江西鄱阳湖迁移型地质高背景区土壤-作物Cd富集特征及生物有效性[j]。

Q2 Environmental Science
Bang-Yong Wen, Hai-Man Qie, Yuan Gao, Hong-Yu Jiang, Qiang-Qiang Zhou
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引用次数: 0

摘要

为研究迁移型地质高背景区土壤-作物系统Cd的积累特征和生物有效性,在鄱阳湖南岸九龙地区采集了140组作物和土壤样品。结果表明:根土ω(Cd)变化范围为0.03 ~ 0.65 mg·kg-1,平均为0.16 mg·kg-1,超出江西省土壤背景值,反映出高地质背景迁移型特征;根土Cd超标率为6.43%,属轻度污染;芝麻对Cd的富集能力最强(404%),花生次之(146%)。水稻、油茶和芡实种子的富集能力中等,玉米的富集能力较弱。根系土壤活性Cd (ω)为76.8 μg·kg-1,生物有效性为48.9%,其中水稻最高,分别为98.6 μg·kg-1和59.9%。主成分分析(PCA)表明,根土壤Cd主要由上游工矿污染物的运输和积累引起,反映了高地质背景的运输型特征。相关分析表明,根土活性Cd和生物可利用Cd主要受遗传源控制,表明外源输入Cd活性较高,生态风险较高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Cd Enrichment Characteristics and Bioavailability of Soil-crops in the Migration Type Geological High Background Area of Poyang Lake, Jiangxi Province].

To study the accumulation characteristics and bioavailability of Cd in the soil-crop system in the migration type geologically high background area, 140 groups of crops and soil samples were collected from the Jiulong area on the south bank of Poyang Lake. The results showed that the range of ω(Cd) of root soil was 0.03-0.65 mg·kg-1, with an average of 0.16 mg·kg-1, which exceeded the background value of soil in Jiangxi Province, reflecting the characteristics of high geological background of migration type. The over-standard rate of Cd in root soil was 6.43%, which was slightly polluted. Sesame had the strongest enrichment ability of Cd (404%), followed by that of peanut (146%). The enrichment ability of rice, Camellia oleifera, and Euryale seed was medium, while that of corn was weak. The root soil ω(active Cd) was 76.8 μg·kg-1, and the bioavailability was 48.9%, among which rice was the highest with 98.6 μg·kg-1 and 59.9%, respectively. Principal component analysis (PCA) showed that root soil Cd was mainly caused by the transport and accumulation of industrial and mineral pollutants in the upstream, reflecting the characteristics of the high geological background of the transport type. Correlation showed that the active and bioavailable Cd of root soil were mainly controlled by genetic sources, indicating that the activity of exogenously imported Cd was higher, and the ecological risk was higher.

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来源期刊
环境科学
环境科学 Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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