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首页> 外文期刊>Scientific reports. >Distribution patterns of phthalic acid esters in soil particle-size fractions determine biouptake in soil-cereal crop systems
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Distribution patterns of phthalic acid esters in soil particle-size fractions determine biouptake in soil-cereal crop systems

机译:邻苯二甲酸酯在土壤颗粒级分中的分布模式决定了土壤-谷物作物系统中的生物吸收

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摘要

The use of wastewater irrigation for food crops can lead to presence of bioavailable phthalic acid esters (PAEs) in soils, which increase the potential for human exposure and adverse carcinogenic and non-cancer health effects. This study presents the first investigation of the occurrence and distribution of PAEs in a maize-wheat double-cropping system in a wastewater-irrigated area in the North China Plain. PAE levels in maize and wheat were found to be mainly attributed to PAE stores in soil coarse (250-2000?μm) and fine sand (53-250?μm) fractions. Soil particle-size fractions with higher bioavailability (i.e., coarse and fine sands) showed greater influence on PAE congener bioconcentration factors compared to PAE molecular structures for both maize and wheat tissues. More PAEs were allocated to maize and wheat grains with increased soil PAE storages from wastewater irrigation. Additional findings showed that levels of both non-cancer and carcinogenic risk for PAE congeners in wheat were higher than those in maize, suggesting that wheat food security should be prioritized. In conclusion, increased soil PAE concentrations specifically in maize and wheat grains indicate that wastewater irrigation can pose a contamination threat to food resources.
机译:将废水灌溉用于粮食作物会导致土壤中存在可生物利用的邻苯二甲酸酯(PAE),这会增加人体暴露的可能性以及有害的致癌性和非癌性健康影响。这项研究是对华北平原污水灌溉地区玉米-小麦双作系统中PAEs发生和分布的首次调查。发现玉米和小麦中的PAE水平主要归因于土壤粗粒(250-2000μm)和细砂(53-250μm)部分中的PAE储存。与玉米和小麦组织的PAE分子结构相比,具有更高生物利用度的土壤粒度级分(即粗砂和细砂)对PAE同源生物浓度因子的影响更大。随着废水灌溉的土壤PAE储量增加,更多的PAE被分配给玉米和小麦籽粒。其他研究结果表明,小麦中PAE同系物的非致癌和致癌风险水平均高于玉米,这表明应优先考虑小麦的食品安全性。总之,特别是玉米和小麦籽粒中土壤PAE浓度的增加表明废水灌溉可能对粮食资源构成污染威胁。

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