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Ignition and devolatilization of pulverized bituminous coal particles during oxygen/carbon dioxide coal combustion

机译:氧气/二氧化碳煤燃烧过程中粉碎烟煤颗粒的点火和脱挥发

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Oxygen/carbon dioxide recycle coal combustion is actively being investigated because of its potential to facilitate CO2 sequestration and to achieve emission reductions. In the work reported here, the effect of enhanced oxygen levels and CO2 bath gas is independently analyzed for their influence on single-particle pulverized coal ignition of a U.S.. eastern bituminous coal The experiments show that the presence of CO2 and a lower O2 concentration increase the ignition delay time but have no measurable effect on the time required to complete volatile combustion, once initiated. For the ignition process observed in the experiments, the CO2 results are explained by its higher molar specific heat and the O2 results are explained by the effect of O2 concentration on the local mixture reactivity Particle ignition and devolatilization properties in a mixture of 30% O2 in CO2 are very similar to those in air.
机译:积极研究氧/二氧化碳回收煤燃烧,因为它有可能促进CO 2封存并实现排放减少。在此处报告的工作中,可以独立地分析增强氧水平和CO2浴气体的影响,因为它们对美国单粒子粉煤点火的影响。东方沥青煤的实验表明CO2的存在和较低的O2浓度增加一旦发起,点火延迟时间但对完成挥发燃烧所需的时间没有可测量的影响。对于在实验中观察到的点火过程,CO 2结果通过其更高的摩尔比热解释,通过O2浓度对局部混合物反应性粒子点火和脱挥发性性质的影响来解释O 2结果,以30%O 2的混合物二氧化碳与空气中的二氧化碳非常相似。

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