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1.
洞庭湖表层沉积物重金属生态风险及其变化趋势研究   总被引:1,自引:0,他引:1  
尽管针对洞庭湖沉积物中重金属的研究工作较多,但是针对其生态风险及其变化趋势的研究工作比较少见。基于2012年2月和2013年4月对洞庭湖9个具有代表性监测点位的采样分析以及相关监测历史资料的收集,采用Hakanson生态危害指数法,研究了洞庭湖表层沉积物中重金属的生态风险及其变化趋势。结果表明,洞庭湖表层沉积物中Cd、Hg、As、Cu和Pb的含量分别为0.60~20.7 mg·kg-1、0.090~0.640 mg·kg-1、10.4~83.7 mg·kg-1、17.9~70.9 mg·kg-1和16.9~95.8 mg·kg-1,其大小顺序为PbCuAsCdHg。洞庭湖表层沉积物中重金属单因子生态风险程度顺序为CdHgAsPbCu,Cd和Hg为主要重金属风险污染物,其中Cd为首要污染物;全湖RI值在117.10~589.80之间,平均289.99,在空间分布上,表现为南洞庭湖区西洞庭湖区东洞庭湖区;根据Hakanson提出的分级标准,南洞庭湖区Cd具有极高的生态风险,全湖生态风险程度为中。初步分析结果表明,30年来,除Hg外,其它重金属生态风险均有一定上升,其中以Cd的上升趋势较明显,全湖重金属生态风险程度由低生态风险上升到中生态风险,提高了一个等级。因此,洞庭湖流域重金属污染治理应以湘江和资水的Cd为重点。  相似文献   

2.
成都市河流表层沉积物重金属污染及潜在生态风险评价   总被引:32,自引:1,他引:32  
根据流经成都市内的三条河流(府河、南河、沙河)表层沉积物重金属数据,采用Hakanson潜在生态危害指数法对重金属的潜在生态风险进行了评价。结果表明(1)重金属潜在的生态危害因子(Er^i)说明大多属于轻微生态危害范畴,产牛生态危害的主要重金属是Hg、Cd,Cu、Pb次之,As影响最小;(2)多种重金属的生态系统的潜在生态风险指数(RI)表明河流重金属污染属于轻微生态危害和接近中等生态危害,其受危害程度由强至弱的次序为:府河,南河,沙河。  相似文献   

3.
大源渡库区表层沉积物中重金属污染状况   总被引:7,自引:0,他引:7  
为了了解大源渡库区 (湘江衡阳段 )合坝发电后重金属的污染状况 ,于 1 999年 8月和 2 0 0 0年 8月分别对库区 1 2个断面表层沉积物样品中重金属的含量进行测定 .在以往工作的基础上 ,将合坝发电后重金属的含量与背景值、历史值进行比较分析 ,并用地质积累指数法和潜在生态危害指数法对库区水系的重金属污染和生态危害进行了评价 .1 样品采集与分析本调研共设 1 2个断面 .每个断面设左、右 2个采样点 .采集的样品为 5cm以内的表层沉积物 .将样品在室温风干 ,研碎 ,过 1 0 0目筛 .用标准方法对样品中的Cr,Pb ,As,Hg,Cd ,Cu ,Z…  相似文献   

4.
对深圳湾15个表层沉积物中重金属Zn、Cu、Pb、As、Cd以及总有机碳(TOC)的含量进行测定,探讨了重金属污染特征,重金属之间及与TOC的相关关系,并利用潜在生态风险评价法进行潜在生态风险评估.结果表明,Zn、Cu、Pb、As和Cd平均值分别为307、79、75、23 mg·kg-1和2.26 mg·kg-1.Zn、Cu、Pb和As属于超Ⅰ类沉积物,Cd属于超Ⅱ类沉积物.Zn、Cu、Pb和Cd呈现相似的分布特征,即从东北向西南湾口逐渐减少.Zn、Cu、Pb、Cd、TOC彼此之间呈显著正相关.而As来源和分布与其余重金属明显不同,与其它重金属和TOC没有相关性.单因子污染系数显示Zn和Cd处于较高污染水平,Cu、Pb和As处于中等污染水平,污染程度依次为Cd>Zn>Pb>Cu>As.综合污染指数显示深圳湾总体达到较高污染水平.深圳湾重金属潜在生态风险总体处于中等水平,潜在风险程度依次为Cd>As>Pb>Cu>Zn,其中Cd的潜在风险最大.  相似文献   

