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Fluidised bed combustion of two species of energy crops

机译:两种能源作物的流化床燃烧

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摘要

The use of biomass fuels for energy production through combustion has a growing application worldwide mainly for two reasons: first, the utilization of biomass for energy contributes to mitigate emission of green house gases; second, its use decreases the dependence of imported fossil fuels in Europe. The objective of this work was to study the combustion behaviour of two endogenous biomass species: cardoon (cynara cardunculus) and arundo (arundo donax), which were specially produced in energy crops plantations. Mixtures of cardoon and a forestry biomass specie (eucalyptus) were also studied to evaluate potential benefits from synergies between both biomass fuel types. The results showed that the utilization of cardoon, in pelletized form, and loose arundo as feedstock, did not give rise to any operational problems related with the feeding system. It was verified that the mono combustion of cardoon could pose problems at industrial scale in fluidised bed systems, considering the high levels of HCl and NOX emissions obtained and tendency to sinter the bed sand material. The addition of the forestry biomass to cardoon appeared to prevent the bed agglomeration problem. Furthermore, both the NOX and SO2 emissions were found to decrease at the same time suggesting potential synergy of blending different types of biomass regarding pollutant emissions and in bed agglomeration problems.
机译:通过燃烧将生物质燃料用于能源生产的应用在全球范围内日益增长,主要有两个原因:第一,利用生物质作为能源有助于减轻温室气体的排放;第二,其使用减少了欧洲对进口化石燃料的依赖。这项工作的目的是研究在能源作物种植园中专门生产的两种内生生物量物种:card蒲(Cynara cardunculus)和arundo(arundo donax)的燃烧行为。还研究了菜豆和林业生物量物种(桉树)的混合物,以评估两种生物量燃料类型之间协同作用的潜在利益。结果表明,以粒状形式的菜皮和松散的芦竹作为原料的利用不会引起与进料系统有关的任何操作问题。事实证明,考虑到获得的高水平的HCl和NOX排放以及烧结床砂材料的趋势,of蒲的单一燃烧在流化床系统中可能会在工业规模上带来问题。向card菜中添加林业生物量似乎可以防止河床结块问题。此外,发现同时减少了NOX和SO2排放,这表明就污染物排放和床附聚问题而言,混合不同类型的生物质具有潜在的协同作用。

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