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Kraft Lignin Ethanolysis over Zeolites with Different Acidity and Pore Structures for Aromatics Production

机译:磷酸盐木质素乙醇溶解于沸石,具有不同的酸度和孔隙结构,用于芳烃生产

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摘要

To utilize its rich aromatics, lignin, a high-volume waste and environmental hazard, was depolymerized in supercritical ethanol over various zeolites types with different acidity and pore structures. Targeting at high yield/selectivity of aromatics such as phenols, microporous Beta, Y, and ZSM-5 zeolites were first examined in lignin ethanolysis, followed by zeolites with similar micropore size but different acidity. Further comparisons were made between zeolites with fin-like and worm-like mesoporous structures and their microporous counterparts. Despite depolymerization complexity and diversified ethanolysis products, strong acidity was found effective to cleave both C–O–C and C–C linkages of lignin while mild acidity works mainly in ether bond breakdown. However, when diffusion of gigantic molecules is severe, pore size, particularly mesopores, becomes more decisive on phenol selectivity. These findings provide important guidelines on future selection and design of zeolites with appropriate acidity and pore structure to promote lignin ethanolysis or other hydrocarbon cracking processes.
机译:为了利用其富含芳烃,木质素,大量废物和环境危害,在具有不同酸度和孔隙结构的各种沸石类型上以超临界乙醇解聚。在木质素乙醇分解中首先在酚类,微孔β,Y和ZSM-5沸石中靶向高产/选择性,例如酚,微孔β,Y和ZSM-5沸石,其次是具有相似微孔尺寸但酸度不同的沸石。在沸石之间进行进一步的比较,其具有翅片和蠕虫的中孔结构及其微孔对应物。尽管解聚复杂性和多样化的乙溶解产物,但发现强酸度有效地切割木质素的C-O-C和C-C键,而温和的酸度主要是醚粘合破裂。然而,当巨型分子的扩散是严重的时,对苯酚选择性变得更加决定的孔径,特别是中孔。这些调查结果提供了对未来选择和设计的重要指导方针,其具有适当的酸度和孔隙结构,以促进木质素乙醇溶解或其他烃裂化方法。

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