Catalytic activity of immobilized Ag and Pd nanoparticles on the magnetic natural zeolite using Chrysanthemum morifolium flower extract in the reduction/decolorization of dyes
محورهای موضوعی : Iranian Journal of CatalysisAkbar Rostami-Vartooni 1 , Leila Rostami 2 , Mojtaba Bagherzadeh 3
1 - Department of Chemistry, Faculty of Science, University of Qom, Qom 3716146611, Iran
2 - Department of Chemistry, Faculty of Science, University of Qom, Qom 3716146611, Iran
3 - Reactor and Nuclear Safety School, Nuclear Science and Technology Research Institute, 81465-1589, Isfahan, Iran .
کلید واژه: Decolorization, natural zeolite, Heulandite, Fe3O4 nanocomposites, C. morifolium, Catalytic reduction,
چکیده مقاله :
In this study, Ag and Pd nanoparticles (NPs) were immobilized on natural zeolite and magnetized zeolite (Fe3O4/natural zeolite) by using an aqueous Chrysanthemum morifolium flower extract, as a green and low-cost method. Different techniques such as FTIR, XRD, FESEM, EDS, and VSM were used for the characterization of prepared nanocomposites. The FESEM and TEM images of nanocomposites showed that the quasi-spherical Ag and Pd NPs with mostly 20–50 nm particles size have successfully formed and are well dispersed on the supports surface. The effect of various parameters such as nanocomposite type, initial dye, NaBH4 concentrations, catalyst dose, and pH were studied in the catalytic reduction/decolorization of three organic dyes. In the absence of NaBH4 or catalyst, no color changes were observed even after 90 min. The reduction rates of the selected dyes in the presence of stable catalysts were found to be in an order of Pd/Fe3O4/natural zeolite > Pd/natural zeolite > Ag/Fe3O4/natural zeolite > Ag/natural zeolite > Fe3O4/natural zeolite.
[1] B. Jaleh, M.G. Rouzbahani, K. Abedi, S. Azizian, H. Ebrahimi, M. Nasrollahzadeh, R.S. Varma, Clean Technol. Envir. 1-10.
[2] K.B. Tan, M. Vakili, B.A. Horri, P.E. Poh, A.Z. Abdullah, B. Salamatinia, Sep. Purif. Technol. 150 (2015) 229-242.
[3] S. Kavitha, M. Umadevi, S. Janani, T. Balakrishnan, R. Ramanibai, Spectrochim Acta A 127 (2014) 115-121.
[4] F. Torkamani, S. Azizian, J. Mol. Liq. 214 (2016) 270-275.
[5] D. Ke, J. Wang, H. Zhang, Y. Li, L. Zhang, X. Zhao, S. Han, Int. J. Hydrogen Energ. 42 (2017) 26617-26625.
[6] D. Lamey, O. Beswick, F. Cárdenas-Lizana, P.J. Dyson, E. Sulman, L. Kiwi-Minsker, Appl. Catal. A Gen. 542 (2017) 182-190.
[7] M.G. Goudarzi, M. Bagherzadeh, F. Taheri, A. Rostami-Vartooni, SN Appl. Sci. 2 (2020) 1-8.
[8] B. Khodadadi, M. Bordbar, M. Nasrollahzadeh, J. Collo. Interf. Sci. 490 (2017) 1-10.
[9] A. Molnar, Efficient, Chem. Rev. 111 (2011) 2251-2320.
[10] A. Rostami-Vartooni, M. Nasrollahzadeh, M. Alizadeh, J. Collo. Interf. Sci. 470 (2016) 268-275.
[11] A. Rostami-Vartooni, M. Nasrollahzadeh, M. Alizadeh, J. Allo. Compd. 680 (2016) 309-314.
[12] M. Amir, U. Kurtan, A. Baykal, Chin. J. Catal. 36 (2015) 1280-1286.
[13] H. Veisi, J. Gholami, H. Ueda, P. Mohammadi, M. Noroozi, J Mol. Catal. A Chem. 396 (2015) 216-223.
[14] M. Atarod, M. Nasrollahzadeh, S.M. Sajadi, J. Collo. Interf. Sci. 465 (2016) 249-258.
[15] B.M. Reddy, A. Khan, Catal. Rev. 47 (2005) 257-296.
[16] V. Pareek, A. Bhargava, R. Gupta, N. Jain, J. Panwar, Adv. Sci. Eng. Med. 9 (2017) 527-544.
[17] C.D. De Souza, B.R. Nogueira, M.E.C. Rostelato, J. Allo. Compd. 789 (2019) 714-740.
[18] A. Rostami-Vartooni, M. Nasrollahzadeh, M. Salavati-Niasari, M. Atarod, J. Allo. Compd. 689 (2016) 15-20.
[19] A. Rostami-Vartooni, A. Moradi-Saadatmand, M. Bagherzadeh, M. Mahdavi, Iran. J. Catal. 9 (2019) 27-35.
[20] M. Nasrollahzadeh, M. Maham, A. Rostami-Vartooni, M. Bagherzadeh, S.M. Sajadi, RSC Adv. 5 (2015) 64769-64780.
