Published on: May 2026
INTEGRATION OF CHEMISTRY IN MODERN LIFE AND ENVIRONMENTAL SUSTAINABILITY
Sampada V. Bettigeri Vivek P. Kude
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Abstract
This paper discusses the importance of chemistry in everyday life through various practical applications such as toothpaste, soaps, detergents, food preservatives, cosmetics, medicines, fertilizers, and pesticides. It also highlights the role of chemistry in body functions including digestion, respiration, energy production, and brain activities controlled by biochemical compounds and enzymes. In addition, the study explains how chemistry contributes to agriculture and environmental protection while also addressing challenges caused by chemical pollution and industrial waste. Understanding the significance of chemistry helps people develop scientific awareness and encourages the safe and effective use of chemical products in society. The study concludes that chemistry is deeply connected with human existence and remains one of the most important sciences for sustainable development and improved quality of life.
Keywords: Chemistry, Daily Life, Environmental Sustainability, Green Chemistry, Healthcare, Agriculture, Chemical Products
How to Cite this Paper
Bettigeri, S. V. & Kude, V. P. (2026). Integration of Chemistry in Modern Life and Environmental Sustainability. International Journal of Creative and Open Research in Engineering and Management, <i>02</i>(05). https://doi.org/10.55041/ijcope.v2i5.797
Bettigeri, Sampada, and Vivek Kude. "Integration of Chemistry in Modern Life and Environmental Sustainability." International Journal of Creative and Open Research in Engineering and Management, vol. 02, no. 05, 2026, pp. . doi:https://doi.org/10.55041/ijcope.v2i5.797.
Bettigeri, Sampada, and Vivek Kude. "Integration of Chemistry in Modern Life and Environmental Sustainability." International Journal of Creative and Open Research in Engineering and Management 02, no. 05 (2026). https://doi.org/https://doi.org/10.55041/ijcope.v2i5.797.
References
[1] Boonanunt, S., Jomnum, S., & Chancharoenrith, S., “Chemistry in Everyday Life: A Context-Based Course for High School Students Incorporating Household Application Topics with Explanatory Writing Assignments,” Journal of Chemical Education, vol. 101, no. 6, pp. 2372–2380, 2024.[2] Laohapornchaiphan, J., & Chenprakhon, P., “A Review of Research on Learning Activities Addressing the Submicroscopic Level in Chemistry,” Journal of Chemical Education, vol. 101, no. 11, pp. 4552–4565, 2024.
[3] Iyamuremye, A. et al., “Utilization of Artificial Intelligence and Machine Learning in Chemistry Education: A Critical Review,” Discover Education, vol. 3, Article 95, 2024.
[4] Venkatesan, K., Sundarababu, J., & Anandan, S. S., “The Recent Developments of Green and Sustainable Chemistry in Multidimensional Way: Current Trends and Challenges,” 2024.
[5] “Green Chemistry and Its Impact on the Transition towards Sustainable Chemistry: A Systematic Review,” Sustainability, vol. 16, no. 15, p. 6526, 2024.
[6] Aroch, I., Katchevich, D., & Blonder, R., “Modes of Technology Integration in Chemistry Teaching: Theory and Practice,” Chemistry Education Research and Practice, vol. 25, pp. 843–861, 2024.
[7] Ardyansyah, A., & Rahayu, S., “Technology-Enhanced Learning Influence on Chemical Literacy: A Systematic Review,” Eclética Química, 2024.
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- •Published on: May 27 2026
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