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A study on coal blending for reducing NOx and N2O and levels during fluidized bed combustion

机译:混煤降低流化床燃烧过程中NOx和N2O及水平的研究

摘要

The objective of the study was to investigate the effect of blending on the emissions of NOx and N2O during the fluidized bed combustion of five coals with different levels of nitrogen, volatile matter, and fixed carbon contents, and diverse coal and char petrographic composition. The devolatilization chars were produced in a fluidized bed combustor. Using the petrographic analyses of the coals, sixteen coal blends were made to carry out the combustion tests. The combustion of individual coals and the sixteen blends was carried out in an electrically heated atmospheric fluidized bed combustor. The emissions of NOx reached maximum values at a bed temperature around 1173 K and decreased with lower combustion temperatures. The amount of nitrous oxide formed decreased, for all five coals, as the bed temperature increased from 1053 to 1303 K. These trends are consistent with the observed experimental data obtained by other researchers. It was observed that for ratios of 1.3 to 1.6 of fixed carbon to volatile matter, both NOx and N2O emission levels were minimal and, outside this range, both oxides showed a sharp increase in their formation/emissions. The coal blends were also found to show similar trends with increasing the bed temperatures. The results serve to establish the relative importance of volatile and fixed carbon reactivity and coal and char petrography, which is believed to significantly contribute to devolatilization mechanisms and char reactivity.
机译:这项研究的目的是研究掺合对五种不同氮,挥发性物质和固定碳含量以及煤和炭的岩石组成不同的煤在流化床燃烧过程中NOx和N2O排放的影响。脱挥发炭在流化床燃烧器中产生。使用煤的岩石学分析,对十六种煤混合物进行了燃烧测试。在电加热的大气流化床燃烧器中进行了各种煤和16种混合物的燃烧。 NOx排放在床温约1173 K时达到最大值,并随着较低的燃烧温度而降低。随着床层温度从1053 K升高到1303 K,所有五种煤形成的一氧化二氮量均减少。这些趋势与其他研究人员获得的观察到的实验数据一致。可以看出,对于固定碳与挥发性物质的比率为1.3到1.6,NOx和N2O的排放量都最小,在此范围之外,两种氧化物的形成/排放量均急剧增加。随着床层温度的升高,掺混煤也显示出相似的趋势。该结果有助于确定挥发性和固定碳反应性与煤和炭的岩相学的相对重要性,据信这对脱挥发分机理和炭的反应性有重大贡献。

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