Pan Shu , Yanni Zhang , Lan Yu , Xiaoqian yuchi , Yanju Li , Yating Zhang , Quankang Li
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引用次数: 0
Abstract
To explore the effects of different antioxidants on thermal behavior characteristics of coal spontaneous combustion (CSC), four antioxidants including tea polyphenols, ethylenediaminetetraacetic acid, melatonin, and β-beta-carotene were studied in this paper. The thermal effects and changes in thermal property parameters of coal treated with different antioxidants were obtained by differential scanning calorimetry experiments and thermal property parameter testing experiments. The results reveal that the effect of antioxidants on heat released by coal oxidation is mainly reflected in slow heat release stage. Among them, tea polyphenols have the most significant effect on inhibiting CSC, manifested by an increase of 14.8 °C in initial heat release temperature, a maximum increase of 109.8 kJ/mol in activation energy during this stage, and an effective reduction of 791.5 J/g in heat release. Compared with original coal sample, thermal diffusivity and conductivity of antioxidant-treated coal sample are lower, and specific heat capacity is higher. Furthermore, the thermal effect of antioxidant inhibition of key free radical (• OH) reactions was determined using quantum chemistry methods. Results indicate that during the process of reducing • OH, the main reaction occurring is hydrogen abstraction reaction of • OH on active sites of antioxidants. This is an exothermic reaction and must carry out at a certain temperature. Provide theoretical basis for the development of efficient resistive materials.
期刊介绍:
Case Studies in Thermal Engineering provides a forum for the rapid publication of short, structured Case Studies in Thermal Engineering and related Short Communications. It provides an essential compendium of case studies for researchers and practitioners in the field of thermal engineering and others who are interested in aspects of thermal engineering cases that could affect other engineering processes. The journal not only publishes new and novel case studies, but also provides a forum for the publication of high quality descriptions of classic thermal engineering problems. The scope of the journal includes case studies of thermal engineering problems in components, devices and systems using existing experimental and numerical techniques in the areas of mechanical, aerospace, chemical, medical, thermal management for electronics, heat exchangers, regeneration, solar thermal energy, thermal storage, building energy conservation, and power generation. Case studies of thermal problems in other areas will also be considered.