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Mercury emission characteristics from coal combustion by supplying oxygen and carbon dioxide with limestone injection

机译:通过注入石灰石给氧气和二氧化碳燃烧而使煤燃烧的汞排放特性

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摘要

Coal combustion experiments at a lab-scale furnace with a capacity of 10,000 kcal/h were conducted in order to investigate the speciation changes and mass distribution of mercury with limestone injection in conditions of air and oxy-fuel combustion. Mass distribution and concentration of mercury in flue gas at oxy-fuel combustion were higher than those at air combustion. With limestone injection, the reduction of mercury from flue gas by adsorption into limestone could be clearly observed at both air and oxy-fuel combustion conditions. In the speciation of mercury, the particulate mercury in flue-gas was dominant with around 50% and the portion of elemental mercury was higher than that of oxidized mercury as shown at other coal combustion cases. At oxy-fuel combustion, most of particulate mercury seemed to be bounded to limestone more easily in comparison to air combustion, so that the elemental mercury in flue gas resulted to be more dominant at oxy-fuel combustion.
机译:为了研究在空气和含氧燃料燃烧条件下注入石灰石的汞的形态变化和质量分布,在实验室规模的炉中进行了燃煤实验,容量为10,000 kcal / h。氧燃烧时烟气中汞的质量分布和浓度高于空气燃烧时汞的质量分布和汞浓度。通过注入石灰石,可以在空气和含氧燃料燃烧条件下清楚地观察到烟气中汞通过吸附到石灰石中而减少的汞含量。在汞的形态中,烟气中的颗粒汞占主导地位,约为50%,元素汞的比例高于氧化汞,在其他煤炭燃烧案例中也是如此。在氧燃料燃烧时,与空气燃烧相比,大多数颗粒汞似乎更容易与石灰石结合,因此烟道气中的元素汞在氧燃料燃烧中占主导地位。

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