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Catalytic deoxygenation of model compounds from flash pyrolysis of lignocellulosic biomass over activated charcoal-based catalysts

机译:从活性炭基催化剂上木质纤维素生物质闪热解的模型化合物催化脱氧

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Catalytic deoxygenation of pyrolytic vapors represents a great challenge to produce biofuels by flash pyrolysis of lignocellulosic biomass. A wide variety of catalysts, particularly zeolites, have been investigated for this purpose, however, quick deactivation was often reported. Although they are cheap and can have a hierarchical pore structure, activated charcoal-based catalysts have received only little attention. This paper presents an innovative method to synthesize activated charcoal based catalysts doped with CeO2, Fe2O3 or Mn3O4 nanoparticles. We investigated the performances of those catalysts to deoxygenate two biomass pyrolytic model compounds - acetic acid and guaiacol - on a fixed-bed reactor between 350 degrees C and 450 degrees C. Ceria-based catalyst was highly active and remarkably stable to enhance ketonic decarboxylation of acetic acid, leading to the formation of acetone. Huge amounts of produced phenol attest for the partial deoxygenation of guaiacol, particularly when using iron-based catalyst. This study demonstrates the potential of activated charcoal-based catalysts to produce weak-acidic and partially deoxygenated bio-oils. (C) 2017 Elsevier B.V. All rights reserved.
机译:热解蒸汽的催化脱氧是通过木质纤维素生物质的闪蒸热解产生生物燃料的巨大挑战。已经研究了各种各样的催化剂,特别是沸石,以此目的,经常报告快速停用。虽然它们很便宜,并且可以具有等级孔隙结构,但活性炭基催化剂仅收到了很少的关注。本文提出了一种创新方法,用于合成掺杂有CeO2,Fe2O3或Mn3O4纳米颗粒的活性炭基催化剂的方法。我们研究了那些催化剂的脱氧酸盐两种生物质热解模型化合物 - 乙酸和愈菌醇 - 在350℃和450℃之间的固定床反应器上的催化剂的性能。基于CiRIa的催化剂非常活跃和显着稳定,以增强酮脱羧乙酸,导致形成丙酮。巨大的生产酚类证明了愈焦醇的部分脱氧,特别是在使用铁基催化剂时。该研究表明,活性炭基催化剂的潜力,以产生弱酸性和部分脱氧生物油。 (c)2017 Elsevier B.v.保留所有权利。

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