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Effect of Process Variables on the Solvolysis Depolymerization of Pine Kraft Lignin

机译:工艺变量对松牛皮素溶血解聚物的影响

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摘要

Lignin modification opens the possibility of using it in polyol bio-based polymers, such as phenol-formaldehyde resins, polyurethanes, composites, and binders. Pine kraft lignin Indulin AT was partially depolymerized and the resulting products analyzed to determine their degree of valorization. Depolymerized lignin products were analyzed by GPC-SEC (molar mass), Ae-IDUS (phenolic hydroxyls), HACL (formaldehyde uptake), ~(13)C-NMR (hydroxyl and methoxyl groups), and ~1H-DOSY (molar mass distribution). The dominant parameter in lignin depolymerization by solvolysis was reaction temperature. According to the results, a higher reaction temperature decreases the average molar masses and PDI of lignin as well as the primary and secondary aliphatic hydroxyls, while simultaneously increasing the phenolic hydroxyls and formaldehyde uptake of lignin. Other variables (time, formic acid wt %, ethanol wt %, lignin load) had lesser effects. Partial depolymerization by solvolysis in mild conditions without catalyst is a viable valorization route for lignin, by which lignin properties can be significantly improved.
机译:木质素改性开辟了在多元醇生物基聚合物中使用它,例如酚醛树脂,聚氨酯,复合材料和粘合剂。松果木蛋白吲哚在部分解聚并且所得产物分析以确定其估值程度。通过GPC-SEC(摩尔质量),AE-IDU(酚羟基),HACL(甲醛吸收),〜(13)C-NMR(羟基和甲氧基),〜1H-剂量(摩尔质量)分析解聚木质素产物。分配)。通过溶剂解的木质素解聚中的显性参数是反应温度。根据结果​​,更高的反应温度降低了木质素的平均摩尔质量和PDI以及初级和仲脂族羟基,同时增加了木质素的酚羟基和甲醛吸收。其他变量(时间,甲酸wt%,乙醇wt%,木质素载荷的效果较小。在不含催化剂的温和条件下通过溶剂解的部分解聚是木质素的可行储存途径,可以显着改善木质素性质。

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  • 来源
    《Waste and biomass valorization》 |2020年第7期|3195-3206|共12页
  • 作者单位

    Faculty of Technology Chemical Process Engineering University of Oulu P.O. Box 4300 90014 Oulu Finland;

    Faculty of Technology Chemical Process Engineering University of Oulu P.O. Box 4300 90014 Oulu Finland;

    Faculty of Technology Chemical Process Engineering University of Oulu P.O. Box 4300 90014 Oulu Finland;

    NMR Research Unit Faculty of Science University of Oulu P.O. Box 3000 90014 Oulu Finland;

    NMR Research Unit Faculty of Science University of Oulu P.O. Box 3000 90014 Oulu Finland;

    NMR Research Unit Faculty of Science University of Oulu P.O. Box 3000 90014 Oulu Finland;

    NMR Research Unit Faculty of Science University of Oulu P.O. Box 3000 90014 Oulu Finland;

    Faculty of Technology Chemical Process Engineering University of Oulu P.O. Box 4300 90014 Oulu Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lignin; Solvolysis; Depolymerization; Formic acid;

    机译:木质素;溶解;解聚;甲酸;

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