Preparation of New Chelate Polymers and Evaluation of Their Ability to Treat Iron (III) Ion in Wastewater

Authors

  • Rana T. Shibli Basrah university
  • T.E. Jassim University of Basarah
  • Zuhair A. Abdulnabi University of Basarah

DOI:

https://doi.org/10.54153/sjpas.2025.v7i1.793

Keywords:

schiff bsse, iron complex, polyurethane, chelat polymer, waste water

Abstract

Two types of schiff bases were prepared from the condensation of (2,4-dihydroxybenzaldehyde), (4-hydroxybenzaldehyde) with (3-aminophenol) respectively, and the prepared ligands were characterized by FT-IR spectroscopy and 1HNMR spectroscopy. The complexes formed with iron (III) were identified for each of the prepared ligands spectroscopically (UV-VIS), where the first complex (L1 Fe) gave a redshift, while the second complex (L2 Fe) gave a blue shift.Then, polyurethane foam was prepared and grafted with the prepared Schiff bases to obtain a chelated polymer (R1, R2). The prepared resin was characterized by infrared spectroscopy (FT-IR) and thermal analysis techniques (TGA, DSC). This research focused on studying the analytical efficiency of the surface prepared using the batch method under the optimal conditions of equilibrium time and acid function. It was applied practically to a wastewater sample, which gave a removal rate of iron (III) ion of 100% which indicates the possibility of using the prepared chelated polymer over a wide range to remove contamination of iron (III) ion which ultimately improves the quality of wastewater treatment

References

Hussaini, S.Y., Ahmad, A. and Sani, S., (2017), Studies of Ni (II) and Cu (II) complexes with Schiff base derived from salicylaldehyde and aniline, journal of pure and Applied Sciences, Vol.10, No. 2, Pp. (245-250).

2-Dr. A. Xavier1, N. Srividhya: (2014), “Synthesis and Study of Schiff base Ligands”, JIOSR Journal of Applied Chemistry, 2278-5736.Volume 7, Issue 11 Ver. I, PP 06-15.

3- M. A. A.Al- Karboli, Sh. A. H. Al-Dabbagh, R. M. Saleh Al-Alwany, (2018), Synthesis and characterization of ligands derived 2-hydroxy-1- naphthaldehyde and their complexes with divalent metal ions (Mn+2, Fe+2, Ni +2): Iraqi Journal of Physics, Vol. (16), No.37, Pp. (79-87). DOI: 10.20723/ijp.16.37.79-87.

4- MARK M. J., GERARD A. N.: (1978), (Some new chelating polymers for toxic metals—II), J. Inorg, nucl. Chem, Vol. (40), issue (6), p. (1235-1239).

5- Hamad F. Musa Al – Jubouri, Sarhan A Salman, (2019), Different analytical methods for estimating the heavy metals in fish products available in the Iraqi local markets by atomic absorption technique, Tikrit Journal of Pure Science, Vol. (24), issue (5).

6- S.R. Shukla, R. S. Pai, A. D. Shendarkar: (2006), Separation and Purification Technology, (Adsorption of Ni (II), Zn (II), Fe (II) on modified coir fibres), Vol. (47), issue (3), p.141–147.

7- Ahmed A. Younes & Heba H. El-Maghrabi: (2020), Removal of lead ions from wastewater using novel Schiff-base functionalized solid-phase adsorbent, SEPARATION SCIENCE AND TECHNOLOGY, Vol. (55), Issue 9, P. (1589-1602).

8-W. B. Gurnule, and Sonali S. Dhote, (2012), Preparation, Characterization and Chelating Ion-exchange Properties of copolymer Resin Derived from 2,4-Dihydroxy Benzoic acid, Ethylene Diamine and Formaldehyde, Der Pharma Chemical, Vol.4, issue (2), p.(791-799).

9- Aljanabi, K. A. O., & Hassouni, Z. A. K. T.: (2017), Synthesis and Characterization of New Chelating Terpolymer Resin Derived from p-Amino Benzoic Acid, Biuret and Formaldehyde and Study Efficiency Extractive from Some Metal Ion, Ibn Al-Haitham Jour. for Pure & Appl. Sci., Vol. 30 (1).

10- Charef N., Arrar, Lekhmici, Ourari, Ali, Zalloum, Ruba M. and Mubarak, Mohammad S. (2010) 'Synthesis and Chelating Properties of Polystyrene Supported Schiff Base (N, N'-disalicylidenepropylenetriamine) Resin Toward Some Divalent Metal Ions', Journal of Macromolecular Science, Part A, 47: 2, 177 — 184 .

11-Kakarla R. R., Anjanapura V. R., HanMo Jeong & Siddaramaiah: (2009), Synthesis and Characterization of Pyridine-Based Polyurethanes, Designed Monomers and Polymers, Vol. (12), pp. (109-118).