5.
太湖表层沉积物中重金属的形态分析   总被引:82,自引:6,他引:82  
王海  王春霞  王子健 《环境化学》2002,21(5):430-435
采用BCR三步分级提取法和ICP-AES测定了太湖沉积物中8种重金属不同形态的含量,初步评估了太湖沉积物中重金属的生物有效性,探讨了沉积物总有机碳(TOC)与重金属不同形态之间的关系。  相似文献   

6.
深圳蛇口渔港沉积物重金属分布及潜在生态风险评价   总被引:8,自引:0,他引:8  
沉积物重金属污染对水生生态系统具有潜在危害.渔港是海岸带水环境的重要组成部分.对取自深圳蛇口渔港的10个表层沉积物样品中的As、Cd、Cu、Pb和Zn等典型重金属元素进行了分析,探讨了其空间分布;运用地积累指数法(Igeo)和生态危害指数法(RI),评价了表层沉积物中重金属的富集程度和潜在生态风险,初步探讨了其污染来源.结果表明:(1)蛇口渔港海域沉积物重金属Cu的污染十分严重,Zn和Pb污染较严重,其浓度均为港内>港口>港外;(2)渔港内沉积物重金属的富集达重度污染程度,潜在生态危害风险强.其中,又以Cu的富集程度最高,潜在生态危害风险最强;(3)渔港内Cu的污染,可能与电子工业废水的排放,以及渔业特有的防附着生物涂料有关.  相似文献   

7.
长江口海域表层沉积物污染及其潜在生态风险评价   总被引:9,自引:0,他引:9  
根据2004年8月份长江口海域表层沉积物的监测基础资料,采用单因子污染参数法和Hakanson前在生态风险指数法,通过分析长江口不同水域表层沉积物中典型污染要素PCB,Hg,Cd,Pb,As的质量分数,评价了长江口表层沉积物的质量状况。定量确定了长江口表层沉积物的潜在生态风险程度、主要污染因子和潜在生态风险因子;分析了近年来长江口表层沉积物总的潜在生态风险和单个污染要素的潜在生态风险的变化趋势。结果表明:长江口表层沉积物质量状况良好,各典型污染要素的质量分数值均小于背景值,典型污染要素的平均综合指数Cd为1.37,典型污染要素的污染程度由高至低顺序为As>Pb>Hg>PCB>Cd,As是主要环境污染因子;长江口各水域表层沉积物总的对水域均只具有低潜在生态风险,其由高至低的排列顺序为杭州湾北岸>长江口南支>长江口北支>长江口外;各典型污染物对水域也均只具有低潜在生态风险,其由高至低顺序为Hg>PCB>Cd>As>Pb,Hg是主要潜在生态风险因子;近年来,长江口表层沉积物总的潜在生态风险和单个污染物的潜在生态风险均呈现增加趋势。  相似文献   

8.
为了解回龙河表层沉积物中重金属的污染状况,采集了表层沉积物样品,测定了重金属Zn、Cu、Pb、Cr、Cd和Ni的总量及其化学形态,并采用潜在生态风险指数法对重金属进行了生态风险评价。结果显示,回龙河表层沉积物中Zn、Cu、Pb、Cr、Cd和Ni均有一定程度的累积,总量分别为286.4~1277.9mg/kg、21.71~146.0mg/kg、10.33~44.20mg/kg、25.13~90.40mg/kg、0.07172~0.3901mg/kg、13.27~157.2mg/kg,其中Cu、Cr、Pb与Ni 4种重金属具有一定的同源特性;形态分析表明,Cu的形态分布以有机结合态为主,最容易迁移释放,Zn、Cr和Ni除残渣态外,铁锰氧化结合态和有机结合态占一定比例,具有潜在风险;潜在生态风险指数法分析表明,沉积物中重金属元素的单一潜在生态风险指数顺序为Cd〉Cu〉Ni〉Zn〉Pb〉Cr,潜在生态危害指数RI均小于150,总体上回龙河处于轻微的生态风险等级。  相似文献   

