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Modeling of calcium-based sorbent reactions with sulfur dioxide

机译:基于钙的吸附剂与二氧化硫反应的建模

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A mathematical model of calcium sorbent reactions for simulation of sulfur dioxide reduction from pulverized coal combustion fl e gasses is developed, implemented within numerical code and validated against available measurements under controlled conditions. The model attempts to closely resemble reactions of calcination, sintering and sulfation, occurring during the sorbent particles motion in the furnace. The sulfation is based on PSSM (Partially Sintered Spheres Model), coupled with simulated particle calcination and sintering. Complex geometry of the particle is taken into account, with the assumption that it consists of spherical grains in contact with each other. Numerical simulations of drop down tube reactors were performed for both CaCO3 and Ca(OH)2 sorbent particles and results were compared with available experimental data from literature. The sorbent reactions model will be further used for simulations of desulfurization reactions in turbulent gas-particle flow under coalcombustion conditions. [Projekat Ministarstva nauke Republike Srbije, br. TR-33018: Increase in energy and ecology efficiency of processes in pulverized coal-fired furnace and optimization of utility steam boiler air preheater by using in-house developed software tools]
机译:建立了钙吸附剂反应的数学模型,用于模拟煤粉燃烧烟气中的二氧化硫还原反应,并在数字代码中实现该模型,并针对可控条件下的可用测量进行了验证。该模型试图非常类似于吸附剂在炉内运动期间发生的煅烧,烧结和硫酸化反应。硫酸化基于PSSM(部分烧结球模型),并结合了模拟的颗粒煅烧和烧结。考虑到颗粒的复杂几何形状,并假设其由相互接触的球形颗粒组成。对CaCO3和Ca(OH)2吸附剂颗粒均进行了下拉管式反应器的数值模拟,并将结果与​​文献中的可用实验数据进行了比较。吸附剂反应模型将进一步用于模拟燃煤条件下湍流气体颗粒流中的脱硫反应。 [Projekat Ministarstva nauke Republike Srbije,br。 TR-33018:使用内部开发的软件工具,提高粉煤燃烧炉过程的能源和生态效率,并优化公用蒸汽锅炉空气预热器]

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