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乌鲁木齐市小微湿地水体重金属污染及潜在生态风险评估

Pollution and potential ecological risk assessment of heavy metals in the small wetlands in Urumqi City

  • 摘要: 为了探究干旱区小微湿地水环境重金属污染风险,2023年10月在乌鲁木齐市36个代表性小微湿地采集水样,测定Hg、As、Cu、Zn、Pb和Cd共6种重金属元素的含量。采用污染负荷指数(pollution load index, PLI)、潜在生态风险指数(potential ecological risk index, RI)和生态风险预警指数(ecological risk warning index, IER),系统分析了干旱区小微湿地水体重金属污染特征及其生态风险。研究结果表明,城市和乡村小微湿地水体中Hg含量平均值分别为《地表水环境质量标准》(GB 3838-2002)中Ⅱ级标准限值的3.2倍和5.0倍,其他5种重金属含量平均值均低于Ⅱ级标准限值。污染负荷指数评价结果表明,研究区小微湿地水体中Hg呈现重度污染,其他5种重金属均呈现无污染,小微湿地水体重金属PLI平均值呈现无污染。生态风险评估结果表明,城市和乡村小微湿地水体中Hg分别呈现较强、很强生态风险,其他5种重金属均呈现轻微生态风险;城市和乡村小微湿地水体重金属分别呈现轻微、中等生态风险。城市和乡村小微湿地水体中Hg分别呈现轻警和中警态势,其他5种重金属均呈现无警态势;城市和乡村小微湿地水体中的重金属均呈现无警态势。整体上,乌鲁木齐市乡村小微湿地水体中重金属的含量、污染水平以及潜在生态风险均比城市小微湿地水体高。Hg元素是小微湿地水体中最主要的污染因子和生态风险因子,这与乌鲁木齐市土壤较高的Hg含量以及人类活动有关。研究结果能为干旱区小微湿地水体生态安全保护提供理论依据。

     

    Abstract: To investigate the heavy metal pollution risk in the water environment of wetlands in arid regions, a total of 36 water samples from representative small water bodies in Urumqi City of northwestern China in October 2023 were collected for analyzing the contents of six heavy metals, including Hg, As, Cu, Zn, Pb, and Cd. The pollution load index (PLI), potential ecological risk index (RI), and ecological risk warning index (IER) were used to analyze the pollution levels and ecological risk of heavy metals in the small wetlands in Urumqi city. The results showed that the average Hg contents of the urban and rural small wetlands in the study area were equal to 3.2 and 5.0 times, respectively, of the Class II thresholds of the ‘Environmental Quality Standards for Surface Water’ (GB 3838-2002), whereas the average contents of the other five heavy metals were lower than the corresponding limit values of the Class II thresholds. Results of pollution load index indicated that Hg in the small wetlands in the study area fall into the heavy pollution level, while the other five heavy metals fall into the no-pollution level. The average PLI value of heavy metals in the small wetlands fall into the no-pollution level. The ecological risk assessment results indicated that the Hg in the urban and rural small wetlands in the study area fall into the strong, very strong ecological risk level, respectively, whereas the other five heavy metals fall into the low ecological risk level. The average RI value of heavy metals in the urban and rural small wetlands fall into the low, moderate ecological risk level, respectively. Hg in the urban and rural small wetlands in the study area fall into the light, moderate risk warning level, while other five heavy metals fall into the no-warning risk level. The average IER value of heavy metals in the urban and rural small wetlands fall into the no-warning level. Overall, the contents, pollution levels, and potential ecological risk of heavy metals in the rural small wetlands were higher than those of the urban small wetlands in the study area. Hg is the main pollution factor and ecological risk factor in the small wetlands. This is related to the high Hg level in soil as well as human activities in Urumqi city. Obtained results of this study can provide a theoretical basis for the ecological security protection of small wetlands in Urumqi city.

     

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