Low-temperature oxidation characteristics and their association with functional-group evolution of long-flame coal subjected to water-immersion pretreatment at different temperatures

Residual coal in deep goafs may show altered low-temperature oxidation behavior after water immersion, drainage, and drying. To distinguish the effect of pretreatment temperature from the additional differences associated with water immersion, long-flame coal was subjected to dry and water-immersion pretreatments at 25, 35, 50, and 65 °C, with three independent sample batches prepared for each condition. Temperature-programmed oxidation, in situ FTIR spectroscopy, apparent kinetic analysis, Pearson correlation analysis, and grey relational analysis (GRA) were used to characterize oxidation behavior and functional-group evolution. Increasing dry pretreatment temperature enhanced subsequent oxidation, and the oxygen consumption rate of D65 at 200 °C was 25.2% higher than that of D25. Compared with D65, S65 showed a 33.3% higher oxygen consumption rate at 200 °C and 51.0% and 29.8% higher CO and CO 2 concentrations, respectively, at 130 °C. Two-way ANOVA showed significant interactions between treatment mode and pretreatment temperature for the three macroscopic oxidation indicators (P < 0.05). In situ FTIR results showed that pretreatment altered the initial relative intensities and temperature-dependent changes of –OH, aliphatic structures, C=O, phenolic C–O, and aromatic ether C–O–C. Pearson analysis showed significant correlations between functional-group evolution and CO and CO 2 evolution (P < 0.01), with –CH 2 – generally showing relatively strong correlations. GRA showed stage-dependent associations between functional-group evolution and gas evolution, while the top-ranked functional group varied in some independent replicate analyses. These results provide an experimental basis for distinguishing pretreatment-temperature effects from the additional differences associated with water immersion, filtration, and redrying under the present experimental conditions.

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Publication Details

Journal
Case Studies in Thermal Engineering
Published
2026-09-28
DOI
https://doi.org/10.1016/j.csite.2026.108581
Primary Topic
Coal Properties and Utilization
Type
article
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Low-temperature oxidation characteristics and their association with functional-group evolution of long-flame coal subjected to water-immersion pretreatment at different temperatures

Xiaodong Zhang
Case Studies in Thermal Engineering
Coal Properties and Utilization
article

Low-temperature oxidation characteristics and their association with functional-group evolution of long-flame coal subjected to water-immersion pretreatment at different temperatures

Xiaodong Zhang
article en

Abstract

Residual coal in deep goafs may show altered low-temperature oxidation behavior after water immersion, drainage, and drying. To distinguish the effect of pretreatment temperature from the additional differences associated with water immersion, long-flame coal was subjected to dry and water-immersion pretreatments at 25, 35, 50, and 65 °C, with three independent sample batches prepared for each condition. Temperature-programmed oxidation, in situ FTIR spectroscopy, apparent kinetic analysis, Pearson correlation analysis, and grey relational analysis (GRA) were used to characterize oxidation behavior and functional-group evolution. Increasing dry pretreatment temperature enhanced subsequent oxidation, and the oxygen consumption rate of D65 at 200 °C was 25.2% higher than that of D25. Compared with D65, S65 showed a 33.3% higher oxygen consumption rate at 200 °C and 51.0% and 29.8% higher CO and CO 2 concentrations, respectively, at 130 °C. Two-way ANOVA showed significant interactions between treatment mode and pretreatment temperature for the three macroscopic oxidation indicators (P < 0.05). In situ FTIR results showed that pretreatment altered the initial relative intensities and temperature-dependent changes of –OH, aliphatic structures, C=O, phenolic C–O, and aromatic ether C–O–C. Pearson analysis showed significant correlations between functional-group evolution and CO and CO 2 evolution (P < 0.01), with –CH 2 – generally showing relatively strong correlations. GRA showed stage-dependent associations between functional-group evolution and gas evolution, while the top-ranked functional group varied in some independent replicate analyses. These results provide an experimental basis for distinguishing pretreatment-temperature effects from the additional differences associated with water immersion, filtration, and redrying under the present experimental conditions.

Case Studies in Thermal EngineeringVol. 87
Taiyuan University of Technology (CN)
Clean water and sanitation
Openalex Percentile: Top 15%
Coal Properties and Utilization
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Low-temperature oxidation characteristics and their association with functional-group evolution of long-flame coal subjected to water-immersion pretreatment at different temperatures — Xiaodong Zhang · Case Studies in Thermal Engineering (2026) | TGRS Research Map | TGRS