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离子溅射银对光电协同灭青霉菌的影响

王熠 叶盛英 凡明朗 李利钦 崔晓雷 张全

农业工程学报2017,Vol.33Issue(6):288-294,7.
农业工程学报2017,Vol.33Issue(6):288-294,7.DOI:10.11975/j.issn.1002-6819.2017.06.037

离子溅射银对光电协同灭青霉菌的影响

Effect of ion sputtering Ag on photoelectric synergism for disinfection of Penicillium

王熠 1叶盛英 1凡明朗 1李利钦 1崔晓雷 1张全1

作者信息

  • 1. 华南农业大学食品学院,广州 510642
  • 折叠

摘要

Abstract

Horticultural products are easy to be infected by microorganisms, which often causes great waste of resources and huge loss of economy, so it is imperative to inhibit the activity of the microorganisms in the storage environment of the harvesting horticultural products. As the representative of the Penicilliumfungal infection is a major cause for decayed fruits and vegetables, fungaltoxin derived from Penicillium will do huge harm to people with strong stability and cancerigenic toxin after infecting vegetables and fruits. In this article, we did some research about how to use nano titanium dioxide (TiO2) to inhibit the activity ofPenicillium fungus in simulated refrigeration environment. NanoTiO2 is a new type of nano semiconductor material, which is widely concerned due to its special properties. When irradiated by excited light, TiO2 would generate electron-hole pairs, then the pairs could produce ?O2- and free radicals (HO?) with high oxidative activity, which can degrade most organic compounds to non-toxic CO2 and H2O. They also have direct effect on bacteria , leading to cell death. However, the photo electrons and holes are very easy to be combined, which makes the high redox activity lost. This experiment was carried out from two aspects: heavy metals modifying and voltage applying. It was found that heavy metals could change the distribution of the electrons in the surface of TiO2, this could reduce the electron-hole pair of the composite probability and improve the quantum effect of TiO2. When using TiO2 film electrode photo-catalyst to degrade the organic compounds through applying a small positive voltage between the electrolytic tank poles, it could drive the photo-induced electrons in anode to flow to cathode, and reduce the chance of combination of electrons and holes, resulting in high concentration of hydroxyl radicals and improving the degradation efficiency of organic pollutants. In this study, we choose the activated carbon fiber (ACF) as carrier, nanoTiO2 with heavy metal nano-Ag deposition (Ag-TiO2/ACF) were prepared by ion sputtering. The effect of TiO2-ACF with heavy metal Ag modification on the photoelectric synergism for disinfection of Penicillium was also invested. The results showed that the different sputtering treatment in experiments presented different effects, and the underlying sputtering exhibited the best performance. The apparent rate constant of Penicillium disinfection reached the highest at 120 s which increased by 39.4% comparing with the contrast. On the other hand, applied voltage can significantly improve thePenicillium disinfection rate of TiO2-ACF film, but less significant improvement for the Ag-ACF/TiO2 film. The optimal value are 75 V, and photoelectric synergism effect in this case is better than the use of photo-catalyst or electro-catalyst separately. It can be found that ion sputtering achieved the well distribution of Ag-TiO2 particles on the surface and inside of ACF film when analyze the characterization of ACF film.

关键词

霉菌/农产品/光催化/二氧化钛/活性炭纤维薄膜/离子溅射/灭活青霉菌/光电协同

Key words

fungus/agricultural products/photocatalysis/titanium dioxide/activated carbon fiber film/ion sputtering/Penicillium disinfection/photoelectric synergism

分类

轻工纺织

引用本文复制引用

王熠,叶盛英,凡明朗,李利钦,崔晓雷,张全..离子溅射银对光电协同灭青霉菌的影响[J].农业工程学报,2017,33(6):288-294,7.

基金项目

国家自然科学基金项目(30571075) (30571075)

农业工程学报

OA北大核心CSCDCSTPCD

1002-6819

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