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A study of oxy-coal combustion with steam addition and biomass blending by thermogravimetric analysis

机译:热重分析法研究增氧加生物质混合制氧煤燃烧

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摘要

The thermal characteristics of pulverized coal have been studied under oxy-fuel combustion conditions using non-isothermal thermogravimetric analysis (TG). The atmospheres used were 21%O2/79%N2, 21%O2/79%CO2, 30%O2/70%O2, and 35%O2/65%CO2. Coal blends of coal with 10 and 20% of biomass were also studied under these atmospheres. The addition of 10 and 20% of steam was evaluated for the oxy-fuel combustion atmospheres with 21 and 30% of O2 in order to study the effect of the wet recirculation of flue gas. The results obtained were similar for all the different rank coals and indicated that replacing N2 by CO2 in the combustion atmosphere with 21% of O2 caused a slight decrease in the rate of mass loss and delayed the burning process of the coal, biomass and coal/biomass blend samples. When the O2 concentration was increased to 30 and 35% in the oxy-fuel combustion atmosphere, the rate of mass loss increased, the burning process occurred at lower temperatures and it was shorter in duration. An increase in the rate of mass loss and a reduction in burning time and temperature were observed after the addition of steam to the oxy-fuel combustion atmosphere. No relevant differences between the 10 and 20% steam concentrations were observed.
机译:使用非等温热重分析(TG),研究了在氧气-燃料燃烧条件下粉煤的热特性。使用的气氛是21%O2 / 79%N2、21%O2 / 79%CO2、30%O2 / 70%O2和35%O2 / 65%CO2。在这些环境下,还研究了煤与10%和20%的生物质的煤共混物。在含氧量为21和30%的氧气燃料燃烧气氛中,对添加10%和20%的蒸汽进行了评估,以研究烟道气湿循环的影响。对于所有不同等级的煤,获得的结果均相似,表明在燃烧气氛中用21%O2用CO2替代N2会导致质量损失率略有下降,并延迟了煤,生物质和煤的燃烧过程。生物质混合样品。当在氧气-燃料燃烧气氛中将O2浓度增加到30和35%时,质量损失率增加,燃烧过程发生在较低温度下,持续时间较短。在将蒸汽添加到含氧燃料的燃烧气氛中之后,观察到质量损失速率的增加以及燃烧时间和温度的降低。在10%和20%的蒸汽浓度之间未观察到相关差异。

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