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Article

Research on the Retardant Effect of Deep Eutectic Inhibitor for Coal Spontaneous Combustion

1
School of Resource, Environment and Safety Engineering, Hunan University of Science and Technology, Xiangtan 411201, China
2
Hunan Engineering Research Center for Fire and Explosion Prevention Materials and Equipment in Underground Spaces, Xiangtan 411201, China
3
Key Laboratory of Fire and Explosion Prevention and Emergency Technology in Hunan Province, Xiangtan 411201, China
*
Author to whom correspondence should be addressed.
Fire 2026, 9(3), 129; https://doi.org/10.3390/fire9030129
Submission received: 10 February 2026 / Revised: 11 March 2026 / Accepted: 13 March 2026 / Published: 18 March 2026

Abstract

To address the challenges of rapid water loss and insufficient long-term inhibition efficiency of conventional inhibitors in the high-temperature environments of deep goafs, a novel, environmentally friendly Deep Eutectic Inhibitor (DEI) was synthesized. This DEI utilizes citric acid (Ca) and proline (Pr) as the hydrogen bond donor and acceptor, respectively, with ascorbic acid (VC) and propyl gallate (PG) serving as antioxidants. A moisture retention evaluation model based on Fick’s law of diffusion was established to systematically investigate the liquid-domain stability of the DEI across a temperature range of 30 °C to 120 °C. The results demonstrate that the DEI exhibits superior moisture retention capabilities under high-temperature conditions, with the relative moisture retention peaking in the 80–110 °C range. Mechanistically, the formation of a robust hydrogen bond network effectively counteracts moisture evaporation driven by thermal kinetic energy. Furthermore, the DEI demonstrated significant inhibition effects on four coal samples with varying degrees of metamorphism. Tests on oxidative heat release characteristics revealed that DEI treatment delayed the initial oxidation temperature of the coal. Kinetic analysis further indicated that during the critical oxidation stage (200–300 °C), the apparent activation energy of the treated coal samples increased by 10.28–18.9 kJ/mol, effectively suppressing the spontaneous combustion process. This study contributes to the development of high-efficiency and eco-friendly fire prevention materials for coal mines.
Keywords: coal spontaneous combustion; deep eutectic inhibitor; water retention capacity; Fick’s law of diffusion; micro-calorimetry; apparent activation energy coal spontaneous combustion; deep eutectic inhibitor; water retention capacity; Fick’s law of diffusion; micro-calorimetry; apparent activation energy

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MDPI and ACS Style

Shao, S.; Lu, Y.; Shi, S.; Wang, Y.; Wang, T. Research on the Retardant Effect of Deep Eutectic Inhibitor for Coal Spontaneous Combustion. Fire 2026, 9, 129. https://doi.org/10.3390/fire9030129

AMA Style

Shao S, Lu Y, Shi S, Wang Y, Wang T. Research on the Retardant Effect of Deep Eutectic Inhibitor for Coal Spontaneous Combustion. Fire. 2026; 9(3):129. https://doi.org/10.3390/fire9030129

Chicago/Turabian Style

Shao, Shuzhen, Yi Lu, Shiliang Shi, Yubo Wang, and Tao Wang. 2026. "Research on the Retardant Effect of Deep Eutectic Inhibitor for Coal Spontaneous Combustion" Fire 9, no. 3: 129. https://doi.org/10.3390/fire9030129

APA Style

Shao, S., Lu, Y., Shi, S., Wang, Y., & Wang, T. (2026). Research on the Retardant Effect of Deep Eutectic Inhibitor for Coal Spontaneous Combustion. Fire, 9(3), 129. https://doi.org/10.3390/fire9030129

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