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Gasification improvement of a poor quality solid recovered fuel (SRF): Effect of using natural minerals and biomass wastes blends

机译:劣质固体回收燃料(SRF)的气化改进:使用天然矿物和生物质废物混合物的影响

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摘要

The need to produce energy from poor quality carbonaceous materials has increased, in order to reduce European dependency on imported fuels, diversify the use of new and alternative fuels and to guarantee secure energy production routes. The valorisation of a poor quality solid residual fuel (SRF), with high content of ash and volatile matter, through its conversion into fuel gas was studied. The rise of gasification temperature and equivalent ratio (ER) led to higher gas yields and to lower undesirable gaseous components, though higher ER values led to a gas with lower energetic content. To reduce the negative effect of SRF unfavourable characteristics and to diversify the feedstocks used, SRF blended with three different types of biomass wastes: forestry pine, almond shells and olive bagasse was co-gasified. The use of biomass wastes tested was valuable for SRF gasification, as there was an increase in the overall reactivity and in H2 production and a reduction of about 55% in tar released, without great changes in gas yield and in its HHV. The use of natural minerals mixed with silica sand was also studied with the aim of improving SRF gasification performance and fuel gas quality. The best results were obtained in presence of dolomite, as the lowest tar and H2S contents were obtained, while an increase in gas yield was observed. Co-gasification of this poor quality SRF blended with biomass wastes in presence of dolomite increased gas yield by 25% while tar contents decreased by 55%.
机译:为了减少欧洲对进口燃料的依赖,使新燃料和代用燃料的使用多样化并确保安全的能源生产路线,对劣质碳质材料生产能源的需求已经增加。研究了通过将灰分和挥发性物质转化为可燃气体的方法,对具有高灰分和挥发性物质的劣质固体残余燃料(SRF)进行了增值。气化温度和当量比(ER)的升高导致更高的气体收率,并降低了不良的气态成分,尽管更高的ER值导致了气体中的低能含量。为了减少SRF不利特性的负面影响并使所使用的原料多样化,将SRF与三种不同类型的生物质废物混合:林业松,杏仁壳和橄榄渣。经测试的生物质废物的使用对于SRF气化非常有价值,因为总体反应性和氢气产量都有所增加,释放的焦油减少了约55%,而气体收率及其HHV却没有太大变化。还研究了将天然矿物与硅砂混合使用的方法,目的是提高SRF的气化性能和燃气质量。在白云石的存在下获得了最好的结果,因为获得了最低的焦油和硫化氢含量,同时观察到了气体产率的增加。在白云石的存在下,这种质量较差的SRF与生物质废物进行共气化可使气体收率提高25%,而焦油含量降低55%。

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