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Lignin depolymerisation by nickel supported layered-double hydroxide catalysts

机译:镍负载的层状双氢氧化物催化剂对木质素的解聚

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Lignin depolymerisation is traditionally facilitated with homogeneous acid or alkaline catalysts. Given the effectiveness of homogeneous basic catalysts for lignin depolymerisation, here, heterogeneous solid -base catalysts are screened for C-0 bond cleavage using a model compound that exhibits a common aryl-ether linkage in lignin. Hydrotalcite (HTC), a layered double hydroxide (LDH), is used as a support material as it readily harbours hydroxide anions in the brucite-like layers, which are hypothesised to participate in catalysis. A 5 wt% Ni/HTC catalyst is particularly effective at C-O bond cleavage of a model dimer at 270 °C without nickel reduction, yielding products from C-O bond cleavage identical to those derived from a base-catalysed mechanism. The 5% Ni-HTC catalyst is shown to depolymerise two types of biomass-derived lignin, namely Organosolv and ball-milled lignin, which produces alkyl-aromatic products. X-ray photoelectron spectroscopy and energy dispersive X-ray spectroscopy show that the nickel is well dispersed and converts to a mixed valence nickel oxide upon loading onto the HTC support. The structure of the catalyst was characterised by scanning and transmission electron microscopy and X-ray diffraction, which demonstrates partial dehydration upon reaction, concomitant with a base-catalysed mechanism employing hydroxide for C-O bond cleavage. However, the reaction does not alter the overall catalyst microstructure, and nickel does not appreciably leach from the catalyst. This study demonstrates that nickel oxide on a solid-basic support can function as an effective lignin depolymerisation catalyst without the need for external hydrogen and reduced metal, and suggests that LDHs offer a novel, active support in multifunctional catalyst applications.
机译:传统上,均相酸或碱催化剂可促进木质素解聚。考虑到均相碱性催化剂对于木质素解聚的有效性,在此,使用在木质素中表现出常见的芳基-醚键的模型化合物来筛选C-0键裂解的非均相固体基催化剂。水滑石(HTC)是一种层状双氢氧化物(LDH),由于其容易在类似水镁石的层中包含氢氧根阴离子,因此推测其可参与催化作用,因此被用作载体材料。 5wt%的Ni / HTC催化剂在不降低镍的情况下在270℃下模型二聚体的C-O键裂解特别有效而不产生镍还原,由C-O键裂解产生的产物与衍生自碱催化机理的产物相同。已显示5%的Ni-HTC催化剂可解聚两种类型的生物质衍生的木质素,即Organosolv和球磨木质素,可产生烷基芳族产品。 X射线光电子能谱和能量色散X射线能谱表明,镍很好地分散,并在装载到HTC载体上时转变为混合价的氧化镍。催化剂的结构通过扫描和透射电子显微镜以及X射线衍射来表征,其显示出反应后部分脱水,并伴随有使用氢氧化物进行C-O键裂解的碱催化机理。但是,该反应不会改变催化剂的整体微观结构,并且镍不会明显地从催化剂中浸出。这项研究表明,固体-碱性载体上的氧化镍可以用作有效的木质素解聚催化剂,而无需外部氢和还原的金属,并且表明LDH在多功能催化剂应用中提供了一种新型的活性载体。

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