Phthalate ester levels in agricultural soils of greenhouses, their potential sources, the role of plastic cover material, and dietary exposure calculated from modeled concentrations in tomato

邻苯二甲酸盐 土壤水分 温室 环境科学 农业 环境化学 农学 环境工程 化学 生物 土壤科学 生态学 有机化学
作者
Berkay Umut Yeşildağlı,Recep Kaya Göktaş,Tuğba Ayaz,Bihter Olgun,Ebru N. Dokumacı,Merve Özkaleli,Ayça Erdem,Meral Yurtsever,Güray Doğan,Sema Yurdakul,Mihriban Civan
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:468: 133710-133710 被引量:13
标识
DOI:10.1016/j.jhazmat.2024.133710
摘要

Soil samples collected from 50 greenhouses (GHs) cultivated with tomatoes (plastic-covered:24, glass-covered:26), 5 open-area tomato growing farmlands, and 5 non-agricultural areas were analyzed in summer and winter seasons for 13 PAEs. The total concentrations (Σ13PAEs) in the GHs ranged from 212 to 2484 ng/g, wheeas the concentrations in open-area farm soils were between 240 and 1248 ng/g. Σ13PAE in non-agricultural areas was lower (35.0 - 585 ng/g). PAE exposure through the ingestion of tomatoes cultivated in GH soils and associated risks were estimated with Monte Carlo simulations after calculating the PAE concentrations in tomatoes using a partition-limited model. DEHP was estimated to have the highest concentrations in the tomatoes grown in both types of GHs. The mean carcinogenic risk caused by DEHP for tomato grown in plastic-covered GHs, glass-covered GHs, and open-area soils were 2.4 × 10−5, 1.7 × 10−5 and 1.1 × 10−5, respectively. Based on Positive Matrix Factorization results, plastic material usage in GHs (including plastic cover material source for plastic-GHs) was found to be the highest contributing source in both types of GHs. Microplastic analysis indicated that the ropes and irrigation pipes inside the GHs are important sources of PAE pollution. Pesticide application is the second highest contributing source.
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