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Effects of Oxygen Staging and Excess Oxygen on O2/CO2 Combustion with a High Oxygen Concentration in a Circulating FSuidized Bed

机译:氧气分段和过量氧对O2 / CO2燃烧的影响在循环的循环中具有高氧浓度的燃烧

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To investigate the effects of oxygen staging and excess oxygen on combustion performance and gaseous pollutant emission, oxy-fuel combustion experiments with Datong coal were carried out in a 0.1 MW_(th) oxy-fuel circulating fluidized-bed combustion (CFBC) apparatus under an O2/CO2 atmosphere with a total O2 concentration of 50%. The resulting CO2 concentration was higher than 90% in the flue gas under most experimental conditions. In oxy-fuel combustion, oxygen-staging combustion is a new, effective, and safe method for improving coal combustion performance, although flow-staging combustion remains effective. CO initially increased and then decreased, while SO2 and NO decreased, with an increasing oxygen concentration in the primary flow. The SO2 concentration increased, while NO decreased, with an increasing secondary flow ratio. Thus, the excess oxygen ratio is an important factor on oxy-fuel combustion. A higher excess oxygen ratio improves coal combustion efficiency and inhibits SO2 emissions while increasing NO emission.
机译:为了研究氧分量和过量氧气对燃烧性能和气态污染物排放的影响,在0.1MW_(TH)氧燃料循环流化床燃烧(CFBC)装置中进行大同煤的氧燃料燃烧实验O 2 / CO2气氛总O2浓度为50%。在大多数实验条件下,所得二氧化碳浓度高于烟道气中的90%。在氧气燃料燃烧中,氧气分期燃烧是一种新的,有效和安全的改善煤燃烧性能的方法,尽管流动稳定仍然有效。 CO最初增加然后减少,而SO2和NO减小,初级流动中的氧浓度增加。 SO2浓度增加,而没有降低,具有增加的二次流量比。因此,过量的氧比是氧燃料燃烧的重要因素。氧气比较高提高煤燃烧效率并抑制SO2排放,同时不增加排放。

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