Sustainable Energy Generation From Waste Materials

April 2026
Vol-12, Issue-2
Paper ID: 28261
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
Electrical Engineering
Keywords
Waste-to-energy (WTE) Thermoelectric generator (TEG) Solar panel system renewable energy energy recovery Arduino UNO.
Abstract
This project mainly focuses on: Using heat and light energy, waste materials are converted into power using TEGs and solar energy systems. A large amount of energy is lost when industrial byproducts and municipal garbage are thrown without being properly utilized. By the suggested technology effectively captures thermal and radiation energy from these materials turns garbage to usable electricity. The design features waste-burning heating panels, thermoelectric modules for waste heat-to-electricity conversion, and solar panels for harnessing sunlight energy. The system has integrated with Arduino UNO for real-time monitoring and optimization. A pollution control filter is also used to prevent harmful emissions from waste combustion. This technology promotes sustainable energy, lowers pollution, and recovers energy from discarded materials, harmonizing with global aims.

Author Information

# Name Institute / Affiliation
1 Achal M. Hirapure Smt. Radhikatai Pandav College of Engineering, Nagpur, Maharashtra, India
2 Prof. S. P. Bhuyarkar Smt. Radhikatai Pandav College of Engineering, Nagpur, Maharashtra, India
3 Deep P. Dhabale Smt. Radhikatai Pandav College of Engineering, Nagpur, Maharashtra, India
4 Piyush A. Dongre Smt. Radhikatai Pandav College of Engineering, Nagpur, Maharashtra, India
5 Kajal D. Rohankar Smt. Radhikatai Pandav College of Engineering, Nagpur, Maharashtra, India
6 Punam D. Kelzarkar Smt. Radhikatai Pandav College of Engineering, Nagpur, Maharashtra, India
7 Vaishnavi P. Pimprale Smt. Radhikatai Pandav College of Engineering, Nagpur, Maharashtra, India
8 Tejaswini A. Meshram Smt. Radhikatai Pandav College of Engineering, Nagpur, Maharashtra, India

How to Cite

Use the following formats to cite this article in your research.

APA Style
Hirapure, Achal M., Bhuyarkar, Prof. S. P., Dhabale, Deep P., Dongre, Piyush A., Rohankar, Kajal D., Kelzarkar, Punam D., Pimprale, Vaishnavi P., & Meshram, Tejaswini A. (2026). Sustainable Energy Generation From Waste Materials. International Journal of Advance Research and Innovative Ideas In Education, 12(2), 1091-1096.
MLA Style
Hirapure, Achal M., et al. "Sustainable Energy Generation From Waste Materials." International Journal of Advance Research and Innovative Ideas In Education, vol. 12, no. 2, 2026, pp. 1091-1096.
IEEE Style
Achal M. Hirapure, Prof. S. P. Bhuyarkar, Deep P. Dhabale, Piyush A. Dongre, Kajal D. Rohankar, Punam D. Kelzarkar, Vaishnavi P. Pimprale, and Tejaswini A. Meshram, "Sustainable Energy Generation From Waste Materials," International Journal of Advance Research and Innovative Ideas In Education, vol. 12, no. 2, pp. 1091-1096, 2026.
Vancouver Style
Hirapure Achal M., Bhuyarkar Prof. S. P., Dhabale Deep P., Dongre Piyush A., Rohankar Kajal D., Kelzarkar Punam D., et al. Sustainable Energy Generation From Waste Materials. International Journal of Advance Research and Innovative Ideas In Education. 2026;12(2):1091-1096.
Harvard Style
Hirapure, Achal M., Bhuyarkar, Prof. S. P., Dhabale, Deep P., Dongre, Piyush A., Rohankar, Kajal D., Kelzarkar, Punam D., Pimprale, Vaishnavi P., & Meshram, Tejaswini A. (2026) 'Sustainable Energy Generation From Waste Materials', International Journal of Advance Research and Innovative Ideas In Education, 12(2), pp. 1091-1096.
Chicago Style
Hirapure, Achal M., et al. "Sustainable Energy Generation From Waste Materials." International Journal of Advance Research and Innovative Ideas In Education 12, no. 2 (2026): 1091-1096.
Turabian Style
Hirapure, Achal M., et al. "Sustainable Energy Generation From Waste Materials." International Journal of Advance Research and Innovative Ideas In Education 12, no. 2 (2026): 1091-1096.

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