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首页> 外文期刊>Journal of the Brazilian Chemical Society >Lignin-First Biorefining of Lignocellulose: the Impact of Process Severity on the Uniformity of Lignin Oil Composition
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Lignin-First Biorefining of Lignocellulose: the Impact of Process Severity on the Uniformity of Lignin Oil Composition

机译:木质素 - 木质纤维素的第一次生物化:过程严重程度对木质素油组合物均匀性的影响

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In lignin-first biorefining via reductive processes, lignocellulosic materials are deconstructed by the solvent extraction of lignin in the presence of a hydrogenation catalyst. This approach provides a route to the successful extraction and reductive passivation of lignin fragments to produce low molar mass lignin oils together with high-quality pulps. Herein, we present an investigation into the impact of process severity (i.e., cooking temperature) on the reductive processes taking place on the lignin fragments and uniformity of the product mixture. In addition to improving overall delignification yields (up to 87%) and producing low molar mass fragments, higher process temperatures led to the preferential cleavage of hydroxyl groups in monolignol sidechains via hydrodeoxygenation, yielding oils with lower oxygen content. By comparing products from both lignin-first biorefining and organosolv processes at various temperatures, we elucidate key performance differences and outline routes to increased chemical uniformity in lignin streams. Overall, this study outlines clearly the importance of process temperature in the deconstruction of lignocellulose by lignin-first biorefining when producing highly depolymerized lignin products. This study points out a trade-off in the effect of temperature upon delignification and increase in product mixture complexity, which needs to be carefully optimized for the scale-up of lignin-first technologies.
机译:在Lignin-First的通过还原过程中,通过在氢化催化剂存在下通过木质素的溶剂萃取来解构木质纤维素材料。这种方法提供了成功提取和减少木质素片段的捕获的途径,以产生低摩尔质量木质素油,以及高质量的纸浆。在此,我们对过程严重程度(即烹饪温度)对木质素片段和产物混合物的均匀性进行的还原过程进行了调查。除了改善整体脱氨酸产率(高达87%)和产生低摩尔质量片段外,较高的过程温度导致通过加氢氧基通过加氢脱氧的羟基羟基的优先切割,产生具有较低氧含量的油。通过在各种温度下比较来自木质素第一生物化和有机溶液的工艺的产品,我们阐明了关键的性能差异和轮廓途径,以提高木质素流中的化学均匀性。总体而言,本研究明确概述了在生产高度解聚的木质素产品时通过木质素 - 第一生物灌注在木质素纤维素解构过程中的过程温度的重要性。本研究指出了在脱铜的温度和产物混合物复杂性的影响下进行了折衷,这需要仔细优化用于木质素第一技术的扩大。

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