Influence of the biomass-source and the extraction process on lignin properties and γ-valerolactone induced conversion of biomass towards valuable lignin monomers

IF 4.9
Moritz Schweiger, Thomas Lang, Didier Touraud, Eva Müller and Werner Kunz
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Abstract

With a rising demand in fossil-based chemicals and their derived products, alternatives have to be developed from bio-based materials to meet the declining fossil resources. Lignocellulosic biomass is widely seen as a promising alternative, especially on the topic of bioplastics. However, challenges still lie in complete and efficient valorization of biomass and converting its components into suitable products. For this purpose, the tailoring of the lignin structure through extraction method and choice of biomass have to be studied extensively. The green solvent γ-valerolactone (GVL) was shown to facilitate efficient fractionation of all main components of lignocellulosic biomass in our previous study. To further build on this process of a GVL-based extraction process at mild conditions, lignin from different process conditions and biomass types was extracted, and subsequent hydrogenolysis experiments were conducted to decompose especially lignin oligomers with high ether contents into specific monomers. The structure of the products, referring to lignin oligomers and monomers, largely depends on the biomass type of origin of the lignin and the extraction process. The product characteristics from several biomass sources were analyzed using NMR spectroscopy, UV/Vis spectroscopy, and chromatography techniques. Default extracted lignin and lignin extracted with an aldehyde-assisted process led to a broad spectrum of lignin with different properties, indicating the influence of the extraction process on the extracted lignin properties. The present study examines the production of lignin oligomers and monomers with different properties from lignocellulosic biomass after two different selective extraction and decomposition processes using the green solvent GVL. These products can be used for different applications depending on their post-extraction properties that originate from its biomass source and the extraction/degradation process.

Abstract Image

生物质来源和提取工艺对木质素性质和γ-戊内酯诱导生物质转化为有价值的木质素单体的影响
随着对化石基化学品及其衍生产品的需求不断增加,必须开发生物基材料的替代品,以满足日益减少的化石资源。木质纤维素生物质被广泛认为是一种有前途的替代品,特别是在生物塑料方面。然而,挑战仍然在于完整和有效的生物质增值和将其成分转化为合适的产品。为此,必须对木质素结构的提取方法和生物质的选择进行广泛的研究。在我们之前的研究中,绿色溶剂γ-戊内酯(GVL)被证明可以有效地分离木质纤维素生物质的所有主要成分。为了进一步建立基于gl的温和条件下的木质素提取工艺,从不同的工艺条件和生物质类型中提取木质素,并进行后续的氢解实验,将高醚含量的木质素低聚物分解为特定的单体。产品的结构,即木质素低聚物和单体,在很大程度上取决于木质素来源的生物质类型和提取过程。利用核磁共振光谱、紫外/可见光谱和色谱技术分析了几种生物质原料的产物特征。默认提取的木质素和醛辅助提取的木质素得到了广谱的不同性质的木质素,表明提取工艺对提取的木质素性质的影响。本研究考察了木质纤维素生物质经过两种不同的选择性提取和分解过程后,使用绿色溶剂GVL生产具有不同性质的木质素低聚物和单体。这些产品可用于不同的应用,这取决于其提取后的特性,这些特性源于其生物质来源和提取/降解过程。
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