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Modeling and simulation of carbon black synthesis in an aerosol flame reactor

机译:气溶胶火焰反应器中炭黑合成的建模与仿真

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Carbon black has diverse industrial applications such as a reinforcing agent in tires and as a black pigment in printing inks. Flame aerosol synthesis is the commonly employed route for large scale production of carbon black. A coupled flame dynamics - monodisperse population balance model for the synthesis of carbon black in an aerosol flame reactor is presented here. The population balance model was incorporated into the commercial computational fluid dynamics software CFX to simulate the effect of flame dynamics on particle synthesis. The model was tested with published experimental data for acetylene black synthesis'through oxidative thermal decomposition of acetylene with oxygen in a premixed flame reactor. The predicted axial temperature profiles at different equivalence ratios (actual acetylene/oxidizer ratio divided by stoichiometric acetylene/oxidizer ratio) were reasonably close to experimental data. The effect of the equivalence ratio on process parameters like maximum temperature of the flame, specific surface area of particles and flame structure was investigated. It was observed that the maximum temperature of the flame and specific surface area of carbon black particles decrease upon increasing the equivalence ratio which is in agreement with published experimental studies. Simulation results are also presented for carbon black synthesis in a diffusion flame reactor with different burner designs.
机译:炭黑具有多种工业应用,例如轮胎中的增强剂和印刷油墨中的黑色颜料。火焰气溶胶合成是大规模生产炭黑的常用途径。这里提出了一个耦合的火焰动力学-单分散总体平衡模型,用于在气溶胶火焰反应器中合成炭黑。人口平衡模型被合并到商业计算流体动力学软件CFX中,以模拟火焰动力学对颗粒合成的影响。该模型用已发布的实验数据测试了乙炔黑的合成,该乙炔黑是通过在预混合火焰反应器中用氧气对乙炔进行氧化热分解而合成的。在不同当量比(实际乙炔/氧化剂比除以化学计量乙炔/氧化剂比)下预测的轴向温度分布合理接近实验数据。研究了当量比对工艺参数如火焰最高温度,颗粒比表面积和火焰结构的影响。观察到当增加当量比时,火焰的最高温度和炭黑颗粒的比表面积降低,这与公开的实验研究一致。还给出了具有不同燃烧器设计的扩散火焰反应器中炭黑合成的模拟结果。

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