A brief review on adsorption of heavy metals using widely used metal oxide nanoparticles including zinc oxide, titanium dioxide and iron oxide
Subject Areas : Applications of NanostructuresAmir hossein Haghighi 1 , Sheida Esmaielzadeh 2
1 - Department of Polymer Engineering, Shiraz Branch, Islamic Azad University, Shiraz, Iran
2 - Department of Chemistry, Darab branch, Islamic Azad University, Darab, Iran
Keywords: Heavy metal cations, Sorbent, Pollutants.,
Abstract :
The rapid process of industrialization and increased use of heavy metals such as mercury, cadmium, lead, copper, silver and arsenic in the last two decades has inevitably led to the increase of these metals in environments. The introduction of such compounds through industrial, urban and agricultural sewage, etc., has created conditions that are always considered a threat to human health. Therefore, it is very necessary to remove these pollutants from the point of view of public health and environmental pollution control. Therefore, in this article, the investigation and application of a number of nanometal oxides that are used in the separation of these dangerous substances, as well as the factors affecting the separation process, have been briefly discussed.
[1] Z. Moosavinasab. S. Esmaielzadeh, A. Haghighi, Journal of Water and Wastewater Science and Engineering 8 (2023) 3.
[2] M. Zaynab. R. Al-Yahyai. A. Ameen. Y. Sharif. L. Ali. M. Fatima. K. A. Khan, S. Li, Journal of King Saud University - Science 34 (2022) 101653.
[3] Kiran. R. Bharti, R. Sharma, Materials Today: Proceedings 51 (2022) 880.
[4] Z. Bao. H. Feng. W. Tu. L. Li, Q. Li, Environmental Science and Pollution Research 29 (2022) 35501.
[5] M. E. Mahmoud. S. M. Elsayed. S. E. M. E. Mahmoud. R. O. Aljedaani, M. A. Salam, Journal of Molecular Liquids 347 (2022) 118274.
[6] S. Mitra. A. J. Chakraborty. A. M. Tareq. T. B. Emran. F. Nainu. A. Khusro. A. M. Idris. M. U. Khandaker. H. Osman. F. A. Alhumaydhi, J. Simal-Gandara, Journal of King Saud University - Science 34 (2022) 101865.
[7] L. Parida, T. N. Patel, Environmental Monitoring and Assessment 195 (2023) 766.
[8] S. Jadoun. J. P. Fuentes. B. F. Urbano, J. Yáñez, Journal of Environmental Chemical Engineering 11 (2023) 109226.
[9] T. A. Saleh. M. Mustaqeem, M. Khaled, Environmental Nanotechnology, Monitoring & Management 17 (2022) 100617.
[10] M. Z. A. Zaimee. M. S. Sarjadi, M. L. Rahman, Water 13 (2021) 2659.
[11] S. Rajendran. A. K. Priya. P. Senthil Kumar. T. K. A. Hoang. K. Sekar. K. Y. Chong. K. S. Khoo. H. S. Ng, P. L. Show, Chemosphere 303 (2022) 135146.
[12] S. Ethaib. S. Al-Qutaifia. N. Al-Ansari, S. L. Zubaidi, Environments 9 (2022) 123.
[13] L. Liu. X.-B. Luo. L. Ding, S.-L. Luo, in: X. Luo, F. Deng, (Eds.), Nanomaterials for the Removal of Pollutants and Resource Reutilization, Elsevier2019.
[14] M. S. Ehrampoush, MH; Zarei, S; Ebrahimi, A; Askari Shahi, M; Safdari, M, Scientific Research Journal of Yazd Medical Sciences University 13 (2014) 1.
[15] Z. H. A. Jafari Beheshti H., Leila; Sadat Shah Velayati, Ashraf, Nano materials (Research of nano composite materials) 11 (2019) 11.
[16] M. Shirzad Siboni. M. T. Samadi. A. R. Rahmani. A. R. Khataee. M. Bordbar, M. R. Samarghandi, Iranian Journal of Health and Environment 3 (2010) 261.
[17] A. N. Nazari, M; Yari, AR, Qom Univ Med Sci J 13 (2019) 62.
[18] A. H. Haghighi. S. Taherinezhad, Z. Babaei, Nano World 18 (2022) 54.
[19] A. H. Haghighi. M. T. Khorasani. Z. Faghih, F. Farjadian, Heliyon 6 (2020).
[20] A. H. Haghighi. Z. Faghih. M. T. Khorasani, F. Farjadian, Journal of Magnetism and Magnetic Materials 490 (2019) 165479.
[21] A. H. Haghighi, Iranian Chemical Engineering Journal (2024).
[22] Y. P. Yew. K. Shameli. M. Miyake. N. B. B. Ahmad Khairudin. S. E. B. Mohamad. T. Naiki, K. X. Lee, Arabian Journal of Chemistry 13 (2020) 2287.
[23] S. Liu. B. Yu. S. Wang. Y. Shen, H. Cong, Advances in Colloid and Interface Science 281 (2020) 102165.
[24] L. S. Ganapathe. M. A. Mohamed. R. Mohamad Yunus, D. D. Berhanuddin, Magnetochemistry 6 (2020) 68.
[25] L. Karimi Takanlu. M. Farzadkia. A. H. Mahvi. A. Esrafily, M. Golshan, Iranian Journal of Health and Environment 7 (2014) 171.
[26] M. F. F. Nematollahi; S, Zamani; M, Zeynali, Food Thechnology & Nutrition 15 (2018) 99.
[27] A. E. Ferenj. D. M. Kabtamu. A. H. Assen. G. Gedda. A. A. Muhabie. M. Berrada, W. M. Girma, ACS Omega 9 (2024) 6803.
[28] S. T. Maleki. P. Beigi, M. Babamoradi, Materials Science and Engineering: B 298 (2023) 116899.
[29] S. Li. X. Li. S. Li. P. Xu. Z. Liu, S. Yu, International Journal of Biological Macromolecules 259 (2024) 128971.
[30] M. U. Saleem. H. Hussain. S. Shukrullah. M. Yasin Naz. M. Irfan. S. Rahman, A. A. J. Ghanim, ACS Omega 9 (2024) 3507.
[31] E. Esmaeili Lashkarian. S. Ahmadi, F. Beigmohammadi, International Journal of New Chemistry 11 (2024) 362.
[32] F. Almomani. R. Bhosale. M. Khraisheh. A. kumar, T. Almomani, Applied Surface Science 506 (2020) 144924.
[33] H. Wu. G. Lin. C. Liu. S. Chu. C. Mo, X. Liu, Trends in Environmental Analytical Chemistry 36 (2022) e00178.
[34] S. Radoor. J. Karayil. A. Jayakumar, S. Siengchin, Journal of Water Process Engineering 59 (2024) 104983.
[35] U. Haripriyan. K. P. Gopinath, J. Arun, Materials Letters 312 (2022) 131670.
[36] A. M. Omer. R. Dey. A. S. Eltaweil. E. M. Abd El-Monaem, Z. M. Ziora, Arabian Journal of Chemistry 15 (2022) 103543.
[37] K. Wang. F. Zhang. K. Xu. Y. Che. M. Qi, C. Song, RSC Advances 13 (2023) 6713.
[38] A. Homayonfard. M. Miralinaghi. R. Haji Seyed Mohammad Shirazi, E. Moniri, Journal of Water and Wastewater; Ab va Fazilab ( in persian )