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Development of a low-temperature two-stage fluidized bed incinerator for controlling heavy-metal emission in flue gases

机译:研发一种用于控制烟气中重金属排放的低温两级流化床焚烧炉

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摘要

This study develops a low-temperature two-stage fluidized bed system for treating municipal solid waste. This new system can decrease the emission of heavy metals, has low construction costs, and can save energy owing to its lower operating temperature. To confirm the treatment efficiency of this system, the combustion efficiency and heavy-metal emission were determined. An artificial waste containing heavy metals (chromium, lead, and cadmium) was used in this study. The tested parameters included first-stage temperature and system gas velocity. Results obtained using a thermogravimetric analyzer with a differential scanning calorimeter indicated that the first-stage temperature should be controlled to at least 400℃. Although, a large amount of carbon monoxide was emitted after the first stage, it was efficiently consumed in the second. Loss of the ignition values of ash residues were between 0.005% and 0.166%, and they exhibited a negative correlation with temperature and gas velocity. Furthermore, the emission concentration of heavy metals in the two-stage system was lower than that of the traditional one-stage fluidized bed system. The heavy-metal emissions can be decreased by between 16% and 82% using the low-temperature operating process, silica sand adsorption, and the filtration of the secondary stage.
机译:本研究开发了一种用于处理城市固体废物的低温两级流化床系统。这种新系统可以降低重金属的排放,降低建设成本,并且由于其较低的工作温度可以节省能源。为了确定该系统的处理效率,确定了燃烧效率和重金属排放。在这项研究中使用了包含重金属(铬,铅和镉)的人工废物。测试的参数包括第一阶段温度和系统气体速度。使用带有差示扫描量热仪的热重分析仪获得的结果表明,第一阶段的温度应控制在至少400℃。尽管在第一阶段之后排放了大量的一氧化碳,但在第二阶段中有效地消耗了一氧化碳。灰渣残渣的着火值损失在0.005%至0.166%之间,与温度和气体速度呈负相关。此外,两级系统中重金属的排放浓度低于传统的一级流化床系统。使用低温操作过程,硅砂吸附和二级过滤,可将重金属排放降低16%至82%。

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