Home / Current Issue / Paper 1706737
Reducing Carbon Footprint in Cooking: A Study on Energy Efficiency and Environmental Impact
Subject area: Physical Sciences and Environment · Area of research: Energy Efficiency and Environmental Impact
Abstract
The study investigates the potential reduction in carbon emissions during cooking by using air-based insulators and automated flame reduction systems. The primary focus is on minimizing heat losses to the environment and boiling inefficiencies. The study includes simulations data to quantify energy savings and equivalent carbon footprint reduction, both at the household and community levels. The findings support the development of a prototype device aimed at improving cooking efficiency. Design requirements, potential risks, failure modes, and practical implications are discussed. The paper provides a comprehensive analysis, supported by simulations, explanatory drawings, and graphs.
References
[1] Hossain, M. J., Rifat, R. H., Mugdho, M. H., Jahan, M., Rasel, A. A., & Rahman, M. A. (2022, November). Cyber Threats and Scams in FinTech Organizations: A brief overview of financial fraud cases, future challenges, and recommended solutions in Bangladesh. In 2022 International Conference on Informatics, Multimedia, Cyber and Information System (ICIMCIS) (pp. 190-195). IEEE.
[2] Hossain, M. J., Jahan, U. N., & Rifat, R. H. (2024). A proposed architecture for securing fintech applications using Hyperledger fabric in a hybrid cloud. World Journal of Advanced Research and Reviews, 23(2), 543-550.
[3] Lawrence, J. (2024). INTEGRATION OF ARTIFICIAL INTELLIGENCE IN SUPPLY CHAIN MANAGEMENT: CHALLENGES AND OPPORTUNITIES. Journal of Philanthropy and Marketing, 4(1), 1-13.
How to cite this paper
@article{1706737,
author = {Yves St?phane Kamdem},
title = {Reducing Carbon Footprint in Cooking: A Study on Energy Efficiency and Environmental Impact},
journal = {Iconic Research And Engineering Journals},
year = {2024},
volume = {8},
number = {6},
pages = {629-643},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1706737.pdf},
abstract = {The study investigates the potential reduction in carbon emissions during cooking by using air-based insulators and automated flame reduction systems. The primary focus is on minimizing heat losses to the environment and boiling inefficiencies. The study includes simulations data to quantify energy savings and equivalent carbon footprint reduction, both at the household and community levels. The findings support the development of a prototype device aimed at improving cooking efficiency. Design requirements, potential risks, failure modes, and practical implications are discussed. The paper provides a comprehensive analysis, supported by simulations, explanatory drawings, and graphs.},
month = {December},
}