9.
余广彬  刘义  俞慎  李桂林 《环境化学》2011,30(11):1906-1911
以京杭大运河9个江南城镇段表层沉积物为研究对象,研究具城镇源特征的重金属(Cu、Pb、Zn、Cd和Cr)在表层沉积物中的富集水平及其潜在生态风险.结果表明,Cu、Pb、Zn和Cd在大运河城镇段表层沉积物中显著富集,分别为所属长江沉积物相应背景值的1.2—6.4、1.8—5.8、2.6—18.7和7.1—22.7倍,Cr...  相似文献   

10.
基于2007—2012年连续对洞庭湖湘江入湖口至出湖口水域5个采样点的表层沉积物中Cd、Hg、As、Cu、Pb、Cr和Zn等7种重金属含量分析,对该水域表层沉积物中重金属的时空分布特征进行了探讨,并采用沉积物质量基准法对其生态风险进行了评价.结果表明,Cd、Hg、As、Cu、Pb、Cr和Zn的含量分别为0.54—79.90 mg·kg-1、0.046—0.712 mg·kg-1、15.2—289.0 mg·kg-1、29.0—217.0 mg·kg-1、6.0—246.0 mg·kg-1、65.4—269.0 mg·kg-1和41.4—632.0 mg·kg-1,其大小顺序为ZnCrPbCuAsCdHg;Cd、Hg、As、Cu、Pb和Zn含量沿程总体呈"V"形变化趋势,Cr含量沿程变化较小,重金属含量年际变化较为稳定;As具有较高生态风险,其余污染物具有较低生态风险,不同污染物生态风险的大小顺序为AsCdCrCuPbZnHg,S1和S3具有较高生态风险,其余点位具有较低生态风险,不同点位生态风险的大小顺序为S1S3S5S2S4.  相似文献   

11.
运用污染风险评价标准和方法研究了2010年5月(春)、8月(夏)、10月(秋)和12月(冬)莱州湾表层沉积物中7种重金属污染物的时空分布特征、来源及生态风险。结果表明,表层沉积物中Cr、Zn和Pb含量均呈现春季低于其他季节特征,秋季Hg含量是其他季节的4倍,Cu、As和Pb含量无显著季节差异。表层沉积物中Cr、Cu、Zn、As和Cd最高值出现在莱州湾中部及小清河河口等西部水域,来源呈现受自然作用影响较大的特征;而Hg和Pb最高值出现在龙口和界河河口等东部水域,来源呈现受周边工业污染物的人为排放影响较大的特征。基于地理累积指数、生态效应浓度以及Hakanson潜在生态风险指数的综合评价表明,13%~29%的研究区域的表层沉积物受到轻微程度的Cd、Hg和Pb污染,Cd和Hg高值水域达到中等生态风险程度;Hg和As在65%~68%的研究区域的表层沉积物中达到可能对沉积物底质环境及生物群落产生不利生态影响水平。基于对重金属污染物的评价结果,莱州湾表层沉积物质量较好,局部区域存在Hg、Pb、Cd和As的潜在污染风险。  相似文献   

12.
由于重金属的毒理性及其对水生生态系统的重要影响,水生环境的重金属污染已成为全世界关注的问题.渭河是黄河的第一大支流,近年来随着沿岸社会经济的发展,渭河的水质受到严重的威胁,但是对渭河流域地表水重金属的污染状况缺乏全面评估.以渭河流域关中段为研究区域,采集了该流域35个地表水样品,检测了12种重金属元素(Cr、Mn、Fe...  相似文献   

13.
黄浦江水源地沉积物重金属潜在生态风险评价   总被引:1,自引:0,他引:1  
为了解黄浦江上游饮用水源地沉积物中重金属的污染特征,对黄浦江干流和主要支流15个采样点的Hg、Cd、Pb、Cu和Zn含量进行检测,并对其生态风险进行评价.相比环境背景中位值,在15个样品中5种重金属含量都存在一定比例的超标现象,其中,Cd和Hg的污染相对明显;相比背景最大值,仅有Cu和Cd含量超标.采用潜在生态风险指数法和污染负荷指数法进行评价,所得出的生态风险等级均为无污染~中等污染水平,急水港近苏沪交界处、淀峰大桥、大蒸港沪浙交界处、大蒸港泖洋河交汇处、园泄泾以及五厍东一号河交界处区域生态风险较高,Cd和Hg是研究区域生态风险的主导因子.值得注意的是,黄浦江支流大蒸港和园泄泾的生态风险整体高于黄浦江干流.总体而言,黄浦江上游水源地表层沉积物中重金属污染仍处于中等以下水平.  相似文献   

