秸秆类木质素特征结构的抗紫外辐射性能
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华南理工大学

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TS79

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国家自然科学基金(21908072)


The anti-UV radiation properties of gramineae lignin’s characteristic structures
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College of Light Industry Science and Engineering,State Key Laboratory of Pulp and Paper Engineering,South China University of Technology

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    摘要:

    设计合成并应用麦黄酮、阿魏酸、对香豆酸、芥子酸以及C5?C5连接 的二聚体等6种木质素模型物,结合稻草、麦草和燕麦三种碱木质素对秸秆类木质素中非常规特征结构的抗紫外辐射性能进行了研究。研究发现,分别将质量分数为2%的模型物或碱木质素添加至润肤霜或低倍防晒霜后,添加麦黄酮后的霜体防晒指数(SPF值)增幅最高,阿魏酸次之,分别由基础霜的SPF值 1.06(10.00)提升至4.67(38.49)和3.77(34.69),增幅显著;而添加对香豆酸和芥子酸后相应的SPF值增幅较少,揭示了甲氧基的存在形式对木质素紫外屏蔽性能的影响。将三种碱木质素添加至不同基础霜后,相应的SPF值呈现不同程度的提升。结果表明,在木质素分离过程中保留麦黄酮有利于提升其紫外防护效果;同时,阿魏酸和对香豆酸的存在对秸秆类木质素的抗紫外辐射性能具有显著影响。

    Abstract:

    As a natural aromatic polymer, lignin has been proven to be a natural broad-spectrum sunscreen agent due to its good UV protection properties. In general, lignin is a complex and heterogeneous macromolecule composed of guaiacyl (G), syringyl (S), and p-hydroxyphenyl (H) units. However, in addition to the three conventional structural units, some unconventional structures such as ferulates, p-coumaric acid, and tricin are also found in gramineous lignins, which leads to considerable impacts on the anti-UV radiation abilities of lignin. Herein six lignin model compounds, including tricin, ferulic acid, p-coumaric acid, sinapic acid, and C5-C5-linked dimers, were designed and applied to investigate the UV protection abilities of typical unconventional structures in straw-like lignin in combination with three different alkali lignins of rice straw, wheat straw, and oat straw. After the addition of different models or alkali lignins to the pure cream or commercial sunscreen, it was found that SPF values of the model-based or lignin-based sunscreens were increased but varied. The highest increase in SPF value was the sample of adding tricin (0.0558 mmol, about 2% by weight) into the low SPF commercial sunscreen, followed by ferulic acid, from 1.06(10.00) to 4.67(38.49) and 3.77(34.69), respectively, displaying the significant increment of the UV protection ability. In contrast, the increments of SPF values after adding p-coumaric acid or sinapic acid into the pure cream or sunscreens were much lower, which reveals, to some extent, the role of methoxy groups in lignin’s UV resistance ability. Considering lignin structural analysis, it was shown that lignin with the high retention of tricin was beneficial to the UV protection effect; meanwhile, the presence of ferulic acid and p-coumaric acid in lignin also significantly impacted the UV radiation resistance of gramineous lignin. Among the three different lignins, alkali lignin with higher tricin content has more apparent advantages as a sunscreen agent, which provides new insights and a theoretical basis for separating gramineous lignin and its following high-value utilization.

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夏樾,谢敏婷,陈振东,蓝武,岳凤霞.秸秆类木质素特征结构的抗紫外辐射性能[J].精细化工,2023,40(7):

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  • 收稿日期:2022-10-20
  • 最后修改日期:2022-12-09
  • 录用日期:2022-12-12
  • 在线发布日期: 2023-06-12
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