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Light-colored lignin with high UV absorption for sunscreens by fractionation and bleaching

木质素 有机溶剂 化学 分馏 甲醇 吸收(声学) 有机化学 制浆造纸工业 成分 细胞毒性 核化学 解聚 同种类的 生物相容性材料 化学工程
作者
Rizki Utami,D. Y. LEE,Eun‐Cheol Lee,Eun‐Cheol Lee,Suk Ho Bhang,Keehoon Won,Eun Yeol Lee,Eun Yeol Lee
出处
期刊:Environmental Technology and Innovation [Elsevier BV]
卷期号:40: 104602-104602
标识
DOI:10.1016/j.eti.2025.104602
摘要

Lignin, a versatile biopolymer, has a high UV-absorbing quality, which makes it a promising sustainable ingredient of sunscreens. However, its dark color has limited its application in cosmetics. To date, several methods of brightening lignin (e.g., bleaching) have been developed; however, most of them decrease its UV-absorbing activity. This work proposes a novel two-step treatment (fractionation followed by bleaching) for producing light-colored lignin with high UV absorption. Organosolv lignin was fractionated with methanol and subsequently bleached with NaOCl under mild conditions. The resultant lignin was characterized in terms of color, UV absorption, functional groups, and molecular weight. The dark technical lignin was successfully lightened, maintaining its high UV absorption property. When the light-colored lignin was blended with a base cream, the SPF value was considerably enhanced and became 9.52 at 3% lignin, which is higher than those obtained with 5% lignin reported in other studies. The lignin-based cream was also highly homogeneous and stable. In addition, cytotoxicity test using human skin cells demonstrated that the treated lignin was much more biocompatible than the untreated one. Overall, this study addresses significant obstacles to the development of lignin-based sunscreens, providing a promising path for effective, sustainable sunscreening agents that can reduce the environmental impact and skin irritation associated with conventional UV filters. • Novel two-step lignin treatment enhances UV protection and reduces cytotoxicity • Methanol fractionation and NaOCl bleaching improve lignin's sunscreen properties • 3% treated lignin in cream achieves SPF 9.52, outperforming previous 5% lignin studies
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