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The modeling of the combustion of high-ash coal-char particles suitable for pressurised fluidized bed combustion: shrinking reacted core model

机译:适用于加压流化床燃烧的高灰煤焦颗粒燃烧模型:收缩反应堆芯模型

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An investigation was undertaken involving the combustion of high-ash coal/char particles under conditions suitable for pressurised fluidised bed combustion, in order to evaluate an overall combustion model. The use of very poor quality feedstocks (greater than 40 percent ash, low calorific value and high sulphur content) in conventional pulverised fuel combustors (PFC) could be technically difficult and uneconomical, and has the associated disadvantage of generating gaseous pollutants. Pressurised fluidised bed combustion (PFBC) which is an attractive alternative process and which uses millimetre-sized coal particles is increasing in use on a commercial scale and is the basis for several clean coal technology processes. A Thermogravimetic Analyser (TGA) was used for the experimentation, which was capable of handling relatively large coal/char particles at high pressures and temperatures. Experimentation with prepared coal/chars particles with a diameter of 3 mm at a pressure of 487 kPa and temperatures between 750 and 950 deg C was carried out. For the determination of the overall kinetics of combustion it was found necessary to deviate from the established methods (surface-based reaction) and that it was essential to incorporate diffusion in the overall reaction model. Also, the concept of carbon concentration variation in the particle is introduced to account for the effect of high ash content (a mixture of carbon and minerals), instead of assuming pure carbon. This model, which consists essentially of a shrinking reactive core, was found to agree very well with experimental results and all relevant parameters required for an overall rate equation were evaluated. It is also shown that at high temperatures the shrinking reacted core model results approached the results obtained from the conventional shrinking unreacted core model.
机译:为了评估整体燃烧模型,进行了涉及在适合于加压流化床燃烧的条件下燃烧高灰分煤/焦炭颗粒的研究。在传统的粉状燃料燃烧器(PFC)中使用质量很差的原料(灰分大于40%,低热值和高硫含量)可能在技术上困难且不经济,并且具有产生气态污染物的相关缺点。加压流化床燃烧(PFBC)是一种有吸引力的替代方法,它使用毫米级的煤颗粒以商业规模使用,并且是几种清洁煤技术工艺的基础。实验使用热重分析仪(TGA),该分析仪能够在高压和高温下处理相对较大的煤/炭颗粒。在487 kPa的压力和750至950摄氏度的温度下,对直径3 mm的制得的煤/炭颗粒进行了实验。为了确定整体燃烧动力学,发现有必要偏离已建立的方法(基于表面的反应),并且必须将扩散纳入整体反应模型中。此外,引入了粒子中碳浓度变化的概念,以解释高灰分含量(碳和矿物质的混合物)的影响,而不是假定纯碳。发现该模型主要由收缩的反应堆芯组成,与实验结果非常吻合,并对整个速率方程所需的所有相关参数进行了评估。还表明,在高温下,收缩反应堆芯模型结果接近于常规收缩反应堆芯模型获得的结果。

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