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Study on ash deposition under oxyfuel combustion of coal/biomass blends

机译:煤/生物质混合燃料富氧燃烧灰分的研究

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摘要

Combustion in an O₂/CO₂mixture (oxyfuel) has been recognized as a promising technology for CO₂capture as it produces a high CO₂concentration flue gas. Furthermore, biofuels in general contribute to CO₂reduction in comparison with fossil fuels as they are considered CO₂neutral. Ash formation and deposition (surface fouling) behavior of coal/biomass blends under O₂/CO₂combustion conditions is still not extensively studied. Aim of this work is the comparative study of ash formation and deposition of selected coal/biomass blends under oxyfuel and air conditions in a lab scale pulverized coal combustor (drop tube). The fuels used were Russian and South African coals and their blends with Shea meal (cocoa). A horizontal deposition probe, equipped with thermocouples and heat transfer sensors for on line data acquisition, was placed at a fixed distance from the burner in order to simulate the ash deposition on heat transfer surfaces (e.g. water or steam tubes). Furthermore, a cascade impactor (staged filter) was used to obtain size distributed ash samples including the submicron range at the reactor exit. The deposition ratio and propensity measured for the various experimental conditions were higher in all oxyfuel cases. The SEM/EDS and ICP analyses of the deposit and cascade impactor ash samples indicate K interactions with the alumina silicates and to a smaller extend with Cl, which was all released in the gas phase, in both the oxyfuel and air combustion samples. Sulfur was depleted in both the air or oxyfuel ash deposits. S and K enrichment was detected in the fine ash stages, slightly increased under air combustion conditions. Chemical equilibrium calculations were carried out to facilitate the interpretation of the measured data; the results indicate that temperature dependence and fuels/blends ash composition are the major factors affecting gaseous compounds and ash composition rather than the combustion environment, which seems to affect the fine ash (submicron) ash composition, and the ash deposition mechanisms
机译:在O 2 / CO 2混合物(含氧燃料)中燃烧被认为是捕获CO 2的有前途的技术,因为它会产生高浓度的CO 2烟气。此外,与化石燃料相比,生物燃料通常被认为是二氧化碳中性的,因此有助于减少二氧化碳。在O 2 / CO 2燃烧条件下煤/生物质混合物的灰分形成和沉积(表面结垢)行为仍未得到广泛研究。这项工作的目的是在实验室规模的粉煤燃烧器(滴管)中,在含氧燃料和空气条件下,对选定的煤/生物质混合物的灰分形成和沉积进行比较研究。所使用的燃料是俄罗斯和南非的煤炭,以及它们与乳木果粕(可可粉)的混合物。将水平沉积探针(配有热电偶和传热传感器以在线获取数据)放置在距燃烧器一定距离的位置,以模拟灰分沉积在传热表面(例如水或蒸汽管)上。此外,级联撞击器(分级过滤器)用于获得大小分布的灰分样品,包括反应堆出口处的亚微米范围。在所有含氧燃料的情况下,在各种实验条件下测得的沉积率和倾向均较高。沉积物和级联撞击器灰分样品的SEM / EDS和ICP分析表明,在含氧燃料和空气燃烧样品中,K与硅酸铝的相互作用以及与Cl的较小程度的相互作用,Cl均在气相中释放。空气或含氧燃料灰分沉积物中的硫都已耗尽。在细灰分阶段检测到S和K富集,在空气燃烧条件下略有增加。进行化学平衡计算以利于对测得数据的解释;结果表明,温度依赖性和燃料/混合灰分是影响气态化合物和灰分组成的主要因素,而不是燃烧环境,这似乎影响细灰(亚微米)灰分的组成以及灰分沉积机理

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