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Catalytic upgrading of biomass pyrolysis oil over tailored hierarchical MFI zeolite: Effect of porosity enhancement and porosity-acidity interaction on deoxygenation reactions

机译:催化升级物质溶解油定制的分层MFI沸石:孔隙度增强与孔隙率 - 酸度相互作用对脱氧反应的影响

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The catalytic upgrading of beech wood pyrolysis oil has been carried out over microporous and hierarchical MFI zeolites to produce a blendable stream with FCC unit feedstock. Mesoporosity was introduced within the zeolite structure through the desilication process by alkaline NaOH solution with various concentrations aiming at investigating the effect of porosity improvement on catalytic upgrading parameters. The zeolite catalysts were characterized using XRD, SEM, EDS, BET and NH3-TPD analyses and the results showed that the desilication improved textural properties of the zeolites preserving crystallinity. In addition, the effect of mesoporosity, catalyst to biomass ratio, and their interactions on the bio-oil upgrading parameters such as upgrading factor, degree of deoxygenation, effective hydrogen index, relative content of various compounds and coke yield have also been analyzed. The results revealed a significant effect of the parameters on the deoxygenation activity, coke formation potential, and selectivity towards desired products. Indeed, the improved accessibility of weak and strong acid sites, as well as controlled acidity caused to the enhanced conversion of large, oxygenates to smaller ones. The larger coke yield for the optimum hierarchical catalyst (synthesized by 0.5 M solution) was associated with a lower oxidation temperature, which is suited for cost-effective catalyst regeneration. (C) 2019 Elsevier Ltd. All rights reserved.
机译:山毛榉木热解油的催化升级已经通过微孔和分层MFI沸石进行,以产生具有FCC单元原料的可膨胀物流。通过碱性NaOH溶液在沸石结构内引入中间渗透性,碱性NaOH溶液具有各种浓度,旨在研究孔隙率改善对催化升级参数的影响。使用XRD,SEM,EDS,BET和NH 3-TPD分析表征沸石催化剂,结果表明,溶血改善了沸石的纹理性质,其保持结晶度。此外,还分析了介体,催化剂至生物质比的影响及其对生物油升级参数的相互作用,例如升级因子,脱氧程度,有效氢指数,各种化合物的相对含量和焦炭产率。结果表明,参数对脱氧活性,焦炭形成电位和对所需产物的选择性的显着影响。实际上,改善了弱酸的弱和强酸位点的可及性,以及对较小的含量增强的增强转化率导致的控制酸度。最佳等级催化剂(由0.5M溶液合成)的较大焦炭产率与较低的氧化温度相关,这适用于具有成本效益的催化剂再生。 (c)2019 Elsevier Ltd.保留所有权利。

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