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EFFECT OF BED MATERIALS MIXING ON THE OBSERVED BED SINTERING

机译:床材料混合对观察到的床烧结的影响

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The most widely used bed material in the existing fluidized bed systems is silica sand.Upon burning fuels with high alkali content, such as biomass, in a bed of silica sand, alkali silicates are formed as molten glassy phase that easily stick and form agglomerates, defluidization of the reactor and unplanned operational stops.Several materials have been tested as alternative bed materials, often containing aluminate minerals.Due to the relatively high cost of such bed materials the most dominant practice is still the use of silica sand even with high alkali fuels and the bed sintering is controlled by continuous replacement of the bed material.The present study investigates the possibility of mixing bed materials and thereby optimizing the existing process by combining the low cost of silica sand with the sintering inhibiting properties of bauxite.Silica sand and bauxite were mixed in different ratios in a series of tests and were exposed to alkali compounds in a 12 MW boiler as well as in simplified experiments in a lab-scale furnace.The performance of the mixture of bed materials was then evaluated based on the tendency to chemically interact with the alkali compounds, the formation of agglomerates and the effect on the overall performance of the reactor.Thermodynamic predictions of the expected compounds at the given conditions were also used to compare with the experimentally obtained results.It was observed that mixing bed materials led to change in the observed mechanism of agglomeration and is beneficial for the fluidization.Furthermore, when calcium was present the amount of the formed alkali silicates and thereby the amount of agglomerates was decreased.It could be therewith shown that a significant improvement can be reached with existing bed materials.
机译:现有流化床系统中使用最广泛的床层材料是硅砂。在燃烧具有高碱含量的燃料(例如生物质)时,在硅砂床中会形成碱金属硅酸盐,形成熔融玻璃态,很容易粘附并形成团块,反应器的除液和计划外的运行中断已测试了几种材料作为替代床层材料,通常含有铝酸盐矿物由于这种床层材料的成本相对较高,即使在使用高碱性燃料的情况下,最主要的实践仍然是使用硅砂本研究探讨了混合床料的可能性,从而通过将低成本的硅砂和铝土矿的烧结抑制性能相结合来优化现有工艺,从而优化了现有工艺。在一系列测试中按不同比例混合,并在12 MW锅炉和在实验室规模的熔炉中进行简化的实验,然后根据与碱化合物发生化学相互作用的趋势,附聚物的形成以及对反应器整体性能的影响,评估床料混合物的性能。在给定条件下预期化合物的预测值也用于与实验获得的结果进行比较。观察到混合床物料会导致观察到的团聚机理发生变化,有利于流化。此外,当存在钙时,形成的碱金属硅酸盐的量减少,从而附聚物的量减少。由此可以表明,使用现有的床材料可以实现显着的改善。

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