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1.
根据2011年7月浙江舟山西蟹峙海洋倾倒区及邻近海域表层沉积物重金属的监测结果,采用单因子指数法和Hakanson生态危害指数法分析表层沉积物重金属的污染特征,并评价其潜在生态风险。结果表明:沉积物重金属元素Cu、Zn、Pb、Cd、Cr、Hg、As含量均符合国家海洋沉积物质量一类标准;重金属元素污染程度由高到低依次为Zn、Cr、Pb、Cu、As、Cd、Hg,其中Cu、Pb、Cd、Hg和As 5种重金属元素为低污染水平,Zn和Cr 2种重金属元素为中等污染程度水平;7种重金属元素单个和综合潜在生态危害程度均为低风险水平,由高到低依次为Cd、Hg、As、Pb、Cu、Cr、Zn。  相似文献   

2.
【目的】探究博贺湾海域表层沉积物重金属的污染特征和来源。【方法】基于2016年和2014年博贺湾海域表层沉积物Cu、Pb、Zn、Cd、Cr、Hg、As重金属调查结果,应用单因子污染指数法和Hakanson潜在生态风险指数法评估其生态风险,同时结合同步调查得到的总有机碳(TOC)参数,应用相关性分析和主成分分析方法,分析调查海域重金属的污染特征及来源。【结果】博贺湾海域表层沉积物重金属Zn、Cd、Pb、As、Hg含量均满足国家第一类海洋沉积物质量标准,95%站位的Cu、Cr满足国家第一类海洋沉积物质量标准,重金属污染程度由高到低依次为CrPbHgCuAsZnCd,重金属元素潜在生态危害影响程度依次为HgCdAsPbCuCrZn,TOC与重金属Hg含量成显著正相关,而与Cu、Zn、Cr无相关性。【结论】该海域Hg主要来源于有机质的降解,Cu、Zn、Cr具有相近来源,主要为人类工业生产与生活污染;Cd、Pb、As来源为人类工业生产与生活污染以及有机质的降解。调查海域综合潜在生态风险整体处于较低水平,重金属Hg为主要生态风险贡献因子。  相似文献   

3.
山东省东部地区土壤重金属污染及其生态环境效应   总被引:3,自引:0,他引:3  
为了弄清楚山东省东部地区土壤重金属元素的潜在生态危害程度,在土壤调查的基础上,采用潜在生态危害指数法,以深层土壤的重金属元素含量均值作为参比值,对土壤进行重金属污染的潜在生态风险评价,并探讨其生态环境效应.结果表明:山东省东部地区土壤重金属元素污染程度从大到小依次为Hg、Cd、Cu、Pb、Zn、Cr、As,重金属潜在生态风险从大到小依次为Hg、Cd、As、Pb、Cu、Cr、Zn,其中Hg和Cd对土壤污染危害的贡献率之和达87.95%,仅Hg元素的贡献率就达到61.96%;综合潜在生态风险评价级别为强和很强的土壤面积占13.75%,主要分布在莱州—招远—烟台和牟平—乳山金矿集中区以及人口密集的城镇地带,这种空间分布与目前金矿开采、选冶和人类生产生活布局一致;此外,局部土壤重金属污染物已迁移到小麦体内,部分小麦样品中Cd、Cr、Pb、Zn含量超临界值,对人体健康产生影响.  相似文献   

4.
海岸带处于陆地和海洋的接合部,人类开发活动密集,环境影响因素日趋复杂。选取烟台南部海岸带为研究对象,系统采集686个表层土壤样品对As,Cd,Cr,Cu,Hg,Ni,Pb,Zn共8个重金属元素含量进行测量,采用多元统计法及地统计法分析了8个重金属元素的来源及分布特征。最后对烟台南部海岸带地区进行了潜在生态风险评价。研究结果表明烟台南部海岸带地区整体污染程度较轻,所有重金属元素含量平均值均未超过国家二级标准。其中Cr,Ni,Cu元素主要来源于成土母质;As,Pb为混合源;Cd,Zn主要来自于工业三废、农业生产。研究区整体处于中低生态风险水平,Cd,Hg元素高生态风险点数量较多,需优先治理。  相似文献   

