[4]
Gunatilake SK. Methods of removing heavy metals from industrial wastewater. J Multidiscip Eng Sci Studi 2015; 1(1): 14.
[15]
Siti N, Mohd H, Md LK, Shamsul I. Adsorption process of heavy metals by low-cost adsorbent: A review. World Appl Sci J 2013; 28(11): 1518-30.
[17]
Bhatnagar A, Minocha AK. Conventional and non-conventional adsorbents for removal of pollutants from water–A review. Indian J Chem Technol 2006; 13(3): 203-17.
[32]
Karatutlu A, Barhoum A, Sapelkin A. Liquid-phase synthesis of nanoparticles and nanostructured materials. In: Emerging Applications of Nanoparticles and Architecture Nanostructures. Elsevier 2018; pp. 1-28.
[36]
Zubair M, Ullah A. Biopolymers in environmental applications: Industrial wastewater treatment. In:Biopolymers and Their Industrial Applications. Elsevier 2021; pp. 331-49.
[37]
Russo T, Fucile P, Giacometti R, Sannino F. Sustainable removal of contaminants by biopolymers: A novel approach for wastewater treatment. Curr State Fut Perspect 2021; 9(4): 719.
[38]
Joly N, Ghemati D, Aliouche D, Martin P. Interaction of metal ions with mono-and polysaccharides for wastewater treatment: A review. Nat Prod Chem Res 2020; 8: 373.
[43]
Moremedi T, Katata-Seru L, Sardar S, Bandyopadhyay A, Makhado E, Hato MJ. Application of synthetic monomers grafted xanthan gum for rhodamine B removal in aqueous solution. Int J Mater Eng 2020; 14(5): 123-31.
[46]
Abdel-Raouf MS, Abdul-Raheim ARM. Removal of heavy metals from industrial waste water by biomass-based materials: A review. J Pollut Eff Cont 2017; 5(180): 15-9.
[47]
Bobade V, Eshtiagi N. Heavy metals removal from wastewater by adsorption process: A review. ACAM 2015; 2015: 1-7.
[59]
Mahmoud AM, Ibrahim FA, Shaban SA, Youssef NA. Adsorption of heavy metal ion from aqueous solution by nickel oxide nano catalyst prepared by different methods. Egypt. J Pet 2015; 24(1): 27-35.
[63]
Dassanayake RS, Acharya S, Abidi N. Biopolymer-based materials from polysaccharides: Properties, processing, characterization and sorption applications. In:Advanced Sorption Process Applications. IntechOpen 2018; pp. 1-24.
[66]
Ghaly AE, Ananthashankar R, Alhattab MVVR, Ramakrishnan VV. Production, characterization and treatment of textile effluents: A critical review. J Chem Eng Process Technol 2014; 5(1): 1-19.
[67]
Aly AA, El-Bisi MK. Grafting of polysaccharides: Recent advances. In:Biopolymer Grafting. Elsevier 2018; pp. 469-519.
[69]
Nayak AK, Bera H, Hasnain MS, Pal D. Synthesis and characterization of graft copolymers of plant polysaccharides. In:Biopolymer Grafting. Elsevier 2018; pp. 1-62.
[73]
Faust R. Ionic polymerization. Appl Polym Sci 2000; 999-1020.
[94]
Junior OMC, Barros MASD, Pereira NC. Study on coagulation and flocculation for treating effluents of textile industry. Acta Sci Technol 2013; 35(1): 83-8.
[103]
El-Zahhar AA, Idris AM. Mercury(II) decontamination using a newly synthesized poly(acrylonitrile-acrylic acid)/ammonium molybdophosphate composite exchanger. Toxin Rev 2020; 1: 1-13.
[124]
Xu Y, Zhang Y, Feng Q. The dynamic adsorption performance of the cross-linked starch/acrylonitrile graft copolymer for copper ions in water. Colloids Surf. A Physicochem. Eng 2013; 430: 8-12.
[134]
Sugumaran D, Karim KJA. Removal of copper (II) ion using chitosan-graft-poly (methyl methacrylate) as adsorbent. Eproc Chem 2017; 2: 1-11.
[144]
Sutirman ZA, Sanagi MM, Abd Karim KJ, Naim AA, Ibrahim WAW. Chitosan-based adsorbents for the removal of metal ions from aqueous solutions. Malays J Anal Sci 2018; 22(5): 839-50.
[171]
Lopes BDM, Lessa VL, Silva BM, La Cerda LG. Xanthan gum: Properties, production conditions, quality and economic perspective. J Food Nutr Res 2015; 54(3): 185-94.
[173]
Makhado E, Pandey S, Kang M, Fosso-Kanke E. Microwave assisted synthesis of xanthan gum-cl-Dimethyl acrylamide hydrogel based silica hydrogel as adsorbent for cadmium (II) removal. Int'l Conference on Science, Engineering, Technology & Waste Management (SETWM-19). Nov 18-19, 2019; Johannesburg (S.A.). pp. 1-6.
[187]
Shanmugapriya A, Ramya R, Ramasubramaniam S, Sudha PN. Studies on removal of Cr (VI) and Cu (II) ions using chitosan grafted polyacrylonitrile. Arch Appl Sci Res 2011; 3(3): 424-35.
[188]
Ahmad M, Ahmed S, Swami BL, Ikram S. Adsorption of heavy metal ions: Role of chitosan and cellulose for water treatment. Langmuir 2015; 79: 109-55.