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汕头红树林沉积物重金属分布特征及污染评价

Distribution characteristics and pollution assessment of heavy metals in mangrove sediments in Shantou

  • 摘要: 为探明汕头红树林沉积物重金属污染现状,选取韩江流域的义丰溪、莲阳河、外砂河以及榕江流域的三斗门和牛田洋共5个区域的典型红树林布设采样点,分别测定0~20 cm沉积物中Zn、Cr、Ni、Cu、Cd、Pb、As和Hg共8种重金属的含量,采用地累积指数法和潜在生态危害指数法分析重金属的污染特征和生态风险,并采用主成分分析法探究各类重金属的可能来源。研究结果表明,汕头红树林沉积物中8种重金属含量均超过广东省土壤环境背景值,Cu、Zn、Pb、Cd、Cr、Ni、As和Hg质量比的平均值分别为背景值的2.60、2.64、1.65、6.25、1.53、1.74、1.38和1.67倍;沉积物中Cu呈轻微至偏中度污染,Zn呈轻微至中度污染,Cd呈轻微至偏重度污染,Pb、Cr、Ni、As和Hg呈无污染至轻微污染;汕头市红树林沉积物的潜在生态风险程度为“较高”,生态风险较高的区域为三斗门和牛田洋,生态风险较高的重金属主要为Cd和Hg;重金属Zn、Cr、Ni、Cu和Cd主要受冶炼、化工、塑料、电镀、制革、印染、纺织等工业活动输入的影响,Pb和As的累积与禽畜养殖、果蔬种植等农业活动密切相关,Hg富集则主要来源于鱼、虾、蟹等水产养殖排放。基于上述研究结果,建议相关部门强化各类污染源监管,辅以植物修复等技术手段来缓解重金属富集带来的环境压力,实现经济与生态环境的协同发展。

     

    Abstract: To systematically investigate the contamination status of heavy metals within mangrove sediments in Shantou, this study set up sampling sites at typical mangrove stands across five research zones, namely Yifengxi, Lianyang River and Waisha River belonging to the Hanjiang River Basin, as well as Sandoumen and Niutianyang located in the Rongjiang River Basin. The concentrations of eight heavy metal elements (Zn, Cr, Ni, Cu, Cd, Pb, As and Hg) extracted from sediment samples collected at a depth range of 0~20 cm were quantitatively measured in laboratory analyses. Two widely recognized evaluation approaches, the geo-accumulation index and potential ecological risk index, were adopted to comprehensively characterize the pollution gradients and corresponding ecological hazards induced by heavy metal accumulation. Furthermore, principal component analysis (PCA) was performed to identify and discriminate the potential anthropogenic sources contributing to the enrichment of different heavy metal species. The analytical outputs revealed that the average concentrations of all eight target heavy metals in mangrove sediments throughout the study area exceeded the baseline soil background values established for Guangdong Province. Statistically, the mean concentrations of Cu, Zn, Pb, Cd, Cr, Ni, As and Hg were 2.60, 2.64, 1.65, 6.25, 1.53, 1.74, 1.38 and 1.67 times the corresponding regional background values, respectively. In terms of pollution grading, Cu contamination in sediments spanned from slight to moderate-partial levels, while Zn exhibited pollution ranging from slight to moderate. Cadmium presented the broadest pollution spectrum, covering slight to severe-partial pollution. In contrast, Pb, Cr, Ni, As and Hg only displayed zero to slight pollution across all sampling zones. The integrated potential ecological risk of mangrove sediments in the whole research region was categorized as relatively high. Among all sampling zones, Sandoumen and Niutianyang bore the most prominent ecological risks, with Cd and Hg identified as the primary heavy metals triggering severe ecological hazards to coastal mangrove wetland ecosystems. Source apportionment results illustrated that the enrichment of Zn, Cr, Ni, Cu and Cd was predominantly derived from industrial wastewater and solid waste discharges stemming from smelting, chemical manufacturing, plastic processing, electroplating, leather tanning, printing and dyeing, and textile production. The accumulation of Pb and As showed strong correlations with agricultural practices including poultry and livestock breeding as well as vegetable and fruit cultivation. Mercury enrichment in sediments, however, was primarily attributed to pollutant effluents generated by aquaculture activities such as shrimp, crab and fish farming. In light of the above research conclusions, competent environmental authorities are recommended to strengthen full-spectrum supervision and strict control over diverse pollution sources. Supplementary restoration strategies represented by phytoremediation can be implemented to mitigate the environmental stress caused by excessive heavy metal accumulation in sediments. Such integrated management measures are expected to facilitate balanced and sustainable development that harmonizes local economic growth with the conservation of coastal ecological environments.

     

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