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An experimental and theoretical investigation of combustion efficiency in a circulating fluidized bed, organic liquid incinerator.

机译:在循环流化床有机液体焚化炉中燃烧效率的实验和理论研究。

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An incinerator's combustion efficiency (CE) indicates the effectiveness of the incinerator to completely oxidize waste. Circulating fluidized beds (CFB's) show promise as a viable hazardous waste incineration process, but to fulfill this promise, an understanding of the interaction between CE and important operating parameters is still needed.; To gain this understanding, an experimental and a theoretical investigation of CFB incineration was performed. A CFB incinerator was constructed to study the destruction of an organic liquid waste. An experimental program on incineration was conducted with propanol as the simulated waste. Operating data on the dependence of CE as a function of major operating parameters such as excess air, average particle size, and primary air/total air ratio for this facility is presented.; A theoretical process model specific to CFB incineration of an organic liquid waste is developed, and the numerical implementation of the model is presented. Model constants are fitted with experimental data so the process model specifically describes the CFB pilot plant. Process sensitivity to major operating parameters is investigated in series of simulations. Design configurations slightly different from the experimental CFB such as the column height and preheat temperature of combustion air are also studied with the model.
机译:焚化炉的燃烧效率(CE)表示焚化炉完全氧化废物的效率。循环流化床(CFB)显示出作为可行的危险废物焚烧过程的希望,但是要实现这一承诺,仍然需要了解CE和重要操作参数之间的相互作用。为了获得这种理解,进行了CFB焚烧的实验和理论研究。建造了CFB焚烧炉,以研究有机液体废物的破坏。用丙醇作为模拟废物进行了焚烧实验程序。给出了关于CE与主要操作参数的函数关系的操作数据,该主要操作参数例如过量空气,平均粒径和该设备的一次空气/总空气比。建立了针对CFB焚烧有机废液的理论过程模型,并给出了该模型的数值实现。模型常数与实验数据拟合,因此过程模型专门描述了CFB中试工厂。通过一系列仿真研究了对主要操作参数的过程敏感性。该模型还研究了与实验CFB稍有不同的设计配置,例如柱高和燃烧空气的预热温度。

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