You've had a fire. The fire department has come, put the fire out and all you see is a single massive mess. Upon closer investigation inquiries come.

I. In case people require to learn more about, there are lots of online resources people should think about pursuing. What approach do we use to remove the soot and charcoal to evaluate the damage?

- High stress water blasting leaves behind water in electrical components, gear and insulation, if not effectively removed will trigger undesirable corrosion and rot, increasing cleanup, damage and long term upkeep expenses.

- Soda blasting leaves water and soda behind, which demands added cleanup, escalating cleanup, damage and extended term maintenance costs.

- Sand blasting leaves abrasive blast media behind, which if not cleaned up effectively continues to lead to harm in electrical components, gears and bearings. It continues to fall from horizontal surfaces, cracks and beams years right after the job is completed, growing cleanup, damage and lengthy term

upkeep expenses.

- Dry ice blasting is the ultimate surface cleaning approach, it leaves no secondary waste stream behind. The only cleanup soon after the dry ice blasting job is done is the removal of the debris triggered by the fire.

II. How do we remove the soot, charcoal and smoke film from masonry and steel surfaces?

- Once more this is an outstanding application for dry ice blasting. Watch the movie clips on our net internet site to see how dry ice blasting cleans soot, smoke and charcoal from different types of surfaces.

III. Will we be in a position to eliminate that awful smoke smell?

- The removing of the smell is accomplished by removing the smell supply and/or sealing the smell source to encapsulate it. Dry ice blasting removes the soot, charcoal and smoke film, which is the smell source, from accessible regions.

- In the course of a fire air currents carry smoke and soot into cracks, openings and locations not in close proximity to the fire itself, extra cleaning and/or sealing of these locations and inaccessible locations might be needed.

IV. Can we accomplish our cleanup with out adding hazards to our atmosphere?

- Dry ice blasting is safe and environmentally friendly. Dry ice is pure CO2 in its solid state, it is in its gaseous state in the air about us. When we inhale our bodies use the oxygen and we exhale CO2. Green plants take CO2 from the air and give off oxygen.

- Dry ice blasting is non-toxic, non-conductive and there is no employee exposure to hazardous cleaning chemical compounds or options. Dry ice blasting meets the guidelines of the USDA, EPA, and the FDA.. I found out about by browsing Google Books. Click this web page to read the reason for it.

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