14.
Surface sediments collected from continental shelf of the East China Sea were analyzed for heavy metals (iron, manganese, copper, zinc, lead, cadmium), carbonate, organic carbon contents, and grain sizes. the range of concentrations observed were iron: 0.3-1.3 wt%, manganese: 2.3-14 μmole/g, copper: 7.1-184 μmole/g, zinc: 0.16-0.77μmiole/g, lead: 15-98 μmole/g, cadmium: 0.17-3.9 μmole/g, carbonate: 3.6-87 wt%, sand: 10-100%, silt: 0-70% and clay: 0-50%.

A zonal distribution pattern of the heavy metals was found in the East China Sea Continental shelf sediments. High concentrations of most heavy metals, organic carbon and fine-grained sediments were observed in the inner shelf zone, especially those near the discharge of the Yangtze River. Concentrations of these heavy metals decreased from the inner shelf to the shelf break region. High concentrations of metals were also found in sediments near Taiwan. Iron concentrations decreased north-east of the central shelf region. High concentrations of cadmium were found in the shelf break region where biogenic carbonate is predominant. This study showed that biogenic carbonate in the East China Sea shelf break region and the terrigenous sediments from the Yangtze River and island of Taiwan were the major sources of heavy metals. Heavy metal concentrations were strongly influenced by the content of the coarse-grained quartz sand present in the sediments.  相似文献   

15.
Surface sediments collected from continental shelf of the East China Sea were analyzed for heavy metals (iron, manganese, copper, zinc, lead, cadmium), carbonate, organic carbon contents, and grain sizes. the range of concentrations observed were iron: 0.3-1.3 wt%, manganese: 2.3-14 μmole/g, copper: 7.1-184 μmole/g, zinc: 0.16-0.77μmiole/g, lead: 15-98 μmole/g, cadmium: 0.17-3.9 μmole/g, carbonate: 3.6-87 wt%, sand: 10-100%, silt: 0-70% and clay: 0-50%.

A zonal distribution pattern of the heavy metals was found in the East China Sea Continental shelf sediments. High concentrations of most heavy metals, organic carbon and fine-grained sediments were observed in the inner shelf zone, especially those near the discharge of the Yangtze River. Concentrations of these heavy metals decreased from the inner shelf to the shelf break region. High concentrations of metals were also found in sediments near Taiwan. Iron concentrations decreased north-east of the central shelf region. High concentrations of cadmium were found in the shelf break region where biogenic carbonate is predominant. This study showed that biogenic carbonate in the East China Sea shelf break region and the terrigenous sediments from the Yangtze River and island of Taiwan were the major sources of heavy metals. Heavy metal concentrations were strongly influenced by the content of the coarse-grained quartz sand present in the sediments.  相似文献   

16.
滇池沉积物中重金属污染特征及其生态风险评估   总被引:3,自引:0,他引:3  
采集了滇池北部和中心区域2根柱状沉积物样品,分析其常量元素(Fe、Mn、Al、Ti、Ca、K)、微量元素(Ba、Sr、Cu、Pb、Zn、V、Cd)剖面分布特征,并采用H?kanson潜在生态危害指数法对典型重金属(Cd、Cu、Zn、Pb)进行了污染潜在生态风险评估。结果表明:沉积物中常量元素以Fe2O3、CaO及Al2O3为主,MnO、K2O及TiO2含量较少,变化范围是Fe2O3为8.0~14.9%、MnO为0.1~0.2%、Al2O3为9.0~20.1%、TiO2为1.5%~2.8%、CaO为0.4~21.7%、K2O为1.5~2.0%;微量元素Pb, Cd, Zn, Ba, Cu, Sr 及V含量均较高,变化范围是Pb为73.8~105.3 mg·kg^-1、Cd为1.0~3.4 mg·kg^-1、Zn为123.4~210.6 mg·kg^-1、Ba为264.8~435.7 mg·kg^-1、Cu为77.5~133.5 mg·kg^-1、Sr为34.9~137.5 mg·kg^-1以及V为177.7~284.7 mg·kg^-1。尤其表层0~12 cm内(1950 s以后),各元素含量值均明显高于12 cm以下各值,20世纪50年代后滇池流域内工农业发展及污染物输入是造成金属元素含量累积的主要因素。沉积物中典型重金属Cu、Zn、Pb、Cd污染潜在生态风险评估结果:Cu、Zn和Pb处于中度污染,且C if 值越接近表层(0~12 cm)其值越高,这表明自1950S后污染程度不断加重,其中 Cd 累积与污染比较严重,分析多种元素的多因子污染参数之和C d表明滇池沉积物中多种元素污染整体处于“较高”污染程度,分析多种元素的潜在生态风险指数RI表明滇池沉积物中重金属潜在生态风险处于“很高”水平。同时,滇池北部沉积物中重金属潜在危害较严重且近年来污染有加重趋势。  相似文献   

