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Laboratory evaluation of a gasifier particle sampling system using model compounds of different particle morphology

机译:使用不同颗粒形态的模型化合物对气化器颗粒采样系统进行实验室评估

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摘要

The objective of this work was to design and evaluate an experimental setup to be used for field studies of particle formation in biomass gasification processes. The setup includes a high-temperature dilution probe and a denuder to separate solid particles from condensable volatile material. The efficiency of the setup to remove volatile material from the sampled stream and the influence from condensation on particles with different morphologies is presented. In order to study the sampling setup model, aerosols were created with a nebulizer to produce compact and solid KCl particles and a diffusion flame burner to produce agglomerated and irregular soot particles. The nebulizer and soot generator was followed by an evaporation–condensation section where volatile material, dioctylsebacete (DOS), was added to the system as a tar model compound. The model aerosol particles were heated to 200°C to create a system containing both solid particles and volatile organic material in gas phase. The heated aerosol particles were sampled and diluted at the same temperature with the dilution probe. Downstream the probe, the DOS was adsorbed in the denuder. This was achieved by slowly decreasing the temperature of the diluted sample towards ambient level in the denuder. Thereby the supersaturation of organic vapors was reduced which decreased the probability for tar condensation and nucleation of new particles. Both the generation system and the sampling technique gave reproducible results. A DOS collection efficiency of >99% was achieved if the denuder inlet concentration was diluted to less than 1–6 mg/m3 depending on the denuder flow rate. Concentrations higher than that lead to significant impact on the resulting KCl size distribution. The choice of model compounds was done to study the effect from the particle morphology on the achieved particle characteristics after the sampling setup. When similar amounts of volatile material condensed on soot agglomerates and compact particles, a substantially smaller growth in mobility diameter was found for soot compared with compact KCl.
机译:这项工作的目的是设计和评估一种用于在生物质气化过程中对颗粒形成进行现场研究的实验装置。该装置包括一个高温稀释探针和一个剥蚀仪,用于将固体颗粒与可冷凝的挥发性物质分离。展示了从采样流中去除挥发性物质的设置效率以及冷凝对具有不同形态的颗粒的影响。为了研究采样设置模型,使用雾化器产生气雾剂以产生致密且固态的KCl颗粒,并使用扩散火焰燃烧器产生气雾剂以产生团聚且不规则的烟灰颗粒。雾化器和烟灰发生器之后是蒸发冷凝段,在该段中,挥发性物质二辛基六乙醋(DOS)作为焦油模型化合物添加到系统中。将模型气溶胶颗粒加热到200°C,以创建同时包含固体颗粒和气相挥发性有机物质的系统。采样加热的气溶胶颗粒,并在相同温度下用稀释探针稀释。在探针的下游,DOS被吸附在剥蚀器中。这是通过将稀释样品的温度缓慢降低至裸露仪中的环境温度来实现的。因此,减少了有机蒸气的过饱和,这降低了焦油凝结和新颗粒成核的可能性。生成系统和采样技术都可重现结果。如果将裸露器的入口浓度稀释至小于1-6 mg / m3(取决于裸露器的流速),则DOS收集效率可达到> 99%。浓度高于该浓度会对所得的KCl尺寸分布产生重大影响。进行了模型化合物的选择,以研究采样设置后颗粒形态对获得的颗粒特性的影响。当类似量的挥发性物质凝结在烟灰团聚体和致密颗粒上时,与致密KCl相比,发现了烟尘的迁移直径显着减小。

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