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Recent progress in the thermal and catalytic conversion of lignin

机译:木质素热催化转化的最新进展

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The issues over increases in energy demand and environmental pollution attributed to excessive use of fossil fuel have been the driving forces of the exploration for eco-friendly resource. Lignocellulosic biomass consisting of carbohydrates and lignin can be a renewable feedstock for replacing fossil fuels in the future because it is a plentiful and carbon neutral material. Especially, lignin, cross-linked phenolic polymers, is a topic of interest owing to its abundant production from pulp/paper industries as well as lignocellulose based biorefinery. The large potential of platform chemicals and biofuels from lignin has opened up an extensive range of opportunities to develop thermal and catalytic conversion technology. Over a few decades, several lignin conversion processes including catalytic pyrolysis, catalytic depolymerization, and catalytic oxidation have been developed to improve target products yields and to suppress side reactions. More recently, lignin-first approaches which maintain carbohydrates intact by selective extraction of lignin as valuable phenolics from whole biomass has been suggested. This review introduces recent ten years progress on thermal and catalytic conversion technology in terms of process type, catalyst development, and target products. This review is expected to offer an influential information for future research into the thermal and catalytic conversion of lignin as well as lignocellulosic feedstock.
机译:由于过度使用化石燃料而导致的能源需求增加和环境污染问题一直是探索生态友好资源的动力。由碳水化合物和木质素组成的木质纤维素生物质将来可以替代矿物燃料,成为可再生的原料,因为它是一种碳中和的丰富材料。特别地,木质素,交联的酚类聚合物,由于其来自纸浆/造纸工业以及木质纤维素基生物精炼厂的大量生产而成为人们关注的话题。来自木质素的平台化学品和生物燃料的巨大潜力为开发热和催化转化技术提供了广泛的机会。在过去的几十年中,已经开发了几种木质素转化工艺,包括催化热解,催化解聚和催化氧化,以提高目标产物的收率并抑制副反应。最近,已经提出了优先采用木质素的方法,该方法通过从整个生物质中选择性提取木质素作为有价值的酚类来保持碳水化合物的完整性。这篇综述从工艺类型,催化剂开发和目标产品方面介绍了热催化转化技术近十年的进展。预计该综述将为将来对木质素以及木质纤维素原料的热转化和催化转化提供有影响力的信息。

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