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中国长株潭不同功能区稻田系统中大气沉降对重金属污染的影响。

Effects of atmospheric deposition on heavy metal contamination in paddy field systems under different functional areas in ChangZhuTan, Hunan Province, China.

机构信息

National Engineering Laboratory of High Efficient Use on Soil and Fertilizer, College of Resources, Hunan Agricultural University, Changsha 410128, China.

College of Environment & Ecology, Hunan Agricultural University, Changsha 410128, China.

出版信息

Sci Total Environ. 2024 Jul 10;933:172953. doi: 10.1016/j.scitotenv.2024.172953. Epub 2024 May 10.

Abstract

In recent decades, the problem of heavy metal contamination in rice paddies has attracted widespread attention. However, most studies on heavy metal contamination in paddy fields are biased towards soil and/or rice plants, without taking atmospheric deposition into account. In this study, atmospheric deposition, paddy soil, and rice samples were collected from three functional areas (area proximity to factories, along the roadside, and suburban) in ChangZhuTan, Hunan Province. The pollution characterization, translocation, and health risk of heavy metals were reassessed. The findings revealed that Cd and As contamination in the study area's soils was more severe, with point exceedance rates reaching 70 % and 35.9 %, respectively. The highest concentrations of As, Ni, Cd, and Pb in atmospheric deposition were found along the roadside, with 1.42 μg/m/day, 3.21 μg/m/day, 0.34 μg/m/day, and 8.28 μg/m/day, respectively. In area proximity to factories, As and Ni in atmospheric deposition showed to be lowest, whereas Cd and Pb concentrations showed lowest in suburban areas. Furthermore, the accumulation of Cd and Pb in rice grains in regions proximity to factories was significantly higher than in other regions. The human health risk assessment indicated the health risk caused by rice intake in areas proximity to factories was the highest and requires attention, which was mainly due to Cd accumulation, with HQ value reached 3.19. Correlation tests indicate that atmospheric deposition has a positive effect on heavy metal enrichment in rice grains. Further Random Forest analysis revealed that the transport of heavy metals from atmospheric deposition to leaves and shells were important influencing factors for As, Cd, Ni and Mg accumulation in rice grain. Therefore, more attention should be paid to the effects of atmospheric deposition on the accumulation of heavy metals in paddy fields in order to maintain the production safety of crops.

摘要

近几十年来,稻田重金属污染问题受到广泛关注。然而,大多数稻田重金属污染的研究都偏向于土壤和/或水稻植物,而没有考虑大气沉降的影响。本研究采集了湖南省长株潭地区三个功能区(工厂附近、路边和郊区)的大气沉降、稻田土壤和水稻样品,重新评估了重金属的污染特征、迁移和健康风险。研究结果表明,研究区域土壤中 Cd 和 As 的污染更为严重,点位超标率分别达到 70%和 35.9%。路边大气沉降中 As、Ni、Cd 和 Pb 的浓度最高,分别为 1.42μg/m/d、3.21μg/m/d、0.34μg/m/d 和 8.28μg/m/d。在工厂附近区域,大气沉降中的 As 和 Ni 浓度最低,而 Cd 和 Pb 浓度在郊区最低。此外,工厂附近地区水稻籽粒中 Cd 和 Pb 的积累明显高于其他地区。人体健康风险评估表明,工厂附近地区由于摄入大米而导致的健康风险最高,需要引起重视,这主要是由于 Cd 积累造成的,HQ 值达到 3.19。相关性检验表明,大气沉降对水稻籽粒中重金属的富集有正向影响。进一步的随机森林分析表明,重金属从大气沉降向叶片和稻壳的传输是影响 As、Cd、Ni 和 Mg 在水稻籽粒中积累的重要因素。因此,为了保障农作物的安全生产,应更加关注大气沉降对稻田重金属积累的影响。

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