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Selective depolymerization of lignosulfonate via hydrogen transfer enhanced in an emulsion microreactor

机译:乳液微反应器中氢转移通过氢转移的选择性解聚

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摘要

An efficient emulsion microreactor was constructed for selective conversion of lignosulfonate via hydrogen transfer reaction based on the self-surfactivity of this natural aromatic polymer. Industrial Raney Ni and isopropanol were used as catalyst and hydrogen donor, respectively. The results showed that the emulsion microreactor has a remarkable process intensification effect on the lignosulfonate depolymerization. Under mild condition of 473 K for 2.0 h, 116.1 mg g(-1) of volatile phenolic monomer can be obtained, which is twice of that from other investigated processes without emulsion of this work. In particular, 39.3 mg g(-1) of which is composed of 4-ethyl guaiacol, an important and versatile chemical currently from petrochemical industry. Furthermore, the solvent separates to two phases automatically after reaction due to the consumption of lignosulfonate, which makes handy products enrichment and separation. Additionally, the emulsion microreactor is significantly affected by hydrogen donor and is efficient for other lignin sources as well.
机译:构建了一种高效的乳液微反应器,用于通过基于该天然芳族聚合物的自与氢转移反应选择性转化木质素磺酸盐。工业Raney Ni和异丙醇分别用作催化剂和氢供体。结果表明,乳液微反应器对木质素磺酸盐解聚具有显着的工艺强化作用。在473K的温和条件下,2.0小时,可以获得116.1mg G(-1)挥发性酚类单体,其是来自其他研究的其他研究方法的两倍。特别是39.3mg g(-1)由4-乙基胍,目前来自石化工业的重要和多功能的化学品组成。此外,由于木质素氟磺酸盐的消耗,溶剂在反应后自动分离为两相自动分离,这使得可以使产品富集和分离。另外,乳液微反应器受到氢供体的显着影响,并且也有效地对其他木质素来源。

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