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Evaluation of various types of Al-MCM-41 materials as catalysts in biomass pyrolysis for the production of bio-fuels and chemicals

机译:评价各种类型的Al-MCM-41材料作为生物质热解中用于生产生物燃料和化学品的催化剂

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MCM-41, is one of the latest members of the mesoporous family of materials. They possess a hexagonal array of uniform mesopores (1.4-10 nm), high surface areas (>1000 m~2/g) and moderate acidity. Due to these properties the MCM-41 materials are currently under study in a variety of processes as catalysts or catalyst supports. The objective of this study was to evaluate different types of MCM-41 materials as potential catalysts in the catalytic biomass pyrolysis process. We expected that the very high pore size and the mild acidity of these materials could be beneficial to reformulate the high molecular weight primary molecules from biomass pyrolysis producing useful chemical (and especially phenolic compounds) and lighter bio-oil with less heavy molecules. Three different samples of Al-MCM-41 materials (with different Si/Al ratio) and three metal containing mesoporous samples (Cu-Al-MCM-41, Fe-Al-MCM-41 and Zn-Al-MCM-41) have been synthesised, characterized and tested as catalysts in the biomass catalytic pyrolysis process using a fixed bed pyrolysis combined with a fixed catalytic reactor and two different types of biomass feeds. Compared to conventional (non-catalytic) pyrolysis, it was found that the presence of the MCM-41 material alters significantly the quality of the pyrolysis products. All catalysts were found to increase the amount of phenolic compounds, which are very important in the chemical (adhesives) industry. A low Si/Al ratio was found to have a positive effect on product yields and composition. Fe-Al-MCM-41 and Cu-Al-MCM-41 are the best metal-containing catalysts in terms of phenols production. The presence of the Al-MCM-41 material was also found to decrease the fraction of undesirable oxygenated compounds in the bio-oil produced, which is an indication that the bio-oil produced is more stable.
机译:MCM-41是介孔材料家族的最新成员之一。它们具有均匀的中孔(1.4-10 nm),高表面积(> 1000 m〜2 / g)和中等酸度的六边形阵列。由于这些特性,目前正在以各种方法研究MCM-41材料作为催化剂或催化剂载体。这项研究的目的是评估在生物质催化热解过程中作为潜在催化剂的不同类型的MCM-41材料。我们预期这些材料的非常高的孔径和适度的酸度可能有利于重新配置生物质热解过程中的高分子量初级分子,从而产生有用的化学物质(尤其是酚类化合物)和较轻的生物油,而分子重较少。三种不同的Al-MCM-41材料样品(具有不同的Si / Al比)和三种含金属的中孔样品(Cu-Al-MCM-41,Fe-Al-MCM-41和Zn-Al-MCM-41)具有使用固定床热解结合固定催化反应器和两种不同类型的生物质原料,在生物质催化热解过程中合成,表征和测试了作为催化剂。与常规(非催化)热解相比,发现MCM-41材料的存在会显着改变热解产物的质量。发现所有催化剂都会增加酚类化合物的量,这在化学(胶粘剂)工业中非常重要。发现低的Si / Al比对产品的产率和组成具有积极的影响。就酚类生产而言,Fe-Al-MCM-41和Cu-Al-MCM-41是最好的含金属催化剂。还发现Al-MCM-41材料的存在降低了所产生的生物油中不期望的氧化化合物的比例,这表明所产生的生物油更稳定。

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