Research on the Performance of Cosmetics Packaging Materials under the Background of Green Transformation
DOI:
https://doi.org/10.54097/075k1560Keywords:
Green Transformation, Cosmetics Packaging, Material Compatibility, Degradable Materials, Trace DetectionAbstract
With the acceleration of global green transformation, the cosmetics industry is facing an urgent need for sustainable upgrading of packaging materials. This study focuses on the performance optimization of cosmetic packaging materials, conducting a systematic analysis from three dimensions: material compatibility, harmful substance detection, and biodegradable material development. By constructing a multidimensional compatibility evaluation system, developing trace plasticizer detection technology, and exploring the preparation process of high-performance degradable materials, a comprehensive solution for green packaging materials is ultimately proposed. Experiments have shown that biodegradable materials based on polylactic acid (PLA) and nanocellulose composites have better mechanical strength and degradation efficiency than traditional plastics, and the new detection technology can achieve ppb level detection accuracy for phthalate plasticizers. This study provides theoretical support and technical pathways for the green transformation of cosmetic packaging.
Downloads
References
[1] Xiao Liangliang users discuss compatibility testing of cosmetic packaging materials [J]. Printing technologyl, 2015(24): 53-55.
[2] HAN J K, SELKE S E, DOWNES T W, et al. Application of a computer model to evaluate the ability of plastics to act as functional barriers[J]. Packaging Technology & Science, 2003, 16(3): 107-118.
[3] Sheng Hongkun, Liu Gang, Zeng Meng, etc Research progress on detection methods of heavy metal elements in cosmetics [J]. Shandong Chemical Industry,2021, 50(4): 85-86, 88.
[4] THOMAS C, SIONG D, PIRNAY S. Evaluation of the content-containing interaction in cosmetic products using gas chromatography-mass spectrometry [J]. International Journal of Cosmetic Science, 2014, 36(4): 327-335.
[5] Xu Jinyun, Wang Didi, Yang Junling Optimization of the synthesis process of antioxidant 1076 [J]. Journal of Tianjin University of Technology, 2019, 38 (2): 50-56.
[6] Wang Didi Optimization of Synthesis Process and Performance Study of Antioxidant 1076 [D]. Tianjin: Tianjin University of Technology, 2019.
[7] Yan Guanglie, Wang Jing, Liang Donglin, etc Synthesis of β - (3,5-di-tert-butyl-4-hydroxyphenylpropionic acid methyl ester [J]. Elasticity, 1996, 6 (4): 46-48.
[8] Yang Yewei, Zhang Xiaoli, Zheng Qing, et al. Study on the synthesis process of 3,5-di-tert-butyl-4-hydroxyphenylpropionic acid methyl ester [J]. Industrial Catalysis, 2022, 30 (8): 58-61.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 Frontiers in Computing and Intelligent Systems

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

