Interactions of Gaseous 2-Chlorophenol with Fe 3+ -Saturated Montmorillonite and Their Toxicity to Human Lung Cells

The interactions of gaseous 2-chlorophenol with Fe -saturated montmorillonite particles in a gas-solid system were investigated to simulate the reactions of mineral dusts with volatile organic pollutants in the atmosphere. Results suggested that Fe -saturated montmorillonite mediated the dimerizatio...

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Veröffentlicht in:Environmental science & technology 2018-05, Vol.52 (9), p.5208-5217
Hauptverfasser: Peng, Anping, Gao, Juan, Chen, Zeyou, Wang, Yi, Li, Hui, Ma, Lena Q, Gu, Cheng
Format: Artikel
Sprache:eng
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Zusammenfassung:The interactions of gaseous 2-chlorophenol with Fe -saturated montmorillonite particles in a gas-solid system were investigated to simulate the reactions of mineral dusts with volatile organic pollutants in the atmosphere. Results suggested that Fe -saturated montmorillonite mediated the dimerization of gaseous 2-chlorophenol to form hydroxylated polychlorinated biphenyl, hydroxylated polychlorinated diphenyl ether, and hydroxylated polychlorinated dibenzofuran. The toxicity of Fe -montmorillonite particles to A549 human lung epithelial cells before and after interaction with 2-chlorophenol was examined to explore their adverse impact on human health. Based on cell morphological analysis, cytotoxicity tests, and Fourier-transform infrared imaging spectra, surface-catalyzed reactions of Fe -montmorillonite with 2-chlorophenol increased the toxicity of montmorillonite particle on A549 cells. This was supported by increased cellular membrane permeability, the release of extracellular lactate dehydrogenase, and cell damages on cellular DNA, proteins, and lipids. Since mineral dusts are important components of particulate matter, our results help to understand the interactions of volatile organic pollutants with particulate matter in the atmosphere and their adverse impacts on human health.
ISSN:0013-936X
1520-5851
DOI:10.1021/acs.est.7b06664