Thursday, February 1, 2018

An Insight On Ozone Water Treatment Systems

By Steven Scott


Ideally, not all waters are safe to be put to industrial or domestic uses. Because of this, various techniques are depended on in making them safe for these various uses. The common cure techniques are either organic or chemical-based. Ozone Water Treatment Systems, nonetheless, offers a more effective way of curing water both for domestic and commercial uses.

Ozone is generally an unstable part of air made of three oxygen atoms which degenerate to leave behind a reactive oxygen atom. The gas has an effective disinfecting effect that reacts with viruses and viruses as compared to the action of chlorine. The oxidizing properties can as well reduce sulfur, manganese and iron concentration and eliminate any existent odor or taste. Because of these properties, it is depended on in water cure and filtration process.

This means of filtration has been in use over a number of decades but with some few innovations to the process. Homes, for example, can make orders for reasonable priced units. The units used in home treatments come with operation manuals to aid in proper treatment. The methods use no chemicals at any point of the treatment so that environmental effects and effects to users are alleviated.

Non-chemical purification methods such as this are actually promoted all-round the globe. This since they pose no threats to the environment unlike when chemicals are used. Aside the environmental effects, the use of chemicals leave behind unpleasant tastes and smell if used for purification.

With the technique, air ozonation is carried out normally using corona discharge ozone generators and ultraviolet radiation generators which are able to discharge electric fields to create ozone gas. This is generally achievable when clean dry air is passed through high volt electric field discharges. Smallholder treatments usually rely on the UV ozonation process while large-scale purifiers use the corona discharge generators.

Once the gas is generated, residual organic particles and chemical are removed through coagulation or chemical oxidation. Subsequent to this, the ozone gas is passed through the raw water via valves which usually create vacuums to suck the gas or alternatively bubbling. This action kills bacteria and germs. Metals or other compounds could be left after the reaction and this is usually removed via a post-filtration process.

Relying on this gas in purifications comes with various benefits. First is that the gas reacts rapidly on bacteria, protozoans, and viruses, through its germicidal effect and gives a better outcome compared to chlorination. Additionally, it presents a strong oxidizing effect achieved within short durations. This is on top of the non-reliance on chemicals to treated waters.

In its use, the process usually eliminates a number of microbial, inorganic and organic elements. Again, issues of taste and odor are eliminated. Some few disadvantages are however attributed to its use. These are such as high equipment costs as well as the operation costs on the equipment being high. Also, special techniques in mixing are usually required to have the gas mixed with water as it is not easily soluble. Nonetheless, the process has the backing of medics for the various health benefits it presents.




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