo dye wastewater treatment
using microbial reverse-electrodialysis electrolysis cell. Bioresource
Technology, 228, 322–329.
Lin, S. H., & Chen, M. L. (1997). Treatment of textile wastewater by
chemical methods for reuse. Water Research, 31, 868–876.
Liu, W., Yao, C., Wang, M., Ji, J., Ying, L., & Fu, C. (2013). Kinetics
and thermodynamics characteristics of cationic yellow X-GL
adsorption on attapulgite/rice hull-based activated carbon nanocomposites. Environmental Progress & Sustainable Energy, 32, 655–
662.
Mahmoodi, N. M., Hayati, B., Arami, M., & Lan, C. (2011).
Adsorption of textile dyes on pine cone from colored wastewater:
Kinetic, equilibrium and thermodynamic studies. Desalination, 268,
117–125.
Mahmoud, D. K., Salleh, M. A. M., Karim, W. A. W. A., Idris, A., &
Abidin, Z. Z. (2012). Batch adsorption of basic dye using acid
treated kenaf fibre char: Equilibrium, kinetic and thermodynamic
studies. Chemical Engineering Journal, 181, 449–457.
Mendret, J., Hatat-Fraile, M., Rivallin, M., & Brosillon, S. (2013).
Hydrophilic composite membranes for simultaneous separation and
photocatalytic degradation of organic pollutants. Separation and
Purification Technology, 111, 9–19.
Mittal, A., Mittal, J., Malviya, A., Kaur, D., & Gupta, V. (2010).
Decoloration treatment of a hazardous triarylmethane dye, Light
Green SF (Yellowish) by waste material adsorbents. Journal of
Colloid and Interface Science, 342, 518–527.
Molinari, R., Pirillo, F., Falco, M., Loddo, V., & Palmisano, L. (2004).
Photocatalytic degradation of dyes by using a membrane reactor.
Chemical Engineering and Processing: Process Intensification, 43,
1103–1114.
Moussavi, G., & Khosravi, R. (2011). The removal of cationic dyes
from aqueous solutions by adsorption onto pistachio hull waste.
Chemical Engineering Research and Design, 89, 2182–2189.
Nassar, M. M., & Magdy, Y. H. (1997). Removal of different basic
dyes from aqueous solutions by adsorption on palm-fruit bunch
particles. Chemical Engineering Journal, 66, 223–226.
Pandey, A., Singh, P., & Iyengar, L. (2007). Bacterial decolorization
and degradation of azo dyes. International Biodeterioration &
Biodegradation, 59, 73–84.
Rafatullah, M., Sulaiman, O., Hashim, R., & Ahmad, A. (2010).
Adsorption of methylene blue on low-cost adsorbents: A review.
Journal of Hazardous Materials, 177, 70–80.
Rondon, H., El-Cheikh, W., Boluarte, I. A. R., Chang, C.-Y., Bagshaw,
S., Farago, L., et al. (2015). Application of enhanced membrane
bioreactor (eMBR) to treat dye wastewater. Bioresource Technology, 183, 78–85.
Sabur, M., Khan, A., & Safiullah, S. (2012). Treatment of textile
wastewater by coagulation precipitation method. Journal of Scientific Research, 4, 623–633.
Saggioro, E. M., Oliveira, A. S., Pavesi, T., Maia, C. G., Ferreira, L.
F. V., & Moreira, J. C. (2011). Use of titanium dioxide
photocatalysis on the remediation of model textile wastewaters
containing azo dyes. Molecules, 16, 10370–10386.
Sahinkaya, E., Sahin, A., Yurtsever, A., & Kitis, M. (2018).
Concentrate minimization and water recovery enhancement using
pellet precipitator in a reverse osmosis process treating textile
wastewater. Journal of Environmental Management, 222, 420–427.
Sasaki, T., Iizuka, A., Watanabe, M., Hongo, T., & Yamasaki, A.
(2014). Preparation and performance of arsenate (V) adsorbents
derived from concrete wastes. Waste Management, 34, 1829–1835.
Seow, T. W., & Lim, C. K. (2016). Removal of dye by adsorption: A
review. International Journal of Applied Engineering Research, 11,
2675–2679.
Shen, X., Lu, L., Gao, B., Xu, X., & Yue, Q. (2018). Development of
combined coagulation-hydrolysis acidification-dynamic membrane
bioreactor system for treatment of oilfield polymer-flooding wastewater. Frontiers of Environmental Science & Engineering, 13, 9.
Shenvi, S. S., Isloor, A. M., & Ismail, A. (2015). A review on RO
membrane technology: Developments and challenges. Desalination,
368, 10–26.
Singh, K., & Arora, S. (2011). Removal of synthetic textile dyes from
wastewaters: A critical review on present treatment technologies.
Critical Reviews in Environmental Science and Technology, 41,
807–878.
Tahri, N., Jedidi, I., Cerneaux, S., Cretin, M., & Amar, R. B. (2013).
Development of an asymmetric carbon microfiltration membrane:
Application to the treatment of industrial textile wastewater.
Separation and Purification Technology, 118, 179–187.
Tehrani-Bagha, A., Nikkar, H., Mahmoodi, N., Markazi, M., &
Menger, F. (2011). The sorption of cationic dyes onto kaolin:
Kinetic, isotherm and thermodynamic studies. Desalination, 266,
274–280.
Verma, A. K., Dash, R. R., & Bhunia, P. (2012). A review on chemical
coagulation/flocculation technologies for removal of colour from
textile wastewaters. Journal of Environmental Management, 93,
154–168.
Wang, J., Zhang, T., Mei, Y., & Pan, B. (2018). Treatment of
reverse-osmosis concentrate of printing and dyeing wastewater by
electro-oxidation process with controlled oxidation-reduction potential (ORP). Chemosphere, 201, 621–626.
Wang, L., Xiong, W., Yao, L., & Wang, Z. (2016). Novel photocatalytic membrane reactor with TiO 2 nanotubes for azo dye wastewater treatment. In MATEC Web of Conferences (p. 06020). EDP
Sciences.
Wang, Z., Xue, M., Huang, K., & Liu, Z. (2011). Textile dyeing
wastewater treatment. In Advances in treating textile effluent.
IntechOpen.
Xing, M., Shen, F., Liu, L., Chen, Z., Guo, N., Wang, X., et al. (2012).
Antimicrobial efficacy of the alkaloid harmaline alone and in
combination with chlorhexidine digluconate against clinical isolates
of Staphylococcus aureus grown in planktonic and biofilm cultures.
Letters in Applied Microbiology, 54, 475–482.
Zaharia, C., & Suteu, D. (2013). Coal fly ash as adsorptive material for
treatment of a real textile effluent: Operating parameters and
treatment efficiency. Environmental Science and Pollution
Research, 20, 2226–2235.
Zhou, H., & Smith, D. W. (2002). Advanced technologies in water and
wastewater treatment. Journal of Environmental Engineering and
Science, 1, 247–264.
108
M. H. D. Othman et al.
