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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Agglomeration behaviour of high ash Indian coals in fluidized bed gasification pilot plant
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Agglomeration behaviour of high ash Indian coals in fluidized bed gasification pilot plant

机译:高灰分印度煤在流化床气化中试厂中的结块行为

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Although gasification of high ash Indian coals is gaining importance, the resultant uncertainties associated with agglomerate formation are still unresolved. To address this, a suitable pilot scale Fluidized Bed Gasifier was utilized in this study. Stabilized operating conditions in terms of coal feed rate, air feed rate, bed temperature, etc., already identified for maximum possible carbon conversion, were maintained in all experiments and the steam flow rate was only varied. Though the ash fusion temperature of the coals were above 1200 degrees C, agglomerate was formed during gasification at 950 degrees C with 'steam to coal ratio' less than 0.15 (kg/kg). On increasing this ratio above 0.2 local heat-concentration and agglomeration could be avoided with certainty. Chemical composition alone was not sufficient to explain the relative strength of ash-agglomerates. Compositional variation and state of iron within the matrix were assessed through SEM-EDX and electron paramagnetic resonance (EPR) study, respectively. The probing also required the ash-loading and iron-loading factors to be freshly defined in the context of gasification. Localized heat, large compositional variation, presence of iron in Fe2+ state, ash-loading/iron-loading factors influenced intensity of agglomerate formation. Finally, low temperature agglomerate formation was explained by SiO2-Al2O3-FeO phase diagram. (C) 2015 Elsevier Ltd. All rights reserved.
机译:尽管高灰分印度煤的气化变得越来越重要,但与团聚体形成相关的不确定性仍未解决。为了解决这个问题,在这项研究中使用了合适的中试规模的流化床气化炉。在所有实验中,为了最大可能的碳转化,已经确定了煤进料速率,空气进料速率,床温等方面稳定的操作条件,并且仅改变了蒸汽流量。尽管煤的灰分熔融温度高于1200摄氏度,但在950摄氏度的气化过程中形成了团聚体,“汽煤比”小于0.15(kg / kg)。在将该比率增加到0.2以上时,可以确定地避免局部热量集中和团聚。仅仅化学组成不足以解释灰分附聚物的相对强度。分别通过SEM-EDX和电子顺磁共振(EPR)研究评估了基质中铁的组成变化和状态。探测还要求在气化的背景下重新定义灰分和铁分载的因素。局部热量,大的组成变化,Fe2 +状态下铁的存在,灰分/铁负荷因素影响团聚体形成的强度。最后,通过SiO 2 -Al 2 O 3 -FeO相图解释了低温附聚物的形成。 (C)2015 Elsevier Ltd.保留所有权利。

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