Utilization of E-Waste in Concrete by using TAGUCHI and ANOVA

Vignesh M.*
Karpagam Academy of Higher Education, Coimbatore, Tamil Nadu, India.
Periodicity:October - December'2024
DOI : https://doi.org/10.26634/jce.14.4.21654

Abstract

The biggest issue facing every nation at the moment is electronic trash. Since there is no way to dispose of e-waste, it has become dangerous. Only a small percentage of the enormous amount of e-waste that is produced each year is recycled or utilized again. E-waste disposal necessitates a sizable land area. Additionally, the supply of components like fine aggregate for concrete is growing rapidly. To solve this issue, other materials must be found. Compressive strength is found in both conventional and e-waste concrete, and a study is conducted on the use of e-waste plastic as fine aggregates with 6% substitution in concrete. Using "MINITAB 16" software, conventional and e-waste concrete are compared. The ANOVA and TAGUCHI methods are then used to determine the optimal value and contribution percentage.

Keywords

Electronic Waste, Compressive Strength, Contribution Percentage, Optimum Value, Regression Analysis.

How to Cite this Article?

Vignesh, M. (2024). Utilization of E-Waste in Concrete by using TAGUCHI and ANOVA. i-manager’s Journal on Civil Engineering, 14(4), 60-64. https://doi.org/10.26634/jce.14.4.21654

References

[1]. Arulraj, P., Regi, F. K., Mariya, P., Varghese, M. K., & Johns, A. A. (2019). Appication of taughi method for the design of concrete mixes. International Journal of Engineering and Advanced Technology, 8(2S2), 325-328.
[2]. Balaji, G., Venkatesh. A., Ragul. S., & Pradeep. R (2019). Experimental Investigation of e-waste based Concrete. International Journal of Civil Engineering (pp. 20-23).
[3]. Brahmacharimayum. M., Shijagurumayum, C., & Suresh, T. (2019). E-waste in concrete-a review. Journal of Civil Engineering and Environmental Technology, 6(6), 384-387.
[4]. Brinila, B. N., & Manikandaprabu, P. (2018). Flexural behaviour of double layered e-waste concrete beams. International Research Journal of Engineering and Technology, 5(5), 1211-1214.
[5]. Chowdhury, A., & Patel, J. (2017). E-waste management and its consequences: A literature review. Journal of Management and Research, 4(1) 52-63.
[7]. Johnpaul, V., Balasundaram, N., & Natarajan, M. (2019). Environmental impact of dumping ggbfs on lands in Coimbatore. International Journal of Engineering and Advanced Technology, 2, 332-334.
[8]. Johnpaul, V., Balasundharam, N., Pragadheesh, S. S., Kam es h w ar an, J . , S at h ees h Ku m ar, M . , & Balajimanikandan, M. (2019). An experimental study on flexural behaviour of nano ggbfs concrete. International Journal of Recent Technology and Engineering, 7(6), 1744–1747.
[11]. Rahman, S. K., Akshay, A., Kharlukhi, M. W., Vignesh, K. J., & Thomas, N. R. (2018). An experimental study on use of e-waste glass as aggregate in concrete blocks. International Journal of Civil Engineering and Technology, 9(4), 248–253.
[12]. Sidharthan, K. V., Shameem, V. S, Sayid, P. S., Kunhi, M., & Dona, C. (2018). Effective utilization of e-waste in concrete. International Journal of Civil Engineering, 5(5), 30-33.
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