[21] I.S. Kim, S. Koppula, P.-J. Park, E.H. Kim, C.G. Kim, W.S. Choi, K.H. Lee, D.-K. Choi, J. Ethnopharmacol. 126 (2009) 447-454.
[22] O.A. Lawal, I.A. Ogunwande, O.F. Olorunloba, A. Oloku, Am. J. Essen. Oil. Nat. Prod. 2 (2014) 63-66.
[23] C.-K. Lii, Y.-P. Lei, H.-T. Yao, Y.-S. Hsieh, C.-W. Tsai, K.-L. Liu, H.-W. Chen, J. Ethnopharmacol. 128 (2010) 213-220.
[24] M. Ukiya, T. Akihisa, K. Yasukawa, Y. Kasahara, Y. Kimura, K. Koike, T. Nikaido, M. Takido, J. Agr. Food Chem. 49 (2001) 3187-3197.
[25] G.-H. Lin, L. Lin, H.-W. Liang, X. Ma, J.-Y. Wang, L.-P. Wu, H.-D. Jiang, I.C. Bruce, Q. Xia, J. Med. Food, 13 (2010) 306-311.
[26] P.-D. Duh, Food Chem. 66 (1999) 471-476.
[27] M. Ukiya, T. Akihisa, H. Tokuda, H. Suzuki, T. Mukainaka, E. Ichiishi, K. Yasukawa, Y. Kasahara, H. Nishino, Cancer Lett. 177 (2002) 7-12.
[28] J.S. Lee, H.J. Kim, Y.S. Lee, Plan. Med. 69 (2003) 859-861.
[29] C.W. Beninger, M.M. Abou-Zaid, A.L. Kistner, R.H. Hallett, M.J. Iqbal, B. Grodzinski, J.C. Hall, J. Chem. Ecol. 30 (2004) 589-606.
[30] Q. Guo, T. Wang, L. Cheng, J. Wen, T. Wang, Y. Liang, J. Chin. Mater. Med. 33 (2008) 756-759, 779.
[31] G. Tsitsishvili, Natural zeolites, Ellis Horwood Limited1992.
[32] D.W. Ming, E.R. Allen, Rev. Miner. Geochem. 45 (2001) 619-654.
[33] R. Barer, Zeolites and clay minerals as sorbent and molecular sieves, Academic Press, New York, 1987.
[34] M.R. Eskandarian, M. Fazli, M.H. Rasoulifard, H. Choi, Appl. Catal. B Environ. 183 (2016) 407-416.
[35] K. Shameli, M.B. Ahmad, M. Zargar, W.M.Z.W. Yunus, N.A. Ibrahim, Int. J. Nanomed. 6 (2011) 331-341.
[36] E. Kolobova, A. Pestryakov, A. Shemeryankina, Y. Kotolevich, O. Martynyuk, H.T. Vazquez, N. Bogdanchikova, Fuel, 138 (2014) 65-71.
[37] J. Behin, E. Ghadamnan, H. Kazemian, Clay Miner. 54 (2019) 131-144.
[38] A. Nezamzadeh-Ejhieh, M. Khorsandi, Iran. J. Catal. 1 (2011) 99-104.
[39] A. Nezamzadeh-Ejhieh, Z. Banan, Iran. J. Catal. 2 (2012) 79-83.
[40] A. Nezamzadeh-Ejhieh, M. Karimi-Shamsabadi, Chem. Eng. J. 228 (2013) 631-641.
[41] J. Talat-Mehrabad, M. Partovi, F. Arjomandi Rad, R. Khalilnezhad, Iran. J. Catal. 9 (2019) 233-239.
[42] K.A. Isai, V.S. Shrivatava, Iran. J. Catal. 9 (2019) 259-268.
[43] M.H. Habibi, E. Askari, Iran. J. Catal. 1 (2011) 41-44.
[44] L. Vafayi, S. Gharibe, Iran. J. Catal. 5 (2015) 365-371.
[45] M. Zebardast, A. Fallah Shojaei, K. Tabatabaeian, Iran. J. Catal. 8 (2018) 297-309.
[46] A. Rostami-Vartooni, A. Moradi-Saadatmand, M. Bagherzadeh, M. Mahdavi, Iran. J. Catal. 9 (2019) 27-35.
[47] M. Balakrishnan, R. John, Iran. J. Catal. 10 (2020) 1-16.
[48] A. Mahmoodi, S.M. Mehdinia, A. Rahmani, H. Nassehinia, Iran. J. Catal. 10 (2020) 23-32.
[49] N. Pourshirband, A. Nezamzadeh-Ejhieh, S.N. Mirsattari, Spectrochim. Acta A Mol. Biomol. Spec. 248 (2021) 119110-119128.
[50] A. Nezamzadeh-Ejhieh, N. Moazzeni, J. Ind. Eng. Chem. 19 (2013) 1433-1442.
[51] A. Nezamzadeh-Ejhieh, M. Karimi-Shamsabadi, Appl. Catal. A Gen. 477 (2014) 83-92.
