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Low-VOC paint means that the paint contains less than 50 grams per liter of volatile organic compounds. No-VOC or zero-VOC paint can still have some VOCs, but it must have less than 5 grams per liter. Even if they have no or low VOC, these paints may still contain other harmful chemicals.
The World Health Organization (WHO) recommends a guideline value of 0.3 mg/m (milligrams per cubic meter) for total VOCs in indoor air. Its important to consult specific guidelines provided by relevant regulatory agencies and organizations in your country or region, as these values can differ.
A: To calculate the VOC of a coating from a Material Safety Data Sheet (MSDS) one needs to multiply the percent weight (organic) solvent (% Wt. solvents), or (% Wt. volatiles) by the density of the coating. Density is sometimes given as WPG (weight per gallon).
The most common tool used by professionals to measure VOCs in a property is a photoionization detector, or PID. These instruments typically are handheld and approximate the total level of VOCs in the air.
A MSDS or SDS typically also contains the VOC information you need. Start with this document. If a MSDS doesnt already come with the product when you purchase it, contact the manufacturer. The Physical and Chemical Properties section of a MSDS or SDS will typically have VOC information.
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Volatile organic compounds (VOC) means any compound of carbon, excluding carbon monoxide, carbon dioxide, carbonic acid, metallic carbides or carbonates and ammonium carbonate, which participates in atmospheric photochemical reactions, except those designated by EPA as having negligible photochemical reactivity2.
VOCs typically are industrial solvents, such as trichloroethylene; fuel oxygenates, such as methyl tert-butyl ether (MTBE); or by-products produced by chlorination in water treatment, such as chloroform. VOCs are often components of petroleum fuels, hydraulic fluids, paint thinners, and dry cleaning agents.
The two most commonly used methods for VOC statistical analysis are Flame Ionisation Detection and Photo Ionisation Detection. Both methods measure the number of chemicals in the air on the assumption that most organic vapors produce positively charged carbon ions when they combust(1).

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