THE INTERACTION OF SILVER IONS AND HYDROGEN-PEROXIDE IN THE INACTIVATION OF ESCHERICHIA-COLI - A PRELIMINARY EVALUATION OF A NEW LONG-ACTING RESIDUAL DRINKING-WATER DISINFECTANT

被引:56
作者
PEDAHZUR, R
LEV, O
FATTAL, B
SHUVAL, HI
机构
[1] Division of Environmental Sciences, Fredy and Nadine Herrmann School of Applied Science, Hebrew University of Jerusalem, Jerusalem
关键词
DISINFECTION; SILVER; HYDROGEN PEROXIDE; SYNERGISM; E; COLI-B;
D O I
10.1016/0273-1223(95)00252-I
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The inactivation efficiencies of silver ions, hydrogen peroxide and their combination was studied as part of a performance evaluation of the combined disinfectant for drinking water applications. The major advantages of such combined disinfectant include, low toxicity of its components, long lasting residual effect and low disinfection by product formation. Specific strains of E. coli (E. coli-B (SR-9) and E. coli K-12) were used in this study as target microorganisms and the separate and combined inactivation efficiencies of silver and hydrogen peroxide were evaluated at different concentrations and exposure durations. Both, silver and hydrogen peroxide exhibited a significant inactivation performance even at concentrations that do not pose any health risk according to the EEC, WHO and the USEPA (the USEPA Maximum Contaminant Level (MCL) of silver is 90 ppb, and currently, there is no MCL for hydrogen peroxide but it is approved as a food additive in the USA). Combinations of 1:1000 silver:hydrogen peroxide (w) exhibited higher inactivation performance as compared with each of the disinfectants alone and in some cases a synergistic effect was observed, i.e., the combined disinfectant exhibited higher inactivation performance than the sum of the inactivation levels of the separate disinfectants. Thus, for example, one hour exposure to 30 ppb silver, 30 ppm hydrogen peroxide and their combination yielded 2.87, 0.65 and 5 logs of inactivation respectively. While the rate of inactivation shown by this combined disinfectant, now available commercially in a stabilized formulation is relatively slow, it may well hold promise as a secondary disinfectant providing long lasting residuals and biofilm control required for distribution systems. Its disinfection action may de similar to chloramines, the use of which has been recently outlawed in France and in Germany and which are now under careful scrutiny in other countries due to the formation of undesirable by-products.
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页码:123 / 129
页数:7
相关论文
共 21 条
[1]  
BARAN V, 1987, TESTING SANOSIL SUPE
[2]  
BELL FA, 1991, J AM WATER WORKS ASS, V83, P74
[3]  
CHAMBERS CW, 1962, J AM WATER WORKS ASS, V5, P208
[4]  
GARDINER RE, 1983, ANN ARBOR SCI PUB AN, V405
[5]  
JACANGELO JG, 1991, J AM WATER WORKS ASS, V85, P80
[6]  
Jolley R. L., 1990, WATER CHLORINATION C, V6
[7]  
KOPFLER F. C., 1991, HLTH EFFECTS DISINFE
[8]   MICROBIOLOGICAL EVALUATION OF COPPER - SILVER DISINFECTION UNITS FOR USE IN SWIMMING POOLS [J].
LANDEEN, LK ;
YAHYA, MT ;
KUTZ, SM ;
GERBA, CP .
WATER SCIENCE AND TECHNOLOGY, 1989, 21 (03) :267-270
[9]   EFFICACY OF COPPER AND SILVER IONS AND REDUCED LEVELS OF FREE CHLORINE IN INACTIVATION OF LEGIONELLA-PNEUMOPHILA [J].
LANDEEN, LK ;
YAHYA, MT ;
GERBA, CP .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1989, 55 (12) :3045-3050
[10]   MECHANISMS OF BACTERIAL SURVIVAL IN CHLORINATED DRINKING-WATER [J].
LECHEVALLIER, MW ;
CAWTHON, CD ;
LEE, RG .
WATER SCIENCE AND TECHNOLOGY, 1988, 20 (11-12) :145-151