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EFFECTIVE RECOVERY OF CHEMICAL SPECIES FROM LIGNIN IN WATER-PHENOLIC SOLVENTS UNDER SUPERCRITICAL CONDITIONS

机译:在超临界条件下有效回收木质素中木质素的化学物质

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Biomass has been proposed an alternative source of chemicals to save as fossil resources such as coal and petroleum. However, lignin, one of the major constituents of wood, can be converted into chemicals in low yields because lignin is easily denatured by acid or heat. Consequently, most of lignin is utilized only as fuels. The conversion of lignin into liquid products and chemicals with supercritical water has been investigated. Johnson et al. conducted the liquefaction of organosolv lignin in supercritical water using Pt catalysts at 648 K under 27.6 MPa of hydrogen and bund that the yield (maximum 4.4%) of hydrolysis products such catechol increased with reaction time. Yokoyama et al. examiined decomposition of organosolv lignin in supercritical water at 623 - 693 K up to 40 MPa and reported that the yield (maximum 40%) of oil and that of products containing hydroxyl groups increased and that ( minimum 30%) of char decreased with increasing water density. These results indicate that hydrolysis is an important reaction for disassembly of lignin in supercritical water. However, the formation of char due to re-polymerization occurs at the same time and lignin is converted into chemicals in low yields.
机译:生物量已经提出了一种替代化学品来源,以节省煤炭和石油等化石资源。然而,木质素是木材的主要成分之一,可以将化学品转化为低产量,因为木质素容易被酸或热量变性。因此,大多数木质素仅作为燃料使用。研究了木质素将木质素转化为液体产品和具有超临界水的化学品。约翰逊等人。使用Pt催化剂在27.6MPa的氢气和封端下使用Pt催化剂在超临界水中进行了有机溶胶碱在超临界水中的液化,即水解产物的产率(最大4.4%)这种儿茶酚的反应时间增加。 Yokoyama等。在623-693K高达40MPa的超临界水中检查有机溶胶木质素的分解,并报道了油的产率(最多40%)和含有羟基的产品的产率(最小30%)Char随着水的增加而降低密度。这些结果表明,水解是对超临界水中木质素拆卸的重要反应。然而,由于重新聚合而形成的炭的形成在同一时间内发生,并且木质素以低产率转化为化学品。

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