To better understand exactly how well potted plants can remove VOCs from indoor environments, the researchers reviewed the data from a dozen published experiments. They evaluated the efficacy of a plant's ability to remove VOCs from the air using a metric called CADR, or clean air delivery rate. "The CADR is the standard metric used for scientific study of the impacts of air purifiers on indoor environments," says Waring, "but many of the researchers conducting these studies were not looking at them from an environmental engineering perspective and did not understand how building air exchange rates interplay with the plants to affect indoor air quality." Once the researchers had calculated the rate at which plants dissipated VOCs in each study they quickly discovered that the effect of plants on air quality in real-world scenarios was essentially irrelevant. Air handling systems in big buildings were found to be significantly more effective in dissipating VOCs in indoor environments. In fact, to clear VOCs from just one square meter (10.7 sq ft) of floor space would take up to 1,000 plants, or just the standard outdoor-to-indoor air exchange systems that already exist in most large buildings.
House Plants Have Little Effect on Indoor Air Quality, Study Concludes
To better understand exactly how well potted plants can remove VOCs from indoor environments, the researchers reviewed the data from a dozen published experiments. They evaluated the efficacy of a plant's ability to remove VOCs from the air using a metric called CADR, or clean air delivery rate. "The CADR is the standard metric used for scientific study of the impacts of air purifiers on indoor environments," says Waring, "but many of the researchers conducting these studies were not looking at them from an environmental engineering perspective and did not understand how building air exchange rates interplay with the plants to affect indoor air quality." Once the researchers had calculated the rate at which plants dissipated VOCs in each study they quickly discovered that the effect of plants on air quality in real-world scenarios was essentially irrelevant. Air handling systems in big buildings were found to be significantly more effective in dissipating VOCs in indoor environments. In fact, to clear VOCs from just one square meter (10.7 sq ft) of floor space would take up to 1,000 plants, or just the standard outdoor-to-indoor air exchange systems that already exist in most large buildings.
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