首页> 外文期刊>Journal of the Japan Petroleum Institute >Effect of Tar-adsorbing Particles on Tar Components Generated by Lignite Gasification in a Fluidized Bed Gasifier
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Effect of Tar-adsorbing Particles on Tar Components Generated by Lignite Gasification in a Fluidized Bed Gasifier

机译:焦油吸附颗粒对流化床气化器中褐煤气化产生的焦油组分的影响

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摘要

In a dual fluidized bed gasifier suitable for gasification of lignite, tar is generated as the raw material is gasified because the gasification reaction has at 1073-1173 K, which is a relatively low temperature, and there is a problem such as tar adhering to the piping of the cooling system in the subsequent stage. In this study, in order to reduce tar in the gasification of lignite, porous alumina particles were applied as a tar adsorbent to the upper stage of a laboratory-scale two-stage fluidized bed gasifier, and the gasification characteristics of the produced gas and the tar components were analyzed and its effect was investigated. From the analysis results of tar components using gas chromatograph mass spectrometry (GC/MS) and field desorption mass spectrometry (FD-MS), the tar components obtained under the respective gasification conditions of pyrolysis and steam were almost no difference, and the main components of tar were polycyclic aromatic hydrocarbons without substituents. It was also found that the main components of tar can be sufficiently identified by GC/MS analysis alone. The application of the porous alumina particles increased the gas yields due to the cracking effect of tar. Furthermore, it was confirmed that the gas yields increased under the steam gasification condition rather than pyrolysis condition, and the gasification reactions were promoted by steam. From these results, it is considered that the porous alumina particles are effective in reducing tar, and as a reformer using this, a dual-type reformer capable of using the tar adsorbent for a long period of time is suitable.
机译:在适合褐煤气化的双流化床气化炉中,原料气化时会产生焦油,因为气化反应温度为1073-1173 K,这是一个相对较低的温度,并且存在焦油粘附在后续阶段冷却系统管道上的问题。为了减少褐煤气化过程中的焦油,本研究将多孔氧化铝颗粒作为焦油吸附剂应用于实验室规模的两段流化床气化炉的上部,分析了产气和焦油组分的气化特性,并研究了其效果。从气相色谱-质谱(GC/MS)和现场解吸质谱(FD-MS)对焦油组分的分析结果来看,在热解和蒸汽各自的气化条件下获得的焦油组分几乎没有差异,焦油的主要组分是不含取代基的多环芳烃。还发现,仅通过GC/MS分析就可以充分鉴定焦油的主要成分。由于焦油的裂化作用,多孔氧化铝颗粒的应用增加了气体产量。此外,还证实了在水蒸气气化条件下,而不是在热解条件下,气体产率增加,并且水蒸气促进了气化反应。从这些结果来看,多孔氧化铝颗粒在减少焦油方面是有效的,并且作为使用这种颗粒的转化炉,能够长期使用焦油吸附剂的双类型转化炉是合适的。

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