Liu Chunlin, Li Qi, Shan Yingying, Du Chungui, Chen Shiqin, Yin Wenxiu, Yang Fei, Shao Yuran, Wang Yuting
College of Chemistry and Materials Engineering, Zhejiang A & F University, Hangzhou 311300, China.
Polymers (Basel). 2022 Nov 1;14(21):4652. doi: 10.3390/polym14214652.
To reduce the oxidative degradation of citral and improve its antimildew performance, citral was modified with natural antioxidants such as tea polyphenols, ascorbic acid, and theaflavin in the present study. Additionally, the effects of these natural antioxidants on the citral degradation rate and DPPH radical-scavenging rate, as well as the effectiveness of antioxidant-modified citral in the antimildew treatment of bamboo were investigated. Ascorbic acid, theaflavin, and tea polyphenols improved the antioxidant performance of citral to some extent, and the tea polyphenols exhibited the best antioxidant performance. When the amount of tea polyphenols added to citral reached 1.0%, the oxidative degradation of citral was effectively prevented. Compared with citral, tea-polyphenol-modified citral could reduce the efficacy of the bamboo antimildew treatment against all four mildews and the effectiveness of the antimildew treatment reached 100%. Citral modification with antioxidants reduced the amount of citral required in the treatment, thereby reducing the treatment cost for bamboo mildew.
为减少柠檬醛的氧化降解并提高其防霉性能,本研究采用茶多酚、抗坏血酸和茶黄素等天然抗氧化剂对柠檬醛进行改性。此外,还研究了这些天然抗氧化剂对柠檬醛降解率和DPPH自由基清除率的影响,以及抗氧化剂改性柠檬醛在竹子防霉处理中的效果。抗坏血酸、茶黄素和茶多酚在一定程度上提高了柠檬醛的抗氧化性能,其中茶多酚表现出最佳的抗氧化性能。当添加到柠檬醛中的茶多酚量达到1.0%时,可有效防止柠檬醛的氧化降解。与柠檬醛相比,茶多酚改性柠檬醛对四种霉菌的竹子防霉处理效果均有所降低,防霉处理效果达到100%。用抗氧化剂对柠檬醛进行改性减少了处理所需的柠檬醛用量,从而降低了竹子防霉处理成本。