4.7 Article

Uptake, translocation, and risk assessment of PAHs in contaminated soil-air-vegetable systems based on a field simulation experiment

Journal

ENVIRONMENTAL POLLUTION
Volume 271, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.envpol.2020.116361

Keywords

PAHs uptake; Risk assessment; Contaminated soil; Vegetable leaf and root; Field simulation

Funding

  1. National Natural Science Foundation of China (NSFC) [41271472]
  2. Natural science fund project of Shanghai [12ZR1409000]
  3. China Postdoctoral Science Foundation [2020M671046]
  4. Large Instruments and Equipment Open Fund Projects of East China Normal University

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This study investigated the uptake and translocation of PAHs in contaminated soil-air-vegetable systems, finding that PAHs can accumulate in both roots and leaves of vegetables grown in contaminated soil. The cancer risk associated with PAH exposure through vegetable consumption was found to be higher for adult females in contaminated environments. The study highlights the importance of monitoring PAH contamination in vegetables and addressing the potential health risks it poses to consumers.
Vegetable consumption is a potential toxin exposure pathway for humans. Studies have recognized that vegetables can uptake organic contaminants via roots and translocate pollutants to their aerial parts. However, the aerial parts might also directly uptake polycyclic aromatic hydrocarbons (PAHs) from contaminated soils. This has not been extensively studied. The aim of this study was to explore the uptake and translocation of PAHs in contaminated soil-air-vegetable systems. Sixteen individual PAHs in contaminated soils, vegetable roots, and leaves were identified using GC-MS. The results showed that the average PAH concentrations both in roots and leaves from the reference soil, the moderately contaminated soil, and the heavily polluted soil increased as expected. PAHs with log K-ow < 5 accumulated more easily in roots and leaves. Using a Pearson correlation analysis, isomer ratios, and a principal component analysis (PCA), it was found that the contaminated soil not only caused PAH accumulation in roots, but also increased the PAH concentration in leaves. Quantitatively, the absorption of PAHs in roots in the moderately contaminated soil (70.3 ng m(-3)) was approximately twice that of the reference soil (40.8 ng m(-3)). The PAHs absorbed by vegetable roots in the heavily polluted soil (74.7 ng m(-3)) was only slightly higher than that of the moderately polluted soil. In addition, the PAH dose volatilized into the air from the reference soil, the moderately contaminated soil, and the heavily polluted soil also showed an increasing trend. The incremental lifetime cancer risk (ILCR) indicated that adult females had a higher cancer risk via vegetable consumption than other groups. Although vegetable consumption had a slight effect on cancer risk for some groups in the present study, the cancer risk of PAHs caused by eating vegetables grown in heavily contaminated soil still requires attention. (C) 2020 Elsevier Ltd. All rights reserved.

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