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铜、银和氯对大肠杆菌噬菌体MS-2和脊髓灰质炎病毒的灭活作用。

Inactivation of coliphage MS-2 and poliovirus by copper, silver, and chlorine.

作者信息

Yahya M T, Straub T M, Gerba C P

机构信息

County Sanitation Districts of Los Angeles County, San Jose Water Quality Laboratory, Whittier, CA 90601.

出版信息

Can J Microbiol. 1992 May;38(5):430-5. doi: 10.1139/m92-072.

Abstract

The efficacy of electrolytically generated copper and silver ions (400 and 40 micrograms/L, respectively) was evaluated separately and in combination with free chlorine (0.2 and 0.3 mg/L) for the inactivation of coliphage MS-2 and poliovirus type 1 in water at pH 7.3. The inactivation rate was calculated as log10 reduction/min: k = -(log10 Ct/C0)/t. The inactivation of both viruses was at least 100 times slower in water containing 400 and 40 micrograms/L copper and silver, respectively (k = 0.023 and 0.0006 for MS-2 and poliovirus, respectively), compared with water containing 0.3 mg/L free chlorine (k = 4.88 and 0.036). Significant increases in the inactivation rates of both viruses were observed in test systems containing 400 and 40 micrograms/L copper and silver, respectively, with 0.3 mg/L free chlorine when compared with the water systems containing either metals or free chlorine alone. Poliovirus was approximately 10 times more resistant to the disinfectants than coliphage MS-2. This observation suggests either a synergistic or an additive effect between the metals and chlorine for inactivation of enteric viruses. Use of copper and silver ions in water systems currently used in swimming pools and spas may provide an alternative to high levels of chlorination.

摘要

分别评估了电解产生的铜离子和银离子(分别为400和40微克/升)以及它们与游离氯(0.2和0.3毫克/升)组合对pH 7.3水中大肠杆菌噬菌体MS-2和脊髓灰质炎病毒1型的灭活效果。灭活率计算为log10减少量/分钟:k = -(log10 Ct/C0)/t。与含有0.3毫克/升游离氯的水(MS-2和脊髓灰质炎病毒的k分别为4.88和0.036)相比,在分别含有400和40微克/升铜和银离子(MS-2和脊髓灰质炎病毒的k分别为0.023和0.0006)的水中,两种病毒的灭活速度至少慢100倍。与仅含有金属或游离氯的水系统相比,在分别含有与0.3毫克/升游离氯组合的400和40微克/升铜和银离子的测试系统中,观察到两种病毒的灭活率显著提高。脊髓灰质炎病毒对消毒剂的抗性比大肠杆菌噬菌体MS-2高约10倍。这一观察结果表明金属和氯在灭活肠道病毒方面存在协同或相加作用。在目前用于游泳池和水疗池的水系统中使用铜离子和银离子可能为高剂量氯化消毒提供一种替代方法。

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