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Biomass gasification in a catalytic fluidized reactor with beds of different materials

机译:具有不同物料床的催化流化反应器中的生物质气化

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The paper deals with fluidized bed gasification of a biomass for producing a syngas with optimized hydrogen yield thanks to in-bed catalysis. Four different bed materials have been adopted: inert quartzite as reference case, olivine and dolomite as natural catalysts, and Ni-alumina as artificial catalyst. The gasification tests have been carried out at steady state in a pilot-scale bubbling fluidized bed, under operating conditions typical for gasification as reported in the paper. The gas analyses have been performed with dedicated instrumentation, like continuous analyzers and gas chromatograph, and adopting a standard protocol for tar sampling and characterization. The influence of the catalytic materials on the concentration of stable gases (e.g. H2. CO2, CO, CH4 and light hydrocarbons) as well as on the efficiency of tar conversion has been studied. In particular the artificial catalyst has the largest effectiveness in enhancing the H2 yield as well as in tar reduction. The catalyst gives rise to an elutriation rate significantly lower than that observed for dolomite at comparable U/U_(mf) ratio, denoting a better mechanical resistance. A stable activity of the nickel-alumina catalyst has been observed for the whole duration of reaction tests suggesting that no deactivation phenomena occurred, due to coke deposition or morphological modifications of the particles.
机译:本文涉及生物质的流化床气化,以通过床内催化产生具有优化的氢气产率的合成气。采用了四种不同的床层材料:惰性石英岩作为参考案例,橄榄石和白云石作为天然催化剂,镍铝作为人工催化剂。气化测试已在中型鼓泡流化床中的稳定状态下进行,在该论文中报道了典型的气化操作条件。气体分析是通过专用仪器(例如连续分析仪和气相色谱仪)进行的,并采用标准协议进行焦油采样和表征。研究了催化材料对稳定气体(例如H2。CO2,CO,CH4和轻质烃)的浓度以及焦油转化效率的影响。特别地,人造催化剂在提高H 2产率以及减少焦油方面具有最大的效力。在可比的U / U_(mf)比下,催化剂产生的淘析速率明显低于白云石的淘析速率,表明具有更好的机械阻力。在反应测试的整个过程中,已观察到镍-氧化铝催化剂的稳定活性,这表明未发生因焦炭沉积或颗粒的形态变化而引起的失活现象。

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