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References

Abedinzadeh, N., M. Shariat, S. M. Monavari and A. Pendashteh. 2018. Evaluation of color and COD removal

by Fenton from biologically (SBR) pre-treated pulp and paper wastewater. Process Saf. Environ. Prot. 116:

82–91.

Adelodun, A. A., O. Temitope, N. O. Afolabi, A. S. Akinwumiju, E. Akinbobola and U. O. Hassan. 2021.

Phytoremediation potentials of Eichhornia crassipes for nutrients and organic pollutants from textile

wastewater. Int. J. Phytoremediat. 23(13): 1333–1341.

Adesra, A., V. K. Srivastava and S. Varjani. 2021. Valorization of dairy wastes: integrative approaches for value added

products. Indian J. Microbiol. 61(3): 270–278.

Ajayi, T. O. and A. O. Ogunbayo. 2012. Achieving environmental sustainability in wastewater treatment by

phytoremediation with water hyacinth (Eichhornia crassipes). J. Sustain. Dev. 5(7): 80.

Alalam, S., F. Ben-Souilah, M. H. Lessard, J. Chamberland, V. Perreault, Y. Pouliot, S. Labrie and A. Doyen. 2021.

Characterization of chemical and bacterial compositions of dairy wastewaters. Dairy. 2(2): 179–190.

Al-Qurainy, F. and A. Abdel-Megeed. 2009. Phytoremediation and detoxification of two organophosphorous

pesticides residues in Riyadh area. World Appl. Sci. J. 6(7): 987–998.

Alves, E., L. R. Cardoso, J. Savroni, L. C. Ferreira, C. S. F. Boaro and A. C. Cataneo. 2003. Avaliações fisiológicas e

bioquímicas de plantas de aguapé (Eichhornia crassipes) cultivadas com níveis excessivos de nutrientes. Planta

Daninha. 21: 27–35.

Anipeddi, M., S. Begum and G. R. Anupoju. 2022. Integrated technologies for the treatment of and resource recovery

from sewage and wastewater using water hyacinth. Biofuel Bioprod. Biorefin, pp. 293–314. Elsevier,

Anjana, S. and V. S. G. Thanga. 2011. Phytoremediation of synthetic textile dyes. Asian J. Microbiol. Biotechnol.

Environ. Sci. 13: 31–34.

Ansari, A. A., R. Gill, L. Newman, S. S. Gill and G. R. Lanza. 2016. Phytoremediation: Management of Environmental

Contaminants. 6: 1–576. https://doi.org/10.1007/978-3-319-99651-6.

Apritama, M. R., I. Suryawan, A. S. Afifah and I. Y. Septiariva. 2020. Phytoremediation of effluent textile wwtp for

NH3-N and Cu reduction using pistia stratiotes. Plant Archives. 20(1): 2384–2388.

Arivoli, A., R. Mohanraj and R. Seenivasan. 2015. Application of vertical flow constructed wetland in treatment of

heavy metals from pulp and paper industry wastewater. Environ. Sci. Pollut. Res. 22(17): 13336–13343.

Ashrafi, O., L. Yerushalmi and F. Haghighat. 2015. Wastewater treatment in the pulp-and-paper industry: a review of

treatment processes and the associated greenhouse gas emission. J. Environ. Manag. 158: 146–157.

Assche, V. F. and H. Clijsters. 1990. Effects of metals on enzyme activity in plants. Plant Cell Environ. 13(3): 195–

206.

Azadi Aghdam, M., H. R. Kariminia and S. Safari. 2016. Removal of lignin, COD, and color from pulp and paper

wastewater using electrocoagulation. Desalin. Water Treat. 57(21): 9698–9704.

Babu, B. R., A. K. Parande, S. Raghu and T. P. Kumar. 2007. Cotton textile processing: waste generation and effluent

treatment. J.

Cotton Sci. 11: 141–153.

Barry, A. C. P. 1998. Preliminary investigation of an integrated aquaculture–wetland ecosystem using tertiary-treated

municipal wastewater in Los Angeles County, California. Ecol. Eng. 10(4): 341–354.

Basha, S. A. and K. Rajaganesh. 2014. Microbial bioremediation of heavy metals from textile industry dye effluents

using isolated bacterial strains. Int. J. Curr

. Microbiol. Appl. Sci. 3: 785–794.

Basu, A., A. K. Hazra, S. Chaudhury, A. B. Ross and S. Balachandran. 2021. State of the art research on sustainable

use of water hyacinth: a bibliometric and text mining analysis. In Informatics.

Multidisciplinary Digital

Publishing Institute. 8(2): 38.

Bazrafshan, E., H. Moein, F. KordMostafapour and S. Nakhaie. 2013. Application of electrocoagulation process for

dairy wastewater treatment. J. Chem. 7–10.

Bhavsar, S. R., V. R. Pujari and V. V. Diwan. 2010. Potential of phytoremediation for dairy wastewater treatment. J.

Civ. Eng. Manag. 16–23.

Bhavsar, S. R., V. R. Pujari and V. V. Diwan. 2012. Potential of phytoremediation for dairy wastewater treatment.

IIOSR J. Mech. Civ. Eng. 16–23.

Bortoluzzi, A. C., J. A. Faitão, M. Di Luccio, R. M. Dallago, J. Steffens, G. L. Zabot and M. V. Tres. 2017. Dairy

wastewater treatment using integrated membrane systems. J. Environ. Chem. Eng. 5(5): 4819–4827.

Brião, V. B., A. C. Vieira Salla, T. Miorando, M. Hemkemeier and D. P. CadoreFavaretto. 2019. Water recovery

from dairy rinse water by reverse osmosis: giving value to water and milk solids. Resour. Conserv. Recycl.

140: 313–323.

Brown, D. and P. Laboureur. 1983. The aerobic biodegradability of primary aromatic amines. Chemosphere.

12(3):

405–414.