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A study of the properties of chlorine dioxide gas as a fumigant

机译:二氧化氯气体作为熏蒸剂的特性研究

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Chlorine dioxide (ClO2) is a strong oxidant that possesses an antimicrobial activity. We demonstrated here that ClO2 gas is easily generated by mixing 3.35% sodium chlorite solution (Purogene) and 85% phosphoric acid at a 10:1 volume ratio without using an expensive machine. In a test room (87 m3), experiments were carried out using various amounts of sodium chlorite solution (0.25 ml/m3 to 20.0 ml/m3). The gas concentration increased in a sodium chlorite volume-dependent manner and reached peak values of from 0.8 ppm to 40.8 ppm at 2 h–3 h, and then gradually decreased. No differences in gas concentrations were observed between 0.1 and 2.5 m above the floor, indicating that the gas was evenly distributed. Under high-humidity (approximately 80% relative humidity), colony formation of both Staphylococcus aureus and Escherichia coli was completely inhibited by ClO2 gas exposure at 1.0 ml/m3 sodium chlorite solution (mean maximal concentration of 3.0 ppm). Exposure at 4.0 ml/m3 sodium chlorite solution (mean maximal concentration of 10.6 ppm) achieved complete inactivation of Bacillus atrophaeus spores. In contrast, without humidification, the efficacy of ClO2 gas was apparently attenuated, suggesting that the atmospheric moisture is indispensable. Delicate electronic devices (computer, camera, etc.) operated normally, even after being subjected to more than 20 times of fumigation. Considering that our method for gas generation is simple, reproducible, and highly effective at decontaminating microbes, our approach is expected to serve as an inexpensive alternative method for cleaning and disinfecting animal facilities.
机译:二氧化氯(ClO 2 )是一种强氧化剂,具有抗菌活性。我们在这里证明,无需使用昂贵的机器,通过将3.35%的亚氯酸钠溶液(Purogene)和85%的磷酸以10:1的体积比混合即可轻松产生ClO 2 气体。在测试室(87 m 3 )中,使用各种量的亚氯酸钠溶液(0.25 ml / m 3 至20.0 ml / m 3)进行实验)。气体浓度以亚氯酸钠体积依赖性方式增加,并在2 h至3 h达到峰值,从0.8 ppm到40.8 ppm,然后逐渐降低。在地板上方0.1至2.5 m之间未观察到气体浓度差异,表明气体分布均匀。在高湿度(约80%相对湿度)下,ClO 2 气体暴露于1.0 ml / m 3 钠中可完全抑制金黄色葡萄球菌和大肠杆菌的菌落形成。亚氯酸盐溶液(平均最大浓度为3.0 ppm)。在4.0 ml / m 3 亚氯酸钠溶液(平均最大浓度为10.6 ppm)下暴露,可以完全灭活萎缩芽孢杆菌的孢子。相反,在不加湿的情况下,ClO 2 气体的功效明显减弱,表明大气中的水分是必不可少的。即使经过20倍以上的熏蒸,精致的电子设备(计算机,照相机等)也可以正常工作。考虑到我们的气体产生方法简单,可重现并且在净化微生物方面非常有效,因此我们的方法有望用作清洁和消毒动物设施的廉价替代方法。

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