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February 27, 2026Case Studies in Thermal Engineering2 citationsOpen Access

Experimental study on the inhibition effect of inhibitors on coal spontaneous combustion during long-term low-temperature oxidation process

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XZXiaoyuan ZhangHDHanzhong DengXZXun Zhang

Key Points

  • This study aims to investigate the long-term effects of various inhibitors on coal spontaneous combustion and their underlying mechanisms.
  • Used programmed heating to analyze coal behavior under low temperatures.
  • Conducted thermogravimetric analysis to assess weight changes in coal with inhibitors.
  • Employed Fourier-transform infrared spectroscopy to study changes in functional groups.
  • Inhibitory effects increase initially and then decline with longer oxidation times.
  • Tea polyphenols show the highest CO inhibition rate of 39.71% at approximately 1000 hours.
  • Resveratrol and tea polyphenols provide stronger inhibition compared to magnesium chloride.

Abstract

To elucidate the long-term inhibitory effects of inhibitors on coal spontaneous combustion in mines and their underlying mechanisms, programmed heating, thermogravimetric analysis, and Fourier-transform infrared spectroscopy were employed to investigate the effects of magnesium chloride, resveratrol, and tea polyphenols during prolonged low-temperature oxidation. The results show that the inhibitory effects of all three inhibitors initially increase and then decline with oxidation time. Based on CO and CO 2 evolution, CO inhibition rates, and apparent activation energy, the inhibitory performance reaches an optimum at approximately 1000 h. At this stage, tea polyphenols exhibit the strongest inhibitory effect, achieving a maximum CO inhibition rate of 39.71% and increasing the apparent activation energy by 31%. Microstructural analysis indicates that all three inhibitors effectively suppress the formation or consumption of four key reactive functional groups (–CH 2 , –CH 3 , C=O, and –COOH) during long-term oxidation. Compared with MgCl 2 , the two natural antioxidants—resveratrol and tea polyphenols—exhibit stronger inhibitory effects, particularly on aliphatic side chains (–CH 2 and –CH 3 ), with tea polyphenols achieving a maximum inhibition rate of 58.34% for –CH 2 groups. In addition, resveratrol shows more pronounced inhibition toward carbonyl (C=O) groups, whereas tea polyphenols exhibit greater selectivity toward carboxyl (–COOH) groups, with maximum inhibition rates of 35.12% and 46.61%, respectively. Overall, MgCl 2 demonstrates comparatively weaker inhibitory performance. These results confirm that inhibitors suppress coal spontaneous combustion primarily by disrupting chain-reaction pathways and reducing the concentration of reactive functional groups.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69a134dded1d949a99abe4f0https://doi.org/10.1016/j.csite.2026.107862
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