POSITION:            HOME》OZONE APPLICATION》INDUSTRIAL CIRCULATORY WATER TREATMENT
Circulating Water Treatment Industry
Cooling cycle of ozone for water treatment biocide
Ozone is a strong oxidizing gas but unstable. In aqueous solution, ozone maintained a strong oxidizing.
As a biocide, ozone mechanism and the role of other oxidative biocide there are many similarities. Ozone and protein combination,
damaged cell respiration indispensable reductase activity.
Ozone bacteriological examination of the cells after it was found that cells have lost their lives to maintain the cytoplasm and was
damaged.
And chlorine difference is that the use of ozone for biocide will not increase the concentration of chloride ions in water, cooling water
discharge will not pollute the environment or harm aquatic organisms, because ozone in the photosynthesis of decomposition will
generate oxygen.
Ozone is by dry air or oxygen through a tube in the ozone generator generated gases. Add ozone, the first it will be dissolved in water
and then dissolved into the water with ozone in the cooling water
Ozone can be injected from different parts of the cooling water system. For example, can be added to collect water cooling towers, or
added to the cooling water circulation pump export side. In a relatively simple cooling water system, simply by adding a sufficient
ozone; for the complex, there are a number of the slip road system, it is recommended several different sites by adding ozone, the
ozone in the water would be distributed more evenly .
In the development of ozone rules, the need to consider the important parameters are: the cooling water system of working
conditions, water, add water and recycling water quality, in particular the COD and PH value.
The use of ozone for biocide, in the cooling water system can no longer generate biological sediments. Originally exist in the cooling
water system of sediment and algae in the cooling tower has disappeared, circulating cooling water becomes clear, transparent,
abnormal number of bacteria than previously greatly reduced the effect of heat transfer significantly improved.

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