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Risk Assessment of Heavy Metal Pollution in Sediments of the Fenghe River by the Fuzzy Synthetic Evaluation Model and Multivariate Statistical Methods

机译:模糊综合评价模型与多元统计方法在Feng河沉积物重金属污染风险评价中的应用。

摘要

Concentrations of heavy metals in 74 sediment samples from the Fenghe River, which originates from the north of the Qinling Mountains and flows through Xi'an, Shaanxi Province, China, were characterized by employing geographic information system (GIS) mapping, fuzzy synthetic assessment, and multivariate statistical analysis to determine the enrichment characteristics of heavy metals as well as their potential risks of pollution to sediments. Al, Cd, and Co were the major pollutants, with a high enrichment factor (EF) value. Heavy metal concentrations from samples near the paper plant were maintained at a high level. Significant enrichment of Al, Ba, Cr, Ni, Pb, and Co was found in the midstream and downstream, while high concentration of Cu occurred in the headwater stream. Based on the cluster and principal component analyses, sediment metals mainly came from the paper plants, agronomic practices, natural sources, and tourism, with a contribution of 51.59%, 23.01%, 14.21%, and 9.88%, respectively. Sediment pollution assessment explored using fuzzy theory based on the entropy method and toxicity coefficient showed that 26, 32, and 11 sites fell into Class III (slightly polluted), Class IV (moderately polluted), and Class V (heavily polluted), respectively, and their scores of membership degree in the polluted level were on the rise, suggesting a relatively high degree of sediment metal pollution in the study area. Closely related to the excessive industrial and agricultural applications, metal pollution in sediment is necessary to be addressed in the Fenghe River.
机译:通过地理信息系统(GIS)映射,模糊综合评估,风化,风化和风化等方法,对来自秦岭以北,流经陕西省西安市的he河74个沉积物样品中的重金属进行了表征。进行多元统计分析,以确定重金属的富集特征及其对沉积物的潜在污染风险。 Al,Cd和Co是主要污染物,富集系数(EF)值高。造纸厂附近样品中的重金属浓度保持在较高水平。在中游和下游发现了铝,钡,铬,镍,铅和钴的显着富集,而在源头水流中出现了高浓度的铜。根据聚类分析和主成分分析,沉积物金属主要来自造纸厂,农艺实践,自然资源和旅游业,分别占51.59%,23.01%,14.21%和9.88%。基于熵值法和模糊系数的模糊理论对沉积物污染的评估表明,分别有26、32和11个地点分别属于III类(轻度污染),IV类(中度污染)和V类(重度污染),污染程度下的隶属度得分呈上升趋势,表明研究区的沉积物金属污染程度较高。与过量的工农业应用密切相关,在丰河中必须解决沉积物中的金属污染。

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