| Literature DB >> 29571025 |
Yang Yang1, Andrew C Chang2, Meie Wang3, Weiping Chen4, Chi Peng3.
Abstract
Plant uptake factors (PUFs) are of great importance in human cadmium (Cd) exposure risk assessment while it has been often treated in a generic way. We collected 1077 pairs of vegetable-soil samples from production fields to characterize Cd PUFs and demonstrated their utility in assessing Cd exposure risks to consumers of locally grown vegetables. The Cd PUFs varied with plant species and pH and organic matter content of soils. Once normalized PUFs against soil parameters, the PUFs distributions were log-normal in nature. In this manner, the PUFs were represented by definable probability distributions instead of a deterministic figure. The Cd exposure risks were then assessed using the normalized PUF based on the Monte Carlo simulation algorithm. Factors affecting the extent of Cd exposures were isolated through sensitivity analyses. Normalized PUF would illustrate the outcomes for uncontaminated and slightly contaminated soils. Among the vegetables, lettuce was potentially hazardous for residents due to its high Cd accumulation but low Zn concentration. To protect 95% of the lettuce production from causing excessive Cd exposure risks, pH of soils needed to be 5.9 and above.Entities:
Keywords: Cd bioavailability; Probabilistic analysis; Risk assessment; Soil property normalization; Trade-off relationship
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Year: 2018 PMID: 29571025 DOI: 10.1016/j.envpol.2018.02.059
Source DB: PubMed Journal: Environ Pollut ISSN: 0269-7491 Impact factor: 8.071