5.
以Cu、Cd、Zn、As、Hg、Pb、Zn、Sb等8种重金属元素为主要研究对象,采集研究区水样和土壤样品,测定重金属元素含量,分析其污染现状、空间分布和污染来源等特征,对其生态风险进行评价。研究表明,水体中,Sb超标率为100%,最大超标235.18倍,为主要重金属污染物;部分样品Cd、Pb含量Ⅰ类标准限定值而Ⅱ标准限定值,具有潜在生态风险。土壤中,Sb有91.97%的面积超过10×10-6,As、Hg、Pb、Cu分别有70.43%、61.54%、73.93%、16.67%的面积超过土壤环境质量一级标准,反映出这些元素对该区域土壤构成较大的生态风险。重金属元素高背景值区域基本和地质构造位置套合,表明研究区的重金属元素污染主要来源于地质构造活动导致的元素富集区,是区域土壤、水体中高含量重金属元素的重要来源。  相似文献   

6.
针对当前土壤污染研究中存在的问题,提出了一种模糊识别土壤重金属元素污染评价的方法。并对瑞典学者(Hakanson)
提出的潜在生态危害指数法进行了改进,用以评价重金属元素潜在生态风险。采用建立的方法对山东省东部地区土壤重金
属元素潜在生态风险进行了评价,结果表明:本区土壤重金属元素污染程度为Hg>Cd>Cu>Pb>Zn>Cr>As;而重金属元素潜
在生态风险大小则依次为Hg、Cd、As、Pb、Cu、Cr、Zn。总体来看,山东省东部地区存在一定程度的重金属元素污染,其潜在生态风
险为强和很强的土壤占13.75%,这种综合危害特征主要受Hg和Cd元素制约,主要分布在莱州—招远—烟台和牟平—乳山金矿
集中区以及人口密集的城镇地带,且已对农作物安全产生影响。认为地质背景和人类活动(采金污染、工业生产、城市人口密集生
活等)的共同作用,是造成局部环境中潜在生态风险较高的主要原因。   相似文献   

7.
人类活动对水环境影响巨大,同时水环境影响着人类的生产生活。采用地质累积指数法及潜在生态危害指数法对武汉市东西湖区主要湖泊表层沉积物重金属情况展开评价发现东西湖主要湖泊表层沉积物平均污染程度处于相对较低水平。地累积指数法评价结果表明,东大湖和金湖中Cd元素处于中度污染水平累积,墨水湖和上金湖中Cd元素为偏中度污染累积水平,其他湖泊沉积物中重金属均处于轻度或无污染水平。潜在生态危害指数法评价结果表明金湖和东大湖沉积物中重金属的潜在风险处于重度生态风险水平,墨水湖、上金湖、下银湖处于中度风险水平,其余湖泊沉积物中重金属的潜在风险均处于低风险水平。主成分分析表明,Hg、Cr、Ni、Cu、Zn、Cd、Pb可能来自于工业和交通源的排放,而As可能与农药的使用有关。后期金湖、东大湖、墨水湖、上金湖和下银湖的内源污染治理过程中需考虑重金属的生态风险问题。   相似文献   

8.
文章采用Ti元素标准化法确定农耕土壤元素As、Cd、Cr、Cu、Hg、Ni、Pb和Zn的地球化学基线值,并以此为参比值,计算重金属元素的潜在生态风险指数(Er)。其结果显示,贵港市覃塘区的土壤重金属环境质量优良,土壤元素Hg、Cd是潜在中等生态危害风险的主因子,其他元素均为低生态风险。  相似文献   

9.
研究石漠化峰丛洼地土壤重金属空间分异特征及其影响因素, 对推动区域土壤重金属污染防治、石漠化综合治理具有重要的指导意义和实践价值。以广西平果市典型石漠化峰丛洼地土壤为研究对象, 通过调查采样分析以及综合运用地统计学、地质累积指数、潜在生态危害指数和地理探测器等方法, 分析探讨土壤重金属的空间分异特征及其影响因素。结果表明, 研究区8种重金属元素的空间分布总体呈东北向西南降低的变化格局, 研究区东北部和东南部为重金属高值叠加区的集中分布区, Cr,Cd元素呈现中等的空间相关性, 其他6个重金属元素表现为强空间相关性;研究区受Cd,As,Cr,Cu,Zn等元素不同污染程度的影响, 且以Cd的影响尤为突出, 其地质累积指数和潜在生态危害指数分别高达1.34和107.73;pH、地层、Fe2O3、土地利用、P、CaO、Mn、到断层距离、石漠化程度是影响研究区土壤重金属空间分异的主要因子, 而且不同因子组对土壤重金属空间分异的交互作用以双因子增强型和非线性增强为主。因此认为不同因子对石漠化峰丛洼地土壤不同重金属元素空间分异特征的影响程度存在差异, Cd是石漠化峰丛洼地土壤污染程度和潜在生态危害程度最严重的重金属元素, 地层、Mn、CaO、岩性、到断层距离、P是影响Cd空间分异的关键因子。   相似文献   

