Preliminary study for the suitability of eucalyptus chips and coal for combustion in a fluidized bed reactor

Angenor Auler, Matheus Vilares Mem de Sá, P. Eichler, Jaqueline Lidorio de Mattia, Guilherme Costa da Silva, Guilherme De Souza, F. Santos
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Abstract

The combustion with fluidized bed reactors has as main advantages the best energy utilization of combustible materials and a lower generation of pollutants. The fluidization success depends on the characteristics of the particles that compose the bed. This research aimed to perform a preliminary evaluation and characterization of the energy potential and the fluidization curves in fluidized beds formed by binary mixtures of eucalyptus chips + sand and mineral coal + sand. We tested: 1) physical characterization of solid fuels; 2) chemical characterization of combustible materials; 3) thermogravimetric analysis of fuels; 4) determination of the fluidization curves and minimum fluidization velocity for a polydisperse bed. We observed 19.15 MJ kg-1 of lower calorific value for eucalyptus chips and 10.1 MJ kg-1 for coal. The increase in biomass percentage in mixture caused a pressure drop in bed, indicating the formation of preferred paths and a necessity to increase fluid velocity. The fluidization of coal and Eucalyptus chips can be viable in a bubbling fluid bed process, motivating future theoretical and experimental studies involving the application of this methodology in the development of clean and sustainable technologies.
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桉树木屑和煤在流化床反应器中燃烧适应性的初步研究
流化床反应器的燃烧具有可燃材料的最佳能量利用和较低的污染物产生的主要优点。流化的成功取决于组成床的颗粒的特性。本研究旨在对桉树屑+沙子和矿物煤+沙子二元混合物形成的流化床中的能量潜力和流化曲线进行初步评估和表征。我们测试了:1)固体燃料的物理特性;2) 可燃材料的化学特性;3) 燃料的热重分析;4) 多分散床流化曲线和最小流化速度的测定。我们观察到桉树片的低热值为19.15 MJ kg-1,煤的低热值则为10.1 MJ kg-1。混合物中生物质百分比的增加导致床中的压力下降,表明形成了优选的路径,并且有必要提高流体速度。煤和桉树切片的流化在鼓泡流化床工艺中是可行的,这推动了未来的理论和实验研究,包括将这种方法应用于清洁和可持续技术的开发。
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审稿时长
25 weeks
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