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Distribution, risk assessment, and source analysis of heavy metals in sediment of rivers located in the hilly area of southern China

机译:南方丘陵地区河流沉积物中重金属的分布,风险评估及来源分析

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Purpose River sediment, the important sink and source of heavy metals, can provide critical information for aquatic ecosystem health. Heavy metal pollution has been a serious problem facing river systems worldwide and can adversely affect human beings via the food chain. However, no comprehensive study has been conducted on heavy metal pollution in sediments of river systems in the hilly area of southern China, which plays a key role in water supply and ecosystem balance. This study is aimed at comprehensively studying the pollution status of heavy metals in river sediments in the hilly area of southern China and apportioning sources. Materials and methods A total of 39 superficial sediment samples were collected from the upstream, midstream, and downstream of 13 rivers (Xiangjiang River, Zishui River, Yuanjiang River, and Lishui River located in Hunan Province; Ganjiang River, Xinjiang River, Fuhe River, Raohe River), and Xiushui River located in Jiangxi Province; Qiantangjiang River and Oujiang River located in Zhejiang Province; Minjiang River and Jiulongjiang River located in Fujian Province) in the hilly area of southern China. The total concentrations of metals of Mn, Zn, Cr, Co, Ni, Cu, As, Cd, Sb, Pb, and V were analyzed using the inductively coupled plasma-mass spectrometry method. The pollution status and potential ecological risk were assessed with the geoaccumulation index (I-geo), sediment quality guidelines (SQGs), and potential ecological risk index (RI). The source apportionment of heavy metals was performed by correlation analysis and principle component analysis (PCA). Results and discussion Results indicated that Mn, Zn, and Pb concentrations were significantly higher than other metals, especially in the upstream of the Jiulong River and midstream and downstream of the Xiangjiang River. Pollution assessment indicated that Cd pollution of sediments was most serious and that more than 50% of sampling sites were significantly polluted, with a very high potential ecological risk. The rivers in Hunan provinces (HN) were identified as the priority controlled rivers because of the high I-geo and RI index values. Correlation and PCA analysis indicated that Mn, Pb, and Zn originated from natural and mineral exploitation activities; As, V, Ni, and Sb originated from industrial wastewater and mineral-smelting activities; Cu and Co originated from agricultural activities; Cr and Ni originated from natural sources. While the most polluted Cd came from a combination of multiple sources described above. Conclusions Results indicated that Cd was the most common heavy metal pollutant, especially in river sediments of Hunan Province. Anthropogenic activities have become the main source of heavy metals in the river sediments of the hilly area of southern China. Special attention should be paid to Cd, and measures must be taken to prevent from further anthropogenic influence on heavy metal pollution.
机译:目的河流沉积物是重金属的重要汇和源,可以为水生生态系统健康提供重要信息。重金属污染一直是世界范围内河流系统面临的严重问题,并可能通过食物链对人类造成不利影响。然而,目前还没有关于中国南部丘陵地区河流系统沉积物中重金属污染的综合研究,这在供水和生态系统平衡中起着关键作用。这项研究旨在全面研究中国南部丘陵地区河流沉积物中重金属的污染状况及其来源。资料和方法从湖南省的湘江,紫水河,Yuan水河和Li水河,赣江,新疆河,抚河,13河等13条河流的上游,中游和下游总共采集了39个表层沉积物样本。饶河)和位于江西省的秀水河;位于浙江省的钱江和and江;位于中国南部丘陵地区的闽江和九龙江。使用电感耦合等离子体质谱法分析了锰,锌,铬,钴,镍,铜,砷,镉,锑,铅和钒中金属的总浓度。通过地质累积指数(I-geo),沉积物质量指南(SQGs)和潜在生态风险指数(RI)对污染状况和潜在生态风险进行了评估。重金属的来源分配通过相关分析和主成分分析(PCA)进行。结果与讨论结果表明,Mn,Zn和Pb的浓度明显高于其他金属,尤其是在九龙江上游和湘江中下游。污染评估表明,沉积物中的Cd污染最为严重,超过50%的采样点受到了严重污染,具有很高的潜在生态风险。由于高I-geo和RI指数值,湖南省(HN)的河流被确定为优先控制河流。相关性和PCA分析表明,Mn,Pb和Zn来源于自然和矿产开采活动。砷,钒,镍和锑来源于工业废水和矿冶活动。铜和钴起源于农业活动。铬和镍来源于自然资源。而污染最严重的镉来自上述多种来源。结论结果表明,镉是最常见的重金属污染物,特别是在湖南省的河流沉积物中。人为活动已成为中国南部丘陵地区河流沉积物中重金属的主要来源。应特别注意镉,必须采取措施防止人为因素对重金属污染的进一步影响。

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