Løhre Camilla, Halleraker Hilde Vik, Barth Tanja
Department of Chemistry, University of Bergen, Allégt. 41, 5007 Bergen, Norway.
Int J Mol Sci. 2017 Jan 23;18(1):225. doi: 10.3390/ijms18010225.
The interest and on-going research on utilisation of lignin as feedstock for production of renewable and sustainable aromatics is expanding and shows great potential. This study investigates the applicability of semi-continuously organosolv extracted lignin in Lignin-to-Liquid (LtL) solvolysis, using formic acid as hydrogen donor and water as solvent under high temperature-high pressure (HTHP) conditions. The high purity of the organosolv lignin provides high conversion yields at up to 94% based on lignin mass input. The formic acid input is a dominating parameter in lignin conversion. Carbon balance calculations of LtL-solvolysis experiments also indicate that formic acid can give a net carbon contribution to the bio-oils, in addition to its property as hydrogenation agent. Compound specific quantification of the ten most abundant components in the LtL-oils describe up to 10% of the bio-oil composition, and reaction temperature is shown to be the dominating parameter for the structures present. The structural and quantitative results from this study identify components of considerable value in the LtL-oil, and support the position of this oil as a potentially important source of building blocks for the chemical and pharmaceutical industry.
将木质素用作生产可再生且可持续芳烃的原料的相关研究兴趣不断增加,且正在持续进行,展现出巨大潜力。本研究考察了半连续有机溶剂提取木质素在高温高压(HTHP)条件下,以甲酸作为氢供体、水作为溶剂的木质素制液体燃料(LtL)溶剂解中的适用性。有机溶剂木质素的高纯度基于木质素质量输入提供了高达94%的高转化率。甲酸输入是木质素转化中的主导参数。LtL溶剂解实验的碳平衡计算还表明,除了作为氢化剂的特性外,甲酸还可为生物油提供净碳贡献。对LtL油中十种最丰富成分的化合物特异性定量描述了高达10%的生物油组成,并且反应温度是所呈现结构的主导参数。本研究的结构和定量结果确定了LtL油中有相当价值的成分,并支持了这种油作为化学和制药行业潜在重要原料来源的地位。