US EPA guidance on indoor air quality, radon and mold
Official US EPA guidance on indoor air quality in homes and commercial buildings: pollutant sources, ventilation, IAQ management for building owners and facility managers, radon testing and mitigation (including for home sales), mold and moisture control, and choosing air cleaners and HVAC filters. Curated by Kopik from public sources: U.S. Environmental Protection Agency (US public domain).
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This assistant answers questions about indoor air quality in homes and commercial buildings for homeowners, renters, home buyers and sellers, and facility managers. Its answers come from six official U.S. Environmental Protection Agency (EPA) guides on indoor pollutants, radon, mold and moisture, air cleaners, and building IAQ management.
Why indoor air deserves attention
According to EPA's The Inside Story, the air inside homes and other buildings can be more seriously polluted than outdoor air, even in large industrialized cities. Since people spend approximately 90 percent of their time indoors, the health risks from indoor air may be greater for many people than those from outdoor air.
Pollutants come from combustion appliances, tobacco smoke, building materials, household products and furnishings. When there is little infiltration or ventilation, the air exchange rate is low and pollutant levels can build up. Immediate effects include irritation of the eyes, nose and throat, headaches, dizziness and fatigue.
The guide also points to combustion as a frequent source: an improperly adjusted gas stove, for example, can emit significantly more carbon monoxide than a properly adjusted one, and gases and particles can come from poorly maintained chimneys, flues and cracked furnace heat exchangers.
Three basic strategies: source control, ventilation, air cleaning
EPA states that the most effective way to improve indoor air is usually to eliminate sources of pollution or reduce their emissions. Some sources can be sealed or enclosed, others, like gas stoves, can be adjusted. Source control is often more cost-efficient than increasing ventilation.
Ventilation comes next. Most home heating and cooling systems do not mechanically bring fresh air into the house, so opening windows when the weather permits and using bathroom or kitchen fans that exhaust outdoors help, especially while painting, cooking or sanding. Air cleaning is a supplement to these two steps, not a replacement.
For new construction, EPA notes that advanced home designs are starting to include mechanical systems that bring outdoor air inside, some with energy-efficient heat recovery ventilators (also called air-to-air heat exchangers).
Radon: the basics of testing and fixing a home
Radon is a radioactive gas you cannot see, smell or taste. It enters through cracks and openings in the foundation, and sometimes through well water, and any home can have a radon problem: EPA estimates that nearly one out of every 15 homes in the United States has an elevated level (4 pCi/L or more). The Surgeon General has warned that radon is the second leading cause of lung cancer in the United States, after smoking.
EPA recommends fixing a home at 4 picocuries per liter (pCi/L) or higher. Short-term tests stay in place two to 90 days; long-term tests more than 90 days and better reflect the year-round average. A first short-term result of 4 pCi/L or more calls for a follow-up test.
The main fix is a soil suction system: a vent pipe and fan that pull radon from beneath the house and vent it outside. Some systems reduce levels by up to 99%.
Indoor air quality in offices and commercial buildings
EPA's Building Air Quality guide names four elements behind IAQ problems: a source of contamination or discomfort, an HVAC system that cannot control existing contaminants and ensure thermal comfort, pathways connecting the source to occupants, and the occupants themselves.
It recommends designating an IAQ manager and building an IAQ profile in three stages: review existing records, conduct a walkthrough inspection, then collect detailed information on the HVAC system, pathways, sources and occupancy. Peak carbon dioxide over 1000 ppm indicates underventilation. Complaints may also stem from noise, lighting or ergonomic stress rather than air.
The guide warns that limiting operating costs by reducing ventilation can be a false economy if it leads to more occupant complaints, reduced productivity and absenteeism. Every complaint merits a response, and if problems persist after careful application of the guidance, outside help will probably be needed.
Questions fréquentes
Is a radon level below 4 pCi/L safe?
EPA says there is no known safe level of radon, and levels below 4 pCi/L still pose some risk that can often be reduced. The average indoor level is estimated at about 1.3 pCi/L.
Where should a radon test kit be placed?
The Citizen's Guide says to place it in the lowest lived-in level of the home, for example the basement if it is frequently used, otherwise the first floor. For short tests of two or three days, windows and outside doors should be closed at least 12 hours before the test begins.
Can radon come from my water supply?
Yes. The Citizen's Guide names two main sources of radon in indoor air: the soil and the water supply. A problem is more likely when water comes from ground water, such as a private well. If you are on a public water supply and are concerned, contact your water supplier.
What is the difference between sick building syndrome and building-related illness?
Sick building syndrome describes acute health and comfort effects linked to time spent in a building when no specific illness or cause can be identified. Building-related illness refers to diagnosable illness that can be directly attributed to airborne agents in the building, such as Legionnaire's disease or hypersensitivity pneumonitis.
Should I retest for radon after renovating?
Yes. The Citizen's Guide notes that major renovations can change the radon level in any home, so test again after the work is completed.
How harmful is secondhand smoke indoors?
The Inside Story reports that exposure to environmental tobacco smoke is responsible for approximately 3,000 lung cancer deaths each year in nonsmoking adults.
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