Synthesis of Zeolite from Sugarcane Bagasse Ash Using Cetyltrimethylammonium Bromide as Structure Directing Agent

https://doi.org/10.22146/ijc.22197

Sriatun Sriatun(1*), Taslimah Taslimah(2), Linda Suyati(3)

(1) Diponegoro University
(2) Diponegoro University
(3) Diponegoro University
(*) Corresponding Author

Abstract


The purpose of this research is to synthesize zeolite from sugarcane bagasse ash using cetyltrimethylammonium bromide as structure directing agent. This research used cetyltrimethylammonium bromide surfactant to invent the high porosity, surface area, acidity and thermal stability of synthesized zeolite. The Silica was extracted by alkaline fusion using sodium hydroxide solution. The synthesis was conducted by hydrothermal process at 100 °C for 7 days, ageing process for 24 h and calcination at 500 °C for 5 h. The ratio of Si/Al (v/v) was 1, 15 and 25, meanwhile the concentration of cetyltrimethylammonium bromide was 5x10-4 M, 1x10-3 M and 1x10-2 M. The result showed all of product have strong absorbance at 950–1050 cm-1 and 620–690 cm-1, 420–460 cm-1, double ring at 520–570 cm-1, pore opening at 300–370 cm-1. Vibration of –OH as silanol group or water was indicated by broad absorbance at 3400–3450 cm-1. The diffractograms XRD showed that the product had high crystallinity. The composition of product on ratio Si/Al 1 with concentration of cetyltrimethylammonium 10-2 M is sodalite, the ratio Si/Al 15 and 25 are NaP1 and SiO2 quartz and contain 12.23% and 12.19% of Si, 4.17% and 13.18% of Al, respectively. Observation on SEM revealed that the crystal produced using cetyltrimethylammonium bromide were homogenous and regular in shape.


Keywords


surfactant; cetyltrimethylammonium bromide; synthesis; zeolite; sugarcane bagasse

Full Text:

Full Text PDF


References

[1] Srinivasan, R., and Sathiya, K., 2010, Experimental study on bagasse ash in concrete, Int. J. Serv. Learn. Eng., 5 (2), 60–66.

[2] Indonesian Statistics, 2012, http://www.bps.go.id.

[3] Hanafi, A., and Nandang, A., 2010, Studi pengaruh bentuk silika dari ampas tebu terhadap kekuatan produk keramik, Jurnal Kimia Indonesia, 5 (1), 35–38.

[4] Norsuraya, S., Fazlena, H., and Norhasyimi, R., 2016, Sugarcane bagasse as a renewable Source of silica to synthesize Santa Barbara Amorphous-15 (SBA-15), Procedia Eng., 148, 839–846.

[5] Cardoso, A.M., Paprocki, A., Ferret, L.S., Azevedo, C.M.N., and Pires, M., 2015, Synthesis of zeolite Na-P1 under mild conditions using Brazilian coal fly ash and its application in wastewater treatment, Fuel, 139, 59–67.

[6] Moisés, M.P., da Silva, C.T.P., Meneguin, J.G., Girotto, E.M., and Radovanovic, E., 2013, Synthesis of zeolite NaA from sugarcane bagasse ash, Mater. Lett., 108, 243–246.

[7] Maia, A.Á.B., Neves, R.F., Angélica, R.S., and Pöllmann, H., 2015, Synthesis, optimisation and characterisation of the zeolite NaA using kaolin waste from the Amazon Region. Production of zeolites KA, MgA and CaA, Appl. Clay Sci., 108, 55–60.

[8] Kazemian, H., Naghdali, Z., Kashani, T.G., and Farhadi, F., 2010, Conversion of high silicon fly ash to Na-P1 zeolite: Alkaline fusion followed by hydrothermal crystallization, Adv. Powder Technol., 21 (3), 279–283.

[9] Babajide, O., Musyoka, N., Petrik, L., and Ameer, F., 2012, Novel zeolite Na-X synthesized from fly ash as a heterogeneous catalyst in biodiesel production, Catal. Today, 190 (1), 54–60.

[10] Musyoka, N.M., Petrik, L.F., Fatoba, O.O., and Hums, E., 2013, Synthesis of zeolites from coal fly ash using mine waters, Miner. Eng., 53, 9–15.

[11] Baccouche, A., Srasra, E., and El Maaoui, M., 1998, Preparation of Na-P1 and sodalite octahydrate zeolites from interstratified illite–smectite, Appl. Clay Sci., 13 (4), 255–273.

[12] Sánchez-Hernández, R., López-Delgado, A., Padilla, I., Galindo, R., and López-Andrés, S, 2016, One-step synthesis of NaP1, SOD and ANA from a hazardous aluminum solid waste, Microporous Mesoporous Mater., 226, 267–277.

[13] Purnomo, C.W., Salim, C., and Hinode, H., 2012, Synthesis of pure Na–X and Na–A zeolite from bagasse fly ash, Microporous Mesoporous Mater., 162, 6–13.

[14] Wittayakun, J., Khemthong, P., and Prayoonpokarach, S., 2008, Synthesis and characterization of zeolite NaY from rice husk silica, Korean J. Chem. Eng., 25 (4), 861–864.

[15] Faghihian, H., and Godazandeha, N., 2009, Synthesis of nano crystalline zeolite Y from bentonite, J. Porous Mater., 16 (3), 331–335.

[16] Almeida, R.K.S., Gómez-Hortigüela, L., Pinar, A.B., and Peréz-Pariente, J., 2016, Synthesis of ferrierite by a new combination of co-structure-directing agents: 1,6-bis(N-methylpyrrolidinium)hexane and tetramethylammonium, Microporous Mesoporous Mater., 232, 218–226.

[17] Lee, H.J., Kim, S.H., Kim, J.H., Park, S.J., and Cho, S.J., 2014, Synthesis and characterization of zeolites MTT and MFI, with controlled morphologies using mixed structure directing agents, Microporous Mesoporous Mater., 195, 205–215.

[18] Hasan, F., Singh, R., Li, G., Zhao, D., and Webley, P.A., 2012, Direct synthesis of hierarchical LTA zeolite via a low crystallization and growth rate technique in presence of cetyltrimethylammonium bromide, J. Colloid Interface Sci., 382 (1),1–12.

[19] Su, S., Ma, H., and Chuan, X., 2016, Hydrothermal synthesis of zeolite A from K-feldspar and its crystallization mechanism, Adv. Powder Technol., 27 (1), 139–144.

[20] Weitkamp, J., and Puppe, L., 1999, Catalysis and Zeolites: Fundamentals and Applications, Springer-Verlag Berlin Heidelberg.

[21] Treacy, M.M.J., and Higgins, J.B., 2001, Collection of Simulated XRD Powder Pattern for Zeolite, 4th rev. ed., Elsevier Science.

[22] Wang, L., Yang, W., Xin, C., Ling, F., Sun, W., Fang, X., and Yang, R., 2012, Synthesis of nano-zeolite IM-5 by hydrothermal method with the aid of PEG and CTAB, Mater. Lett., 69, 16–19.



DOI: https://doi.org/10.22146/ijc.22197

Article Metrics

Abstract views : 4249 | views : 3858


Copyright (c) 2017 Indonesian Journal of Chemistry

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

 


Indonesian Journal of Chemistry (ISSN 1411-9420 /e-ISSN 2460-1578) - Chemistry Department, Universitas Gadjah Mada, Indonesia.

Web
Analytics View The Statistics of Indones. J. Chem.