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Coal oxidation at low temperatures: oxygen consumption, oxidation products, reaction mechanism and kinetic modelling

机译:低温下的煤氧化:耗氧量,氧化产物,反应机理和动力学模型

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Coal oxidation at low temperatures (i.e. < 100℃) is the major heat source responsible for the self-healing and spontaneous combustion of coal and is an important source of greenhouse gas emissions. This review focuses on the chemical reactions occurring during low-temperature oxidation of coal. Current understanding indicates that this process involves consumption of O_2, formation of solid oxygenated complexes, thermal decomposition of solid oxygenated complexes and generation of gaseous oxidation products. Parameters, such as mass change, heat release, oxygen consumption, and formation of oxidation products in the gas or solid phase, have been used to qualitatively and quantitatively describe the oxidation process. Reaction mechanisms have been proposed to explain the characteristics of consumption of O_2, and formation of oxidation products in the gas and solid phases. Various kinetic models have also been developed to describe the rate of oxygen consumption and the rates of formation of gaseous oxidation products in terms of the rate parameters of the relevant reactions, oxidation time, temperature, and initial concentration of oxygen in the oxidising medium. Further research emphasis should be placed on the formation of the complete reaction pathways proceeding in the oxidation process and on the development of kinetic models applicable for predicting the self-heating and gas emission in a coal seam or stockpile.
机译:低温(<100℃)下的煤氧化是负责煤的自愈和自燃的主要热源,也是温室气体排放的重要来源。这篇综述着重于煤低温氧化过程中发生的化学反应。当前的理解表明,该过程涉及O 2的消耗,固体氧化配合物的形成,固体氧化配合物的热分解以及气态氧化产物的产生。已经使用诸如质量变化,放热,氧气消耗以及在气相或固相中形成氧化产物的参数来定性和定量地描述氧化过程。已经提出了反应机理来解释O 2消耗的特征以及气相和固相中氧化产物的形成。还已经开发了各种动力学模型,以根据相关反应的速率参数,氧化时间,温度和氧化介质中氧气的初始浓度来描述氧气消耗的速率和气态氧化产物的形成速率。进一步的研究重点应放在形成氧化过程中进行的完整反应路径上,并发展适用于预测煤层或煤层中自热和瓦斯释放的动力学模型。

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