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Slagging and fouling during coal and biomass cofiring: chemical equilibrium model applied to FBC 

机译:煤和生物质共烧过程中的结渣和结垢:应用于FBC的化学平衡模型

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摘要

A thermodynamic model was applied to foresee the occurrence of fouling, slagging, and bed agglomeration phenomena during fluidized bed monocombustion of three different types of biomass, namely straw pellets, olive cake, and wood pellets. The cocombustion effect in reducing the occurrence of deposits and agglomerates of blends of 5, 15, and 25% (wt.) biomass with coal was also assessed. Chemical fractionation was applied to evaluate the reactive and nonreactive fraction of elements in the fuels, which was used to estimate their partition between the freeboard and bottom zone of the boiler. Qualitative and semiquantitative analytical techniques, namely, X-ray diffraction and scanning electronic microscopy – energy dispersive spectroscopy were used to compare the results from the simulation with the mineralogical and morphological composition of ash and deposits formed during combustion. The thermodynamic modeling revealed to be a powerful tool in foreseeing the formation of melt and liquids salts, depending on the temperature and chemical composition of fuels. The main discrepancies observed between the experimental and simulated data were due to particularities of the combustion process, which are not incorporated in the software, namely, kinetic limitations of the reactions, possible occurrence of secondary reactions in the ashes, and elutriation effects of ash and silica sand particles.
机译:应用热力学模型预测了三种不同类型的生物质(即秸秆颗粒,橄榄饼和木质颗粒)在流化床单燃烧过程中的结垢,结渣和床附聚现象的发生。还评估了减少5%,15%和25%(wt。)生物量与煤炭的混合物的沉积物和团聚体发生的共燃效果。应用化学分馏来评估燃料中元素的反应性和非反应性分数,这被用于估算其在干舷和锅炉底部区域之间的分配。使用定性和半定量分析技术,即X射线衍射和扫描电子显微镜–能量色散光谱法,将模拟结果与燃烧过程中形成的灰分和沉积物的矿物学和形态组成进行了比较。根据燃料的温度和化学成分,热力学模型是预测熔盐和液体盐形成的有力工具。在实验数据和模拟数据之间观察到的主要差异是由于燃烧过程的特殊性所致,这些特殊性未包含在软件中,即反应的动力学限制,灰烬中可能发生次要反应以及灰分和灰分的淘析效果。硅砂颗粒。

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