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Combustion characteristics of paper mill sludge in a lab-scale combustor with internally cycloned circulating fluidized bed

机译:内循环循环流化床实验室规模燃烧室中造纸厂污泥的燃烧特性

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摘要

After performing a series of batch type experiments using a lab-scale combustor, consideration was given to the use of an internally cycloned circulating fluidized bed combustor (ICCFBC) for a paper mill sludge. Operation parameters including water content, feeding mass of the sludge, and secondary air injection ratio were varied to understand their effects on combustion performance, which was examined in terms of carbon conversion rate (CCR) and the emission rates of CO, C_xH_y and NO_x. The combustion of paper mill sludge in the ICCFBC was compared to the reaction mechanisms of a conventional solid fuel combustion, characterized by kinetics limited reaction zone, diffusion limited reaction zone, and transition zone. The results of the parametric study showed that a 35 percent water content and 60 g feeding mass generated the best condition for combustion. Meanwhile, areal mass burning rate, which is an important design and operation parameter at an industrial scale plant, was estimated by a conceptual equation. The areal mass burning rate corresponding to the best combustion condition was approximately 400 kg/h m~(-1) for 35 percent water content. The secondary air injection generating swirling flow enhanced the mixing between the gas phase components as well as the solid phase components, and improved the combustion efficiency by increasing the carbon conversion rate and reducing pollutant emissions.
机译:在使用实验室规模的燃烧器进行一系列分批式实验后,考虑将内部循环循环流化床燃烧器(ICCFBC)用于造纸厂的污泥。改变了操作参数,包括水含量,污泥的进料质量和二次空气喷射比,以了解它们对燃烧性能的影响,并根据碳转化率(CCR)以及CO,C_xH_y和NO_x的排放率进行了检查。将ICCFBC中造纸厂污泥的燃烧与常规固体燃料燃烧的反应机理进行了比较,其特征在于动力学受限的反应区,扩散受限的反应区和过渡区。参数研究的结果表明,含水量35%和进料质量60 g产生了最佳燃烧条件。同时,通过概念方程估算了面积燃烧速率,这是工业规模工厂的重要设计和运行参数。水分含量为35%时,与最佳燃烧条件相对应的单位面积燃烧速率约为400 kg / h m〜(-1)。产生涡流的二次空气喷射增强了气相组分和固相组分之间的混合,并通过提高碳转化率和减少污染物排放而提高了燃烧效率。

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