热物理改性对蔗渣有机溶剂木质素功能性能的影响及其在化妆品中的应用

IF 2.5 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Frontiers in chemical engineering Pub Date : 2023-02-22 DOI:10.3389/fceng.2023.1099010
C. Chotirotsukon, Kunlanis Jirachavala, Marisa Raita, Suchat Pongchaiphol, B. Hararak, N. Laosiripojana, V. Champreda
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引用次数: 0

摘要

有机溶剂木质素是一种新兴的生物添加剂,以其高纯度、无硫、生物相容性和在绿色溶剂中的溶解性等优点,在各种产品中创造功能特性。本研究研究了热改性和物理改性对从甘蔗渣中分离的有机溶剂木质素(OLB)的功能性质和粒度分布变化的影响。在70%w/w的乙醇水溶液中,在170至230°C的温度下对OLB进行热处理,导致酚羟基含量的变化,而根据激光衍射和扫描电子显微照片,超声处理导致改性OLB的尺寸分布均匀。在190°C处理时获得了最高的紫外线吸收率和抗氧化活性,这与最高的酚基含量有关。在基础霜制剂中施用3%w/w的改性OLB导致抗紫外线活性增强到SPF50以上,同时产品中的抗氧化活性增加。该工作为有机溶剂木质素作为一种强效功能添加剂在化妆品中的应用提供了基础。
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Effects of thermal and physical modification on functional properties of organosolv lignin from sugarcane bagasse and its application in cosmeceutical products
Organosolv lignin is an emerging bio-additive for creating functional properties in various products with its advantages in high-purity, sulfur-free, biocompatibility, and solubility in green solvents. In this study, effects of thermal and physical modification on alterations of functional properties and particle size distribution of isolated organosolv lignin from sugarcane bagasse (OLB) were studied. Thermal treatment of OLB at increasing temperatures from 170 to 230°C in 70%w/w aqueous ethanol led to alteration of phenolic hydroxyl content, while ultrasonication resulted in homogeneous size distribution of the modified OLB according to laser diffraction and scanning electron micrograph. The highest ultraviolet light absorbance and antioxidant activities were obtained at 190°C treatment which were correlated to the highest phenolic group content. Application of the modified OLB at 3% w/w in a base cream formulation resulted in enhancement of the anti-UV activity to exceed SPF 50 with increasing antioxidant activity in the product. The work provides basis on modification of organosolv lignin for application as a potent functional additive in cosmeceutical products.
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CiteScore
3.50
自引率
0.00%
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审稿时长
13 weeks
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