首页> 外文会议>European Conference on Industrial Furnace and Boilers >RELATIVE REACTIVITIES OF COAL BLEND COMPONENTS; PARTIAL COMBUSTION IN A LABORATORY-SCALE SUSPENSION-FIRING REACTOR.
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RELATIVE REACTIVITIES OF COAL BLEND COMPONENTS; PARTIAL COMBUSTION IN A LABORATORY-SCALE SUSPENSION-FIRING REACTOR.

机译:煤混合物组分的相对反应;在实验室悬浮燃烧反应器中的部分燃烧。

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The relative reactivities of coal blend components have been investigated by partial combustion experiments in a novel, laboratory-scale, suspension-firing reactor. The batch of sample is injected into the combustion zone, where particles circulate in a preheated stream of air. The oxygen concentration in the combustion zone has been limited to 3 percent vol (balance nitrogen) to simulate the environment prevailing in the devolatilisation zone of a pulverised-fuel burner. Devolatilisation takes place in suspension mode, followed by the partial combustion of volatiles and of char particles. Combustion is then interrupted by a flow of nitrogen at pre-set times and unbumed char particles are swept out of the reaction zone, usually several seconds after injection. Extents of reaction of the blends are then compared with those of pure components. Results from the suspension-firing reactor are encouraging. The trends found for coal blend reactivities as a function of blend composition were consistent those previously found in a 135-MW unit at the Tocopilla power station in Chile - whilst using the same set of coal blend samples. The compositions of residual chars were examined by non-isothermal combustion tests in a thermogravimetric balance. These experiments allowed the quantification of levels of preferential combustion in suspension firing, of the higher-reactivity coal in the blend. Char reactivity appears to be progressively reduced by enrichment with the lower-reactivity component, with obvious implications for carbon burnout in the tail of a pulverised coal flame. The coupled use of the suspension-firing reactor with non-isothermal thermogravimetric analysis thus promises to provide a powerful tool for assessing the combustion performance of unfamiliar coal blends on commercial scale plant.
机译:通过新颖的,实验室级,悬浮燃烧反应器中的部分燃烧实验研究了煤混合物组分的相对反应性。将批次样品注入燃烧区,其中颗粒在预热的空气流中循环。燃烧区中的氧浓度限制在3重量%的Vol(余量)中,以模拟粉煤燃烧器的脱挥发区普遍存在的环境。脱挥石以悬浮方式进行,然后是挥发物和炭颗粒的部分燃烧。然后通过预设时间的氮气流中断燃烧,并且在注射后几秒钟将扫除未产生的炭颗粒。然后将共混物反应的范围与纯组分的相比。悬浮反应器的结果令人鼓舞。作为共混物组合物的函数的煤混合物反应性的趋势一致于智利Tocopilla发电站的135 MW单元中发现的那些,而使用相同的煤混合物样品。通过在热量标胞平衡中通过非等温燃烧试验检查残留物的组合物。这些实验允许定量在混合物中悬浮烧制的悬浮烧制中优先燃烧水平。通过富集的较低反应性分量富集焦炭反应性似乎逐渐减少,在粉煤火焰尾部的碳燃料中具有明显的影响。悬浮式燃烧反应器与非等温热重分析的耦合用途是有望提供一种强大的工具,用于评估普通煤混合物对商业规模植物的燃烧性能。

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