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Tips About Dry Ice Blasting Services

By John Parker


There are various methods that have been used in the cleaning of surfaces and objects. One of these methods is the carbon dioxide cleaning which is used in the cleaning sector. In this cleaning method there is dry ice blasting. In this method carbon dioxide is used in the form of a solid. The solid is compressed then it is released at a high speed on the surface to be cleaned. This is what one should know about Dry Ice Blasting Services.

An alternative method to the use of dry ice is ice blasting, which involves the use of water-ice for cleaning. This technique of abrasive cleaning is similar to other methods such as plastic bead blasting, sodablasting, and sandblasting. There are several other abrasive materials that may be used in addition to the ones named above. The only difference between these methods is the abrasive medium that is used.

At a high speed, the pellets of solid carbondioxide are driven by the blasting machine towards the surface. Pellets made from solid carbon dioxide are relatively soft and less dense in comparison to sand and soda materials. The materials sublime promptly once they make an impact on a surface. At the site of work, no solid material is left.

Transfer of minimum kinetic energy on a surface being cleaned occurs whenever instant sublimation of pellets occurs. There are low chances of the surfaces being ruined by pellets. Delicate surfaces such as glass surfaces find it advantageous to use the method. No residue is left on surfaces when sublimation of pellets takes place.

Another importance of the sublimation is that it absorbs the heat generated during the cleaning leading to the production of shear stresses. Shear stresses results from thermal shocks. The absorption of heat from the surfaces being cleaned makes the dirt particles and contaminants to be easily removed. This improves the cleaning capability of the pellets. Surfaces that conduct heat are more effective and are suitable for this cleaning method.

This technique finds use in many applications. It is particularly important in the cleaning and sanitation of processing equipment in food industry because it is effective at removing Salmonella enteritidis, Listeria monocytogenes, and E. Coli among many other microorganisms. Microorganisms are removed effectively to a point that they cannot be detected through conventional microbiological techniques. The method can also be used to clean equipment without having to disassemble them.

The use of this method in cleaning presents no electrical or fire hazard. For instance, it finds a lot of use in semiconductor and aerospace industries. Its adoption in other industries is also growing at a very high rate. The advantages presented by the method makes it to be recommended as a suitable alternative for many solvent-type cleaning methods.

High concentrations of carbon dioxide above 1% are very hazardous. It causes a condition of asphyxia as it displaces oxygen. Therefore this method should be used for cleaning in well-ventilated areas. The rooms should have vents in order to direct the exhaust gases outside.




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