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Characteristics of NO-Reduction by Tar-included Syngas from an Updraft Gasifier

机译:由Tar-included没有降低的特点从一个上升气流气化炉合成气

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摘要

Experiments of nitric oxide reduction by the tar-included syngas from a small biomass updraft gasifier have been carried out on a tubular reactor under a temperature range of 900 to 1200° C. The initial mole fraction of NO was 1000 ppm and that of the oxygen and gasification syngas were varied. Comparison of the reburning results of the present syngas with other fuels clarified the influence of tar. Under the conditions of this work, the participation of tar compounds in NO reduction mainly begins with cracking into light hydrocarbons which is sensitive to both the oxygen concentration and the temperature. Tar leads to a satisfactory NO-reduction improvement under relative oxygen-rich conditions, supplying extra hydrocarbon radicals and creating a more appropriate atmosphere for reburning reactions. As for a reductive environment, little benefit was gained from the presence of tar. The rise of temperature brings a clear promotion only to NO reduction with a high oxygen flow rate, while polymerization should be concerned for a low oxygen flow rate. It is believed that a substantial portion of tar converts to acetylene through cracking under suitable reburning conditions, resulting in an active NO-reduction reaction pathway.
机译:实验的一氧化氮减少从小型生物质上升气流tar-included合成气气化炉进行了管状反应堆的温度范围下900到1200°c的初始摩尔分数为1000 ppm与氧气和气化合成气是不同的。与其他燃料澄清目前的合成气焦油的影响。这个工作,焦油化合物参与没有减少主要始于开裂光敏感的碳氢化合物氧气浓度和温度。导致一个令人满意的改进没有降低在相对富氧条件下,提供额外的烃自由基和创建一个更适当的气氛再燃烧反应。至于还原环境,小的好处从焦油的存在了。温度带来一个明确的晋升却没有高氧流量,减少时间应该关心低聚合氧气流量。很大一部分焦油转化乙炔通过破解下合适的再燃烧条件,导致活性没有降低反应途径。

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