Preparation and antimicrobial effect of a cinnamaldehyde-based sustained release fumigant tablet for grain storage

肉桂醛 抗菌剂 碳酸氢钠 食品科学 柠檬酸 材料科学 烟曲霉 化学 毒理 微生物学 有机化学 生物 催化作用
作者
Wenwen Guo,Xin Wang,Jiali Huang,Wei Cai,Junling Wang,Lei Song,Yuan Hu,Zhou Gui
出处
期刊:Journal of materials research and technology [Elsevier BV]
卷期号:9 (6): 14122-14130 被引量:6
标识
DOI:10.1016/j.jmrt.2020.09.130
摘要

Currently, aluminum phosphide tablets have been extensively used as fumigant for grain storage because they could release phosphine that shows highly efficient anti-microorganism. However, phosphine is highly toxic and flammable which usually causes production accidents. Therefore, this study aimed to develop a novel fumigant based on cinnamaldehyde and study its antimicrobial efficacy for grain storage. The novel fumigant tablet was composed of cinnamaldehyde, silica, citric acid and sodium bicarbonate. Results showed that mesoporous silica with ultra-high specific surface area (1036.5 m2/g) served as carrier for cinnamaldehyde. The mixture of citric acid and sodium bicarbonate reacted with moisture to generate carbon dioxide which was helpful to release cinnamaldehyde. As expected, the fumigant tablet displayed a sustained release effect. The in vitro culture experiments showed that cinnamaldehyde had high antimicrobial effect against five fungi including Aspergillus flavus, Aspergillus candidus, Aspergillus niger, Fusarium and Penicillium. In the accelerated mildew simulation experiment (temperature: 35 °C, humidity: 98%), the blank group without mildew preventive began to go mouldy after five days, the control group with only cinnamaldehyde became mildew one week later, whereas there was no visible mildew growth in the experimental group with the fumigant tablet after one week. The number of fungal colonies in the blank group and the control group after one week was 8.3 × 104 and 6.5 × 103 CFU/g, respectively, while there were no fungi detected in the experimental group. This cinnamaldehyde-based fumigant tablet is a green and safe mildew preventive, which provides an alternative solution to aluminum phosphide tablet for grain storage.
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