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Bed Agglomeration Characteristics during Cocombustion of Animal Waste with Municipal Solid Waste in a Bubbling Fluidized-Bed Boiler—A Thermodynamic Modeling Approach

机译:用气泡流化床锅炉在冒泡流化床锅炉中与城市固体废物的动物废物中的床池特征 - 一种热力学建模方法

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Full-scale waste combustion tests showed that adding animal waste (AW) to municipal solid waste (MSW) prevented bed agglomeration, and the reason for this finding was not fully understood. This study uses thermodynamic modeling to investigate the composition of equilibrium products for two combustion scenarios: monocombustion of MSW (the reference case) and cocombustion of AW with MSW (the AW case). The modeling was performed using FactSage, and experimental data obtained during the full-scale combustion tests were used as input data for the calculations. The results of equilibrium modeling, together with information extracted from ternary phase diagrams, suggest higher bed temperature as the primary cause for formation of bed agglomerates in the reference case. In addition, melt-induced agglomeration is suggested as the bed agglomeration mechanism in this case. In the AW case, however, reduced bed temperature, as well as enriched calcium phosphate and sulfate in the bottom ashes are considered to significantly decrease the slagging tendency.
机译:全尺寸的废物燃烧试验表明,将动物废物(AW)添加到市政固体废物(MSW)预防床附聚,并且该发现的原因尚未完全明白。本研究采用热力学建模来研究两个燃烧场景的平衡产品组成:MSW(参考案例)和AW与MSW的易团(AW情况)的均衡。使用事实进行建模,并且在满量程燃烧测试期间获得的实验数据被用作计算的输入数据。平衡建模的结果与三元相图中提取的信息一起,表明较高的床温度作为在参考情况下形成床附聚物的主要原因。此外,在这种情况下,提出了熔融诱导的附聚作为床附聚机构。然而,在AW情况下,床温度降低,以及在底部灰烬中富集的磷酸钙和硫酸钙被认为显着降低了剥离趋势。

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