[52] M. Karimi-Shamsabadi, A. Nezamzadeh-Ejhieh, J. Mol. Catal. A Chem. 418 (2016) 103-114.
[53] S. Ghattavi, A. Nezamzadeh-Ejhieh, Int. J. Hydrogen Energ., 45 (2020) 24636-24656.
[54] G. Panthi, M. Park, H.-Y. Kim, S.-Y. Lee, S.-J. Park, J. Ind. Eng. Chem. 21 (2015) 26-35.
[55] G. Zhang, X. Zhang, Y. Meng, G. Pan, Z. Ni, S. Xia, Chem. Eng. J. 392 (2020) 123684.
[56] J.A. Lercher, C. Gründling, G. Eder-Mirth, Catal. Today, 27 (1996) 353-376.
[57] D. Sternik, M. Majdan, A. Deryło-Marczewska, G. Żukociński, A. Gładysz-Płaska, V. Gun'Ko, S. Mikhalovsky, J. Therm. Anal. Calorim. 103 (2010) 607-615.
[58] C. Yang, Y. Guan, J. Xing, J. Liu, G. Shan, Z. An, H. Liu, Aiche J. 51 (2005) 2011-2015.
[59] N. Arabpour, A. Nezamzadeh-Ejhieh, Mater. Sci. Semicon. Proc. 31 (2015) 684-692.
[60] K. Elaiopoulos, T. Perraki, E. Grigoropoulou, A. Poulou, Microp. Mesopor. Mater. 134 (2010) 29-43.
[61] E. Karaoğlu, A. Baykal, M. Şenel, H. Sözeri, M.S. Toprak, Mater. Res. Bull. 47 (2012) 2480-2486.
[62] V. Ramasamy, P. Anand, G. Suresh, Adv. Powder Technol. 29 (2018) 818-834.
[63] E.M. Olegario, C.M.O. Pelicano, L.A. Dahonog, H. Nakajima, Mater. Res. Exp. 6 (2018) 015005.
[64] M. Minceva, R. Fajgar, L. Markovska, V. Meshko, Sep. Sci. Technol. 43 (2008) 2117-2143.
[65] Y. Zhang, W. Yan, Z. Sun, X. Li, J. Gao, RSC Adv. 4 (2014) 38040-38047.
[66] R. Wu, J.-H. Liu, L. Zhao, X. Zhang, J. Xie, B. Yu, X. Ma, S.-T. Yang, H. Wang, Y. Liu, J. Environ. Chem. Eng. 2 (2014) 907-913.
[67] N. Pourshirband, A. Nezamzadeh-Ejhieh, S.N. Mirsattari, Chem. Phys. Lett. 761 (2020) 138090.
[68] C.-H. Liu, X.-Q. Chen, Y.-F. Hu, T.-K. Sham, Q.-J. Sun, J.-B. Chang, X. Gao, X.-H. Sun, S.-D. Wang, ACS Appl. Mater.Interf. 5 (2013) 5072-5079.
[69] X.-L. Cai, C.-H. Liu, J. Liu, Y. Lu, Y.-N. Zhong, K.-Q. Nie, J.-L. Xu, X. Gao, X.-H. Sun, S.-D. Wang, Nano-Micro lett. 9 (2017) 1-10.
[70] M. Nasrollahzadeh, S.M. Sajadi, A. Rostami-Vartooni, M. Bagherzadeh, J. Collo. Interf. Sci. 448 (2015) 106-113.
[71] T. Nguyen Thi Thu, N. Nguyen Thi, V. Tran Quang, K. Nguyen Hong, T. Nguyen Minh, N. Le Thi Hoai, J. Exper. Nanosci. 11 (2016) 226-238.
[72] H.-J. Cui, H.-Z. Huang, B. Yuan, M.-L. Fu, Geochem. T. 16 (2015) 1-8.
[73] B.K. Ghosh, S. Hazra, B. Naik, N.N. Ghosh, Powder Technol. 269 (2015) 371-378.
[74] M. Ismail, M. Khan, S.A. Khan, M. Qayum, M.A. Khan, Y. Anwar, K. Akhtar, A.M. Asiri, S.B. Khan, J. Mater. Sci. Mater. El. 29 (2018) 20840-20855.
[75] S. Xuan, Y.-X.J. Wang, J.C. Yu, K.C.-F. Leung, Langmuir, 25 (2009) 11835-11843.
[76] X. Yang, H. Zhong, Y. Zhu, H. Jiang, J. Shen, J. Huang, C. Li, J. Mater. Chem. A, 2 (2014) 9040-9047.
[77] R. Vinayagam, T. Varadavenkatesan, R. Selvaraj, Green Process. Synth. 7 (2018) 30-37.
[78] A. Musa, M.B. Ahmad, M.Z. Hussein, M.I. Saiman, H.A. Sani, Res. Chem. Intermediat. 43 (2017) 801-815.
[79] P. Saikia, A. T MIAH, P.P. Das, J. Chem. Sci. 129 (2017) 81-93.
[80] Z. Gan, A. Zhao, M. Zhang, W. Tao, H. Guo, Q. Gao, R. Mao, E. Liu, Dalton T, 42 (2013) 8597-8605.