化学
抗氧化剂
多糖
羟基自由基
水溶液
堆积
化学结构
溶剂
木质素
紫外线
热稳定性
电磁屏蔽
辐照
有机化学
核化学
材料科学
复合材料
核物理学
物理
光电子学
作者
Lingying Fu,Yue Gong,Qi Zhou,Zhiqiang Ou,Xin Rao,Songbin Wang,Chunqing Huo,Xueyu Du
标识
DOI:10.1016/j.ijbiomac.2023.123245
摘要
Spent coffee ground (SCG) is a representative type of biomass waste with huge annual output. To better develop high value applications of SCG, in this study, the lignin-polysaccharide complex (LPC) was isolated from SCG by applying effective ball milling and the subsequent solvent extraction of 96 % 1, 4-dioxane aqueous solution. In addition to the comprehensive analyses of the obtained LPC regarding its chemical composition, surface morphology, molecular weight distribution, characteristic functional groups, surface chemical linkages, and thermal stability, its potentials in radical scavenging and UV shielding had been emphatically investigated. As revealed from the results, a proper duration (e.g., 4 h) of UV irradiation could evidently enhance the radical-scavenging capacity of LPC, ascribed to the increasing number of antioxidant groups. Moreover, the LPC-containing composite sunscreens also exhibited strengthened UV resistance after UV irradiation, which may benefit from the UV-induced conjugated structures and the π-π stacking of aromatic rings from both LPC and the active ingredients in commercial sunscreen. Therefore, LPC is highly promising to be exploited for the development of novel antioxidants and UV-shielding products, by virtue of its characteristic chemical structure and potential synergistic effect with other active ingredients from the composite.
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