12- Subhashini G. and Nidal A. Z. (2014): Characterization of Functionalized Polyurethane Foam for Lead Ion Removal from Water, Hindawi Publishing Corporation International Journal of Polymer Science Volume 2014, Article ID 570309, 7 pages, http://dx.doi.org/10.1155/2014/570309

13- John O. A., (2016): Polyurethane types, synthesis and applications – a review 6 The Royal Society of Chemistry, RSC Adv., 114453–114482: DOI:10.1039/C6RA14525F

14- Mahdieh K.M., Mohammad R. Y.: )2014), Application of Polyurethane Foam Loaded with a Schiff Base Ligand for Determination of Trace Amounts of Copper in Water Samples by Flame Atomic Absorption Spectroscopy, Journal of the Korean Chemical Society, Vol. (58), No. (3), pp.283.

15-PHILIP E. S., and LLOYD T. J., (1964).; Thermal analysis of polyurethane elastomers JOURNAL OF POLYMER SCIENCE: PART C, NO. (6), PP. (27-32), https://doi.org/10.1002/polc.5070060105

16- Robert W. Seymour and Stuart L. Cooper: (1973(, Thermal Analysis of Polyurethane Block Polymers, (Macromolecules, Vol. (6), No. (1), pp. (48–53), https://doi.org/10.1021/ma60031a008

17- Vaz, P.A., et al: )2018, (Aggregation-induced emission enhancement of chiral boranils, New Journal of Chemistry, 42(22): p. 18166-18171 42(22).

18 -Omar.G. H.),2015), Synthesis Schiff Base and Loaded on to the urethane foam for Crosslinking Polymers Which Have Analytical Efficiency: Diyala Journal for Pure Science, Vol.11, No. (3).

19- Eman I. Alsalihi: (2019). Synthesis and Characterization of new Schiff base Ligand type [N2O4] from 3-(Ethoxy methylene) pentane-2.4-dione and its Ni п Complex, ARO- THE SCIENTIFIC JOURNAL OF KOYA UNIVERSITY, Vol7. No1.ISSUE12-PP40-46ARO, http://dx.doi.org/10.14500/aro.10460

20- Prakash V., et al., (2013): reparation Characterization, 1H, 13C NMR Study and Antibacterial Studies of Schiff Bases and Their Zn (II) Chelates: Research Journal of Pharmaceutical, Biological and Chemical Science, Volume 4 Issue 4 Page No. 1536.

21- Saeed. El-S. S., Tahani M., Ahmed N., Marwa M.: (2022), Synthesis and Characterization of Metal Complexes Based on Aniline Derivative Schiff Base for Antimicrobial Applications and UV Protection of a Modified Cotton Fabric, Coatings, 12, 1181. https://doi.org/10.3390/ coatings12081181

22- Tobias S., Viktoriia K., Martin B., Hendrik W., Agnieszka K., (2023) Synthesis, Structures and Photophysical Properties of tetra -and Hexanuclear Zinc Complexes Supported by Tridentate Schiff Base Ligands, Chemistry, 3, 5, 1028–1045,2023, https://doi.org/10.3390/chemistry5020070

23- Jagdeesh B., Suzanne K., 2 December 1991, FT-IR spectroscopic studies of polyurethanes Part I. Bonding between urethane COC groups and the NH Groups, Journal of Molecular Structure, Volume 263, Pages 45-57.

24- Vasili.V. K., (1971) “The Chemical Structure &Thermal Characteristics of Polymer”. Translated From Russian by J. Schmorak, Halsted Press.

25-PHILIP E. S., et al., (1964): PART C, Thermal analysis of polyurethane elastomers, journal of polymer science, Vol.6 issue 1.p. (27-32). https://doi.org/10.1002/polc.5070060105

26- Robert W. S. and Stuart L. C., (1973), Thermal Analysis of Polyurethane Block Polymers, Macromolecules, 6, 48-53. 24. Marx, C. L., D. /doi:10.1021/ma60031a008

27-Alexandra Z., et al.: (2019), Polymers, Synthesis, Thermal Properties and Decomposition Mechanism of Poly (Ethylene Vanillate) Polyester, Vol. 11, issue (10), p. 1672.

28- Misbah S.: (2017), Polyurethane for removal of organic dyes from textile wastewater, Environmental Chemistry Letters Vol. (15), No. (2), pp. (347 – 366).

29- Moawed E.A., Burham N.: (2013), Separation and determination of iron and manganese in water using polyhydroxy polyurethane foam, Journal of the Association of Arab Universities for Basic and Applied Sciences, Vol. 14, p.60–66.

30- RIJIth S., T. S. Anirudhan, and Thoudinja Sh., (2012), : Evaluation of Iron(III) Chelated Polymer Grafted Lignocellulosic's for Arsenic(V) Adsorption in a Batch Reactor System, Industrial & Engineering Chemistry Research, 51, 10682−10694, https://doi.org/10.1021/ie300732t

31-Naef A. A. Q., Ramy H. and Dahiru U. L., (2021): Removal of heavy metal ions from wastewater: a comprehensive and critical review, npj Clean Water 36

Downloads

Published

2025-03-30

How to Cite

Preparation of New Chelate Polymers and Evaluation of Their Ability to Treat Iron (III) Ion in Wastewater. (2025). Samarra Journal of Pure and Applied Science, 7(1), 15-29. https://doi.org/10.54153/sjpas.2025.v7i1.793

Similar Articles

1-10 of 102

You may also start an advanced similarity search for this article.