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Development of a hybrid shrinking-core shrinking-particle model for entrained-flow gasifiers

机译:气流床气化炉混合收缩核收缩颗粒模型的建立

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Slagging entrained-flow gasifiers operate above the melting temperature of the ash. As slag is highly nonwetting on the surface of char (carbon) particles, it is likely that it will agglomerate into one or several slag droplets and some of these droplets can detach from the char particles. If the slag exists in the form of droplets on the char surface rather than as a solid shell around the unreacted char particle, a shrinking particle model would be more physically realistic representation in comparison to the widely used shrinking core model (SCM). In the early section of the gasifier, the temperature remains below the ash melting temperature and, therefore, the SCM is more appropriate in this region. With this motivation, a novel hybrid shrinking-core shrinking-particle model has been developed. The model provides spatial profile of a number of important variables that are not available from the traditional SCM. (c) 2015 American Institute of Chemical Engineers AIChE J, 62: 659-669, 2016
机译:炉渣气流床气化炉在灰烬的熔化温度以上运行。由于炉渣在炭(碳)颗粒的表面上高度不润湿,因此很可能会聚集成一个或几个炉渣液滴,这些液滴中的一些会从炭颗粒上脱离。如果炉渣以焦炭表面上的小滴形式而不是未反应炭颗粒周围的固体壳形式存在,则与广泛使用的收缩核模型(SCM)相比,收缩颗粒模型将在物理上更真实。在气化炉的早期阶段,温度保持在灰烬熔化温度以下,因此,SCM在该区域更合适。以此动机为基础,开发了一种新型的混合收缩核收缩颗粒模型。该模型提供了许多重要变量的空间分布图,而传统SCM无法提供这些变量。 (c)2015美国化学工程师学会AIChE J,62:659-669,2016

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