ISSN 3060-4745 Open Access · Peer Reviewed
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Keywords

Metanogel, bioengineering, ecology, energy, industry, structure, pressure, chemical stability, thermodynamics, thermal stability.

How to Cite

THE SIGNIFICANCE AND PRACTICAL IMPORTANCE OF METHANE GAS ABSORBENTS. (2025). ACUMEN: INTERNATIONAL JOURNAL OF MULTIDISCIPLINARY RESEARCH, 2(11), 271-273. https://www.universalpublishings.com/index.php/aijmr/article/view/14519

Abstract

In modern industrial, transport, and energy infrastructures, the use of high-pressure gases is steadily increasing. One of the fundamental issues in such systems is ensuring reliable, safe, and effective pressure regulation. Within this  framework, the deployment of chemically active, structurally robust, and highly efficient functional materials - known as methanogels - has gained notable scientific and practical attention. In recent years, methanogels have emerged as advanced materials with broad potential across diverse fields, including bioengineering,

medicine, energy technology, and environmental protection.

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References

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4. Singh, N., & Roberts, P. (2022). The Role of Metanogels in Regenerative Medicine. Biotechnology Reports, 55(1), 34–49.

5. Wang, H., & Chen, T. (2021). Energy Storage Applications of Modified Metanogels. Advanced Energy Materials, 40(5), 223–239.

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