Thurston-Enriquez Jeanette A, Haas Charles N, Jacangelo Joseph, Gerba Charles P
US Department of Agriculture-Agricultural Research Service, 120 Keim Hall, University of Nebraska East Campus, Lincoln, Nebraska 68583-0934, USA.
Appl Environ Microbiol. 2005 Jun;71(6):3100-5. doi: 10.1128/AEM.71.6.3100-3105.2005.
Chlorine dioxide (ClO2) inactivation experiments were conducted with adenovirus type 40 (AD40) and feline calicivirus (FCV). Experiments were carried out in buffered, disinfectant demand-free water under high- and low-pH and -temperature conditions. Ct values (the concentration of ClO2 multiplied by contact time with the virus) were calculated directly from bench-scale experiments and from application of the efficiency factor Hom (EFH) model. AD40 Ct ranges for 4-log inactivation (Ct99.99%) at 5 degrees C were >0.77 to <1.53 mg/liter x min and >0.80 to <1.59 mg/liter x min for pH 6 and 8, respectively. For 15 degrees C AD40 experiments, >0.49 to <0.74 mg/liter x min and <0.12 mg/liter x min Ct99.99% ranges were observed for pH 6 and 8, respectively. FCV Ct99.99% ranges for 5 degrees C experiments were >20.20 to <30.30 mg/liter x min and >0.68 mg/liter x min for pH 6 and 8, respectively. For 15 degrees C FCV experiments, Ct99.99% ranges were >4.20 to <6.72 and <0.18 mg/liter x min for pH 6 and 8, respectively. Viral inactivation was higher at pH 8 than at pH 6 and at 15 degrees C than at 5 degrees C. Comparison of Ct values and inactivation curves demonstrated that the EFH model described bench-scale experiment data very well. Observed bench-scale Ct99.99% ranges and EFH model Ct99.99% values demonstrated that FCV is more resistant to ClO2 than AD40 for the conditions studied. U.S. Environmental Protection Agency guidance manual Ct99.99% values are higher than Ct99.99% values calculated from bench-scale experiments and from EFH model application.
开展了二氧化氯(ClO₂)对40型腺病毒(AD40)和猫杯状病毒(FCV)的灭活实验。实验在缓冲的、无消毒需求的水中,于高、低pH值和温度条件下进行。Ct值(ClO₂浓度乘以与病毒的接触时间)直接通过实验室规模实验以及应用效率因子Hom(EFH)模型计算得出。5℃时,AD40实现4对数级灭活(Ct99.99%)的Ct值范围,pH值为6时>0.77至<1.53毫克/升·分钟,pH值为8时>0.80至<1.59毫克/升·分钟。对于15℃的AD40实验,pH值为6时Ct99.99%范围为>0.49至<0.74毫克/升·分钟,pH值为8时<0.12毫克/升·分钟。5℃时FCV实验的Ct99.99%范围,pH值为6时>20.20至<30.30毫克/升·分钟,pH值为8时>0.68毫克/升·分钟。对于15℃的FCV实验,pH值为6时Ct99.99%范围为>4.20至<6.72,pH值为8时<0.18毫克/升·分钟。在pH值为8时的病毒灭活率高于pH值为6时,在15℃时高于5℃时。Ct值与灭活曲线的比较表明,EFH模型能够很好地描述实验室规模实验数据。观察到的实验室规模Ct99.99%范围和EFH模型Ct99.99%值表明,在所研究的条件下,FCV对ClO₂的抗性比AD40更强。美国环境保护局指导手册中的Ct99.99%值高于通过实验室规模实验和应用EFH模型计算得出的Ct99.99%值。