AI Article Synopsis

  • Reducing particulate matter (PM) is a major public health and environmental issue, leading to a focus on tree planting and afforestation as potential solutions.
  • This study tested the PM removal effectiveness of five plant species in controlled conditions, with a particular focus on the impact of relative humidity (RH) caused by plant evapotranspiration.
  • The findings identified Epipremnum aureum (Scindapsus) as particularly efficient at removing smoke-type PM, highlighting that increased RH enhances PM removal capabilities of plants.

Article Abstract

Reduction of particulate matter (PM) has emerged as one of the most significant challenges in public health and environment protection worldwide. To address PM-related problems and effectively remove fine particulate matter (PM), environmentalists proposed tree planting and afforestation as eco-friendly strategies. However, the PM removal effect of plants and its primary mechanism remains uncertain. In this study, we experimentally investigated the PM removal performance of five plant species in a closed chamber and the effects of relative humidity (RH) caused by plant evapotranspiration, as a governing parameter. On the basis of the PM removal test for various plant species, we selected Epipremnum aureum (Scindapsus) as a representative plant to identify the PM removal efficiency depending on evapotranspiration and particle type. Results showed that Scindapsus yielded a high PM removal efficiency for smoke type PM under active transpiration. We examined the correlation of PM removal and relative humidity (RH) and evaluated the increased effect of RH on PM removal by using a plant-inspired in vitro model. Based on the present results, the increase of RH due to evapotranspiration is crucial to the reduction of PM using plants.

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Source
http://dx.doi.org/10.1016/j.envpol.2018.11.004DOI Listing

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