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Agglomeration in fluidized beds at high temperatures: Mechanisms, detection and prevention

机译:高温流化床中的团聚:机理,检测和预防

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摘要

Fluidized-bed conversion of solid fuels is a well-established and widely used technology. Yet, operational problems are encountered in industrial practice. One of the most important problems is the occurrence of agglomeration at high temperature, meaning that bed particles adhere to each other to form larger entities (agglomerates). This process is often not recognized until sudden defluidization and often leads to a costly shutdown of the whole installation. In particular, the thermal conversion of certain biomass fuels, which is becoming increasingly popular, increases the risk of agglomeration. This paper critically reviews the current research status of this topic in terms of agglomeration mechanisms, detection and counteraction strategies. To understand the complex phenomenon of agglomeration in fluidized beds at high temperatures different areas are distinguished viz. hydrodynamics, chemical reaction mechanisms, particle interaction mechanisms and molecular cramming. Special emphasis is given to the detection of agglomeration. The range of detection methods is comprised of fuel ash analysis methods to predict potential agglomeration as well as analysis methods based on (on-line) process measurements, such as pressure and temperature. Finally, different methods to counteract agglomeration phenomena are presented; they comprise operational measures, utilization of additives, alternative bed materials and improved reactor design.
机译:固体燃料的流化床转化是一项成熟且广泛使用的技术。然而,在工业实践中会遇到操作问题。最重要的问题之一是在高温下发生团聚,这意味着床层颗粒彼此粘附形成较大的实体(团聚物)。在突然除液之前,通常无法识别该过程,并且经常导致整个安装的成本高昂的停机。特别地,越来越受欢迎的某些生物质燃料的热转化增加了附聚的风险。本文从集聚机制,检测和对抗策略等方面对本课题的研究现状进行了综述。为了理解高温下流化床中团聚的复杂现象,区分了不同的区域。流体力学,化学反应机理,颗粒相互作用机理和分子填塞。特别重视团聚的检测。检测方法的范围包括预测潜在聚集的燃料灰分分析方法以及基于(在线)过程测量值(例如压力和温度)的分析方法。最后,提出了各种防止聚集现象的方法。它们包括操作措施,添加剂的利用,替代床料和改进的反应器设计。

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