10.
对长岛北四岛海洋牧场海域101个表层沉积物和102个表层海水样进行取样调查,开展表层沉积物类型、粒度、表层沉积物和海水重金属等指标分析测试,采用单因子污染指数法、富集系数法和潜在生态危害指数法评价该区表层沉积物潜在生态风险,采用海水水质分类和单因子污染指数法评价表层海水污染情况。表层沉积物结果表明:沉积物为泥质砂质砾、砾质泥质砂、砾质泥、含砾泥质砂、砂、粉砂质砂和砂质粉砂,平均粒径介于2.44~5.44Ф;Hg、Cu、Zn、Pb、Cd、As、Cr、硫化物和石油类都符合第一类标准,属于清洁沉积物;Cr、Cu、Pb、Zn、Cd、Hg和As富集系数均<1,处于低度污染水平;Cr、Cu、Pb、Zn、Cd、Hg和As单项潜在生态危害系数Eir介于0.56~30.71之间,RI均值为66.27,远低于低度生态危害的划分标准值。表层海水结果表明:21个站位受到Hg污染,略高于第一类标准,满足第二类标准,主要位于研究区西北部、西中部和东北部海域,其余指标均符合规定第一类标准;Hg、Cu和Zn含量处于较清洁环境范围内,As、COD、石油类、Pb、Cr和Cd含量处于自然本底环境。根据海底沉积物和海水分析结果得出,长岛北四岛海域海洋牧场规划区底质和水质环境适宜建设海洋牧场。  相似文献   

11.
There is an increasing concern for potentially hazardous metals pollution, which can threaten crops production and human health. In this study, the spatial distribution and environmental risks of eight heavy metals in surface soil samples collected from the paddy fields in Yongshuyu irrigation area, Northeast China were investigated. The mean concentrations of Pb, Cr, Cu, Ni, Zn, Cd, Hg and As were 34.6 ± 4.67, 82.8 ± 9.51, 17.3 ± 4.09, 21.2 ± 12.0, 88.6 ± 17.9, 0.18 ± 0.15, 0.22 ± 0.07 and 8.77 ± 2.47 mg/kg, respectively, which were slightly higher than their corresponding background values of Jilin Province, indicating enrichment of these metals in the paddy soils, especially for Ni, Cd and Hg. The spatial distribution of heavy metals was closely correlated with local anthropogenic activities, such as agricultural production, mining and transportation. The hot-spot areas of As and Cd were mainly concentrated in the up-midstream where were associated with agricultural activities. Cr and Cu showed similar spatial distributions with hot-spot areas distributed the whole irrigation area uniformly. Ni was mainly distributed in the downstream where Ni quarries concentrated, while the spatial distribution patterns of Hg was mainly located in the upstream and downstream where the soil was significantly influenced by irrigation and coal mining emission. The spatial distributions of Pb and Zn were mainly concentrated along the highway side. The pollution levels of Yongshuyu irrigation area were estimated through index of geo-accumulation(Igeo), Nemerow integrated pollution index(NIPI) and potential ecological risk index(PERI). The results showed that Cd and Hg were the main pollutants in the study area. Health risk assessment results indicated that children were in higher non-carcinogenic and carcinogenic risks than adults with the carcinogenic metal of As. Ingestion was the main exposure pathway to non-carcinogenic and carcinogenic risk for both adults and children. Principal component analysis(PCA) indicated that Cr and Cu were mainly from parent materials, while Cd and As were mainly affected by agricultural activities. Pb and Zn were controlled by traffic activities, and the accumulations of Ni and Hg were associated with mining activities. This study would be valuable for preventing heavy metals inputs and safety in rice production of the Songhua river basin.  相似文献   

