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Effect of Silica and Alumina Ratio on Bed Agglomeration During Fluidized Bed Gasification of Rice Straw

机译:稻草流化床气化过程中硅铝比对床团聚的影响。

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Bed agglomeration is one operational challenge during fluidized bed gasification when rice straw is used as raw materials. Rice straw contains high potassium and other components which may lower ash melting point causing bed agglomeration. This study focused on the effect of alumina and silica ratio of bed materials in fluidized bed gasifier. The ratio of alumina bed was 0, 0.25, 0.50, 0.75 and 1.0. The experiments were performed at 700, 800 and 900°C with equivalence ratio (ER) of 0.2. Rice straw size 425-850 μm was used as raw materials. The result showed that the high ratio of alumina deceased bed agglomeration at 700°C. However, similar alumina ratio increased bed agglomeration at 800 and 900°C. In addition, the effect of temperature on defluidization time was significant. As the operating temperature increased, the defluidization time decreased. Although the ratio of the bed material was different but the result of defluidization time show a similar trend. As a result, high operating temperature may not suitable for fluidized bed gasification with this particular biomass. The SEM/EDS analyzed showed that potassium, calcium and silicate are major element in a linkage between bed particles. As a result, 75% of alumina bed ratio at 700°C was sufficient to avoid bed agglomeration during fluidized bed gasification of rice straw. In conclusion, specific ratio of alumina and silica can prevent agglomeration in fluidized bed gasification of rice straw when operating temperature lower than apparent eutectic melting point of involved alkalis from rice straw. The result from this investigation may lead to options on mitigating the problem of bed agglomeration in fluidized bed gasifier of rice straw.
机译:当以稻草为原料时,流化床气化过程中的床结块是一项操作难题。稻草含有高钾和其他成分,这些成分可能会降低灰分熔点,从而导致床层结块。该研究集中于流化床气化炉中床料中氧化铝和二氧化硅的比例的影响。氧化铝床的比例为0、0.25、0.50、0.75和1.0。实验在700、800和900°C下进行,当量比(ER)为0.2。稻草的大小为425-850μm。结果表明,高比例的氧化铝使床在700℃下结块。然而,相似的氧化铝比例在800和900°C下增加了床的团聚。另外,温度对脱液时间的影响是显着的。随着工作温度的升高,脱液时间缩短。尽管床料的比例不同,但是脱液时间的结果显示出相似的趋势。结果,高的操作温度可能不适合用这种特定的生物质进行流化床气化。 SEM / EDS分析表明,钾,钙和硅酸盐是床​​颗粒之间键合中的主要元素。结果,在700℃下75%的氧化铝床率足以避免稻草流化床气化期间的床附聚。总之,当操作温度低于稻草中所含碱的表观共熔熔点时,氧化铝和二氧化硅的特定比例可防止稻草流化床气化中的团聚。该研究的结果可能导致减轻稻草流化床气化炉中床附聚问题的选择。

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