[Study of the mechanisms of interaction between intestinal bacteriophages and polyaluminum coagulants].

@article{Korchak2011StudyOT,
  title={[Study of the mechanisms of interaction between intestinal bacteriophages and polyaluminum coagulants].},
  author={G. I. Korchak and Elena Surmasheva and I N Skorokhod and A. I. Mikhienkova and A K Gorval' and N A Nikonova},
  journal={Gigiena i sanitariia},
  year={2011},
  volume={3},
  pages={84-8}
}
The authors have investigated the adsorption-elution of intestinal bacteriophages T2 and MS2 as a model of enteric viruses, by using the coagulants aluminum oxychloride (AOX78) and aluminum sulfate (AS). The investigation has ascertained the effective removal of the phages from water with AOX78 (98.7-100%) and the low efficiency of elution of coliphages from the particles of AOX hydrolysis products (0.1-3.7% of the baseline count of bacteriophages), which may suggest that AOX has antiviral… CONTINUE READING

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The investigation has ascertained the effective removal of the phages from water with AOX78 ( 98.7 - 100% ) and the low efficiency of elution of coliphages from the particles of AOX hydrolysis products ( 0.1 - 3.7% of the baseline count of bacteriophages ) , which may suggest that AOX has antiviral activity .
The investigation has ascertained the effective removal of the phages from water with AOX78 ( 98.7 - 100% ) and the low efficiency of elution of coliphages from the particles of AOX hydrolysis products ( 0.1 - 3.7% of the baseline count of bacteriophages ) , which may suggest that AOX has antiviral activity .
The investigation has ascertained the effective removal of the phages from water with AOX78 ( 98.7 - 100% ) and the low efficiency of elution of coliphages from the particles of AOX hydrolysis products ( 0.1 - 3.7% of the baseline count of bacteriophages ) , which may suggest that AOX has antiviral activity .
The investigation has ascertained the effective removal of the phages from water with AOX78 ( 98.7 - 100% ) and the low efficiency of elution of coliphages from the particles of AOX hydrolysis products ( 0.1 - 3.7% of the baseline count of bacteriophages ) , which may suggest that AOX has antiviral activity .
The investigation has ascertained the effective removal of the phages from water with AOX78 ( 98.7 - 100% ) and the low efficiency of elution of coliphages from the particles of AOX hydrolysis products ( 0.1 - 3.7% of the baseline count of bacteriophages ) , which may suggest that AOX has antiviral activity .
The investigation has ascertained the effective removal of the phages from water with AOX78 ( 98.7 - 100% ) and the low efficiency of elution of coliphages from the particles of AOX hydrolysis products ( 0.1 - 3.7% of the baseline count of bacteriophages ) , which may suggest that AOX has antiviral activity .
The investigation has ascertained the effective removal of the phages from water with AOX78 ( 98.7 - 100% ) and the low efficiency of elution of coliphages from the particles of AOX hydrolysis products ( 0.1 - 3.7% of the baseline count of bacteriophages ) , which may suggest that AOX has antiviral activity .
The investigation has ascertained the effective removal of the phages from water with AOX78 ( 98.7 - 100% ) and the low efficiency of elution of coliphages from the particles of AOX hydrolysis products ( 0.1 - 3.7% of the baseline count of bacteriophages ) , which may suggest that AOX has antiviral activity .
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