12.
At present, the methods widely applied to assess ecological risk of heavy metals are essentially single-point estimates in which exposure and toxicity data cannot be fully used and probabilities of adverse biological eff ects cannot be achieved. In this study, based on investigation of concentrations of six heavy metals (As, Hg, Pb, Cd, Cu, and Zn) in the surface seawater and sediment near the outlet of a zinc factory, located in Huludao City, Liaoning Province, China, a tiered approach consisting of several probabilistic options was used to refine ecological risk assessment for the individuals. A mixture of various heavy metals was detected in the surface seawater, and potential ecological risk index (PERI) was adopted to assess the potential ecological risk of heavy metals in the surface sediment. The results from all levels of aquatic ecological risk assessment in the tiered framework, ranging from comparison of single eff ects and exposure values to the use of distribution-based Hazard Quotient obtained through Monte Carlo simulation, are consistent with each other. Briefly, aquatic Zn and Cu posed a clear ecological risk, while Cd, Pb, Hg, and As in the water column posed potential risk. As expected, combined ecological risk of heavy metal mixture in the surface seawater was proved significantly higher than the risk caused by any individual heavy metal, calculated using the concept of total equivalent concentration. According to PERI, the severity of pollution by the six heavy metals in the surface sediment decreased in the following sequence: Cd>Hg>As>Pb>Cu>Zn, and the total heavy metals in the sediment posed a very high risk to the marine environment. This study provides a useful mathematical framework for ecological risk assessment of heavy metals.  相似文献   

13.
烟台近岸海域表层沉积物重金属污染特征   总被引:1,自引:0,他引:1       下载免费PDF全文
采取烟台近岸海域150个海底表层沉积物样品进行Hg,Cu,Pb,Zn,Cd,Cr,As,Ni元素分析。结果显示,烟台市近岸海域重金属主要富集在芝罘湾(Cd,Cu)、龙口(As,Cr,Cu)及海阳东部(Ni,Pb)一带,而莱州、招远及牟平近岸海域重金属含量较低。单因子、内梅罗和潜在生态危害指数评价结果显示,研究区88%海域的沉积物达到一类标准,轻污染区主要分布在芝罘岛北部及龙口市西部,龙口、招远及烟台市近岸沉积物潜在风险中等。  相似文献   

14.
通过对滨州近海海域海底沉积物测试数据及海岸带陆域土壤地球化学分析,对滨州海岸带陆域土壤和海底沉积物中7种重金属(Hg,Cd,Pb,Cu,Zn,Cr,Ni)的空间分布特征进行了研究,并绘制了各指标含量陆海联合分区图。分析结果表明,滨州市海岸带重金属元素含量基本上均低于国标规定的海洋一类沉积物的最高标准,仅有个别元素含量超过一级标准值,表明局部存在一定的重金属污染。从滨州海岸带重金属含量空间分布上来看,除Hg元素外,其余重金属元素含量呈现一定的规律,基本上陆域含量高于海域含量,且大部分元素都呈现出陆域城镇值高,郊区值低的态势。区内化工企业较发达,Ni,Cr属于中度变异区,Cd,Hg,Pb属于高度变异,受人为影响因素较大,考虑区内土壤及海底沉积物重金属富集主要来源于工业"三废"。  相似文献   

15.
通过对青岛城区土壤进行调查取样,运用单因子评价和内梅罗指数法对青岛表层土壤8种重金属元素(As,Cd,Cr,Cu,Ni,Hg,Pb和Zn)的测试结果进行评价,查明了土壤环境质量现状及其污染程度:青岛市土壤环境质量总体较高,绝大部分地区土壤环境保持在清洁水平;污染区域以孤岛状零星分布于青岛市内,区内胶州湾入海口污染指数偏高,很可能是由于河流上游污水排放导致的。通过对未来20年城区土壤在大气降尘影响下重金属Cd,Zn的累积情况进行了预测,结果表明:随着时间的推移,土壤有害元素含量会有所增高。其中,大气降尘中Zn元素对青岛市区土壤影响明显。该研究对于正确认识青岛区域地球化学特征和地质环境具有一定的指导意义。  相似文献   

16.
According to "Environmental quality standard for soil" and using As, Cd, Cr, Cu, Hg, Ni, Pb, Zn elements as evaluation index, the author evaluated soil environmental quality in Xihe area of Shenyang. The results show that the soil in Xihe area is polluted rifely by heavy metal elements. The polluted areas are mainly distributed near the upstreams of Xihe River, Shenxin River and Shenliao irrigation canal. There exist large distinctions among the heavy metal elements to the pollution degree. Cd pollution area is the biggest and the most serious in pollution degree.  相似文献   

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