[长江流域地表水镉生态风险区域差异分析]。

Q2 Environmental Science Huanjing Kexue/Environmental Science Pub Date : 2024-06-08 DOI:10.13227/j.hjkx.202307119
Ren Ding, Zi-Tong Liao, Yun Lu, Yin-Hu Wu, Zhuo Chen, Hua-Nan Gao, Hong-Wei Xu, Song-Liu Lu, Er-Qing Hui, Dong-Bin Wei, Hong-Ying Hu
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引用次数: 0

摘要

本研究主要关注长江流域地表水水质标准和镉生态风险的区域差异。在初始阶段,根据中国《淡水水生生物水质标准--镉》的指导原则,并考虑到长江流域地表水普遍的硬度分布,对镉的长期水质标准进行了重新校核。随后,考虑到长江流域内物种的特殊性,对标准进行了更细化的修订。这项工作全面解释了长江流域长期水质标准值分布和镉风险商数分布的区域差异。结合硬度和物种特异性,修订了长江流域不同城市的镉长期水质标准范围。值得注意的是,重新校准后的数值从最低阈值 0.08 μg-L-1 到最高阈值 0.75 μg-L-1,相差十倍。相应地,与镉暴露相关的城市年均风险商数从 0.035 到 1.12 不等,最低值和最高值之间相差 32 倍。有必要强调的是,长江流域中上游交汇区和错综复杂的洞庭湖水系等重要区域因镉的存在而表现出值得注意的生态风险。因此,为了全面了解相关风险,必须对这些关键区域进行进一步的深入调查。
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[Analysis of Regional Differences in Cadmium Ecological Risk in Surface Waters of the Yangtze River Basin].

This study primarily focused on the regional disparities in both water quality criteria and ecological risks attributed to cadmium presence within the surface waters of the Yangtze River Basin. In the initial phase, the long-term water quality criteria for cadmium were recalibrated in accordance with the guidelines outlined in China's "Water Quality Criteria for Freshwater Aquatic Organisms-Cadmium," accounting for the prevalent hardness distribution within the Yangtze River Basin's surface water. Subsequently, a more refined revision was undertaken considering the specific characteristics of the species residing within the Yangtze River Basin. This undertaking led to a comprehensive interpretation of the regional variations in both the distribution of long-term water quality criteria values and the risk quotient distribution of cadmium throughout the Yangtze River Basin. The incorporation of hardness and species-specific attributes resulted in a revised range of long-term water quality criteria for cadmium across different urban locales within the Yangtze River Basin. Notably, the recalibrated values ranged from 0.08 μg·L-1 as the lowest threshold to 0.75 μg·L-1 as the upper limit, signifying a tenfold differentiation. Correspondingly, the urban average annual risk quotient associated with cadmium exposure demonstrated a variation from 0.035 to 1.12, marking a significant 32-fold discrepancy between the lowest and highest values. It is essential to highlight that regions of paramount importance, such as the confluence area connecting the upper and middle stretches of the Yangtze River Basin and the intricate Dongting Lake system, exhibited noteworthy ecological risks attributed to cadmium presence. Consequently, further in-depth investigations into these critical regions are imperative for a comprehensive understanding of the associated risks.

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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
期刊最新文献
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