Electrochemical Study of Al2O3/ Industrial Waste Coating on Mg Substrate via Sol-Gel Method

Article Preview

Abstract:

Industrial waste is primarily handled using landfills in both developed and developing countries. While there has been a significant rise in solid waste reduction, reuse, and recycling, landfill disposal will inevitably remain the most commonly used form of waste management. Although landfilling provides an economic means of waste disposal, it can lead to environmental degradation by releasing various contaminants if not managed properly. In this work, industrial waste from electrostatic precipitators (ESP) will be beneficial for the production of coatings on metal substrates. The sol-gel coating method have been attempted for deposition on pure Mg samples. Using the potentiodynamic polarization (PDP) method and hydrogen evolution analysis, the effectiveness of the coating, which is the corrosion resistance was analyzed. A minimal application of Tetraethyl orthosilicate (TEOS) in the ESP dust solution has been shown to substantially reduce the corrosion rate of Mg. This is likely due to the impact of its concentrations through the sol-gel process that could increase the size of the particle shape or growth.

You might also be interested in these eBooks

Info:

Periodical:

Materials Science Forum (Volume 1076)

Pages:

73-81

Citation:

Online since:

December 2022

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2022 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Peukert W, Wadenpohl C. Powder Technol. (2001), 118(1-2),136-148.

Google Scholar

[2] Menéndez F, Gómez A, Voces F, García V. J Electrostat. (2015), 76, 188-193.

Google Scholar

[3] Kane SN, Mishra A, Dutta AK. Preface: International Conference on Recent Trends in Physics (ICRTP 2016). J Phys Conf Ser. (2016), 755(1):1-8.

Google Scholar

[4] Gupta V, Chai HK, Lu Y, Chaudhary S.. Constr Build Mater. (2020), 25, 119-220.

Google Scholar

[5] Kishore K, Gupta N. Mater Today Proc. (2020), 26, 2926-2931.

Google Scholar

[6] Ahmed MJK, Ahmaruzzaman M. J Water Process Eng. (2016),10, 39-47.

Google Scholar

[7] Kaya M. Waste Manag. (2016),57, 64-90.

Google Scholar

[8] Fergus JW, Worrell WL. Carbon N Y. (1995), 33(4),537-543.

Google Scholar

[9] Yushkov YG,Oks EM,Tyunkov AV.,Corbella C,Zolotukhin DB.Cer Int.(2020),46(4), 4519-4525.

DOI: 10.1016/j.ceramint.2019.10.179

Google Scholar

[10] Ishak R, Picard D, Laroche G, Ziegler DP, Alamdari H. Metals (Basel). (2017), 7(3).

Google Scholar

[11] Sun Y, Meng Q, Qian M, et al.. Sci Rep. (2016); 1-11.

Google Scholar

[12] Vasconcelos DCL, Carvalho JAN, Mantel M, Vasconcelos WL. J Non Cryst Solids. (2000), 273(1-3), 135-139.

Google Scholar

[13] Vasconcelos DCL, Campos WR, Vasconcelos V, Vasconcelos WL. Mater Sci Eng A. (2002), 334(1-2) ,53-58.

Google Scholar

[14] Chen H, Shen J, Deng J, Hu Y, Zhang Y. Appl Surf Sci. (2020), 508(November 2019),145285.

Google Scholar

[15] Lin W, Zheng J, Yan L, Zhang X. Results Phys. (2018),8,532-536.

Google Scholar

[16] Kesmez Ö. J Mol Struct. (2020), 1205.

Google Scholar

[17] Yang TC, Chin TS, Chang JK, Lin CS. Surf Coatings Technol. (2020), 126457.

Google Scholar

[18] Lin Y, Zhang Q, Liu T, et al. J Alloys Compd. (2019), 798, 59-66.

Google Scholar

[19] Mousa Mirabad H, Nemati A, Faghihi-Sani MA, et al.. J Alloys Compd. (2020), 847,156496.

Google Scholar

[20] Salleh SH, Zaidi NHA, Abdullah SSC. IOP Con. Series: Mat. Sci.and Eng..(2019), Vol 572.

Google Scholar

[21] Prasad T, Halder S, Dhar SS.. Mater Today Proc. (2019), 22, 1669-1675.

Google Scholar

[22] Salleh SH,Thomas,S,Yuwono,JA.,Venkatesan,K,Birbilis N.Electroch Acta(2015), 161,144-152.

Google Scholar

[23] King AD, Birbilis N, Scully JR. Electrochim Acta. (2014), 121, 394-406.

Google Scholar

[24] G. Perrault, J. Electroanal. Chem. Interfacial Electrochem., (1974), 51, 107-119.

Google Scholar

[25] Jamali SS, Moulton SE, Tallman DE, et al.. Electroch Acta. (2015), 152, 294-301.

Google Scholar

[26] Williams G, Birbilis N, McMurray HN. Electrochem commun. (2013), 36, 1-5.

Google Scholar

[27] Qian J, Yin Y, Li T, Hu X, Wang C, Li S. Vacuum. (2015), 117, 55-59.

Google Scholar

[28] Zhang D, Gou Y, Liu Y, Guo X. Surf Coatings Technol. (2013), 236, 52-57.

Google Scholar

[29] Ji R, Ma M, He Y, et al. Ceram Int. (2018), 44(13), 15192-15199.

Google Scholar

[30] Wu L, Ding X, Zheng Z, et al. Appl Surf Sci. (2019), 487(April), 558-568.

Google Scholar

[31] Krupa AND, Vimala R. Mater Sci Eng C. (2016), 61, 728-735.

Google Scholar

[32] Stanley O, AI A, Esther I, Ikhazuagbe Hilary I. Chem Sci J. (2018), 09(01), 9-11.

Google Scholar