Comparative evaluation of air phytoremediation potential of four ornamental potted plants for ecofriendly biofilter applications

S Safinaz M. Elhadad E E. A. Shalaby I I. H. Saleh M Mohamed Y. Omar

Abstract

Abstract Indoor air pollution poses serious health risks, especially in enclosed pharmaceutical laboratories due to volatile organic compounds (VOCs). This study evaluates Air Phytoremediation (AP) as a sustainable mitigation strategy using four indoor plant species: Epipremnum aureum , Chlorophytum comosum , Syngonium podophyllum , and Cordyline fruticosa . The removal efficiency of VOCs Benzene, Toluene, Benzaldehyde, and Acetophenone was assessed across various environments, including incubator chambers, laminar airflow cabinets, and a pharmaceutical organic lab. VOC reduction was measured by percentage removal, leaf area, and total weight absorbed. The initial concentration for each VOC was ranged between 10 and 8 ppm for (benzene, toluene, benzaldehyde, and acetophenone). The leaf area per plant species was determined using ImageJ software and ranged between 771.39 and 1471.77 cm 2 . The exposure duration was standardized at 40 min, corresponding to a realistic laboratory session Cordyline fruticosa showed the highest VOC removal efficiency at 87.5%, reducing the mean VOC concentration from 2.92 ± 0.54 ppm to 0.36 ± 0.14 ppm. Syngonium podophyllum followed with an 81.69% removal efficiency, reducing VOCs to 0.72 ± 0.17 ppm. Epipremnum aureum and Chlorophytum comosum showed removal efficiencies of 77.23% and 62.5%, respectively. Cordyline fruticosa and Syngonium podophyllum can reduce TVOC, CO 2 , CO, PM 2.5 , and PM 10 levels by 87.5%, 88.23%, 36.78%, 100%, and 100%, respectively . A combined application of Cordyline fruticosa and Syngonium podophyllum in Plant-Based Bio-Filters (PBBFs) significantly improved indoor air quality. These findings highlight the potential of AP as a natural, cost-effective solution for VOC mitigation, offering a practical approach to environmental management and sustainable indoor design in laboratory settings.

Article Details

Volume / Issue Vol. 15, Issue 1
Published December 29, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (4)

S

Safinaz M. Elhadad

E

E. A. Shalaby

I

I. H. Saleh

M

Mohamed Y. Omar