17.
The objective of this study is to compare Anyang River bed sediments with water chemical composition and to assess the anthropogenic chemical inputs into the river system. Eight sampling locations were chosen along the river channel. Bed and suspended river sediments and water samples were collected, and analyzed for their chemical and physical composition. Data revealed that trace element concentrations in the river water were generally below world average, except for As, Mn, Ni and Cr. Among the three phases: water, bed and suspended sediment, more than 99% of the trace elements was associated with the bed sediment. Concentrations of trace elements in the sediment were a function a particle size distribution and organic content. The calculated degrees of enrichment based on the least influenced sample (ASD 1) indicated the river sediments were enriched with respect to background. The enrichment factors for Pb, Zn and As were relatively lower than for Cr, Co, Ni and Zn. The difference in the enrichment seems to reflect the human activities influence in the basin, and specially for Cd. Speciation of the elements in the five different chemical forms in the sediment by sequential extraction indicated that the reducible fraction was predominant for Fe, Zinc and Cu showed an irregular variation among the different fractions; whereas, Cd and Pb were more regular. Zinc and Cu highly existed mostly in exchangeable forms. Acid soluble and reducible forms were also important for most metals. The speciation implies that the metals associated with the sediment are subject to release into water bodies as goechemical variables (pH and Eh) change. Currently, the introduced metals are deposited near the source area and are mostly associated with the sediment, implying that the river bed sediment acts mainly as a sink, rather than a pool. The accumulated and enriched toxic trace elements can pose a potential pollution of river water.  相似文献   

18.
The distribution of trace metals (Co, Cu, Fe, Mn, Ni, Pb and Zn) was investigated during a year (1994-95) in surface and core sediment samples and in the oyster (Crassotrea rhizophorae) from Bluefields Bay, Nicaragua. the aim was to assess the arthropogenic impact of potential pollutant sources, mainly Bluefields City, since domestic waste waters are discharged directly or by infiltration to the bay. Lyophilised samples were submitted to different acid digestion methods and analysed by flame atomic absorption spectrophotometry. the results showed highest contents for copper, lead and zinc near Bluefields City, with an increase in the affected area in the rainy season that is generated by greater city run off. Metal contents in oysters do not show the same distribution pattern than in sediments and were similar to those from other areas without reflecting pollution levels.  相似文献   

19.
尽管针对洞庭湖沉积物中重金属的研究工作较多,但缺乏针对其主要入湖口的研究。基于2014年12月和2015年6月对洞庭湖主要入湖口表层沉积物中重金属调查,分析了重金属含量的时空分布特征,并采用一致性沉积物质量基准法对其生态风险进行了评价。结果表明,Cd、Hg、As、Cu、Pb和Zn的平均含量分别为3.27、0.190、27.10、39.8、38.0和157.8 mg·kg-1,其大小顺序为ZnCuPbAsCdHg,Cd和As含量出现超过土壤环境质量三级标准的现象,是主要的重金属污染物。Cd、As、Pb和Zn等4种重金属含量的最高值均出现在湘江入湖口,Cu含量的最高值出现在资水入湖口,Hg含量以沅江入湖口最高,除Pb外,其他5种重金属在湘江和资水入湖口的含量均大于平均值,表明湘江和资水入湖口污染较为严重;汛期与非汛期6种重金属的含量均无显著性差异(P0.05)。6种重金属生态风险大小顺序为AsCdZnPbCuHg,各入湖口生态风险大小顺序为湘江入湖口资水入湖口沅江入湖口汨罗江入湖口澧水入湖口长江"三口"新墙河入湖口,其中湘江和资水入湖口为较高生态风险,其他入湖口为较低生态风险。入湖河流是洞庭湖湖体沉积物重金属污染的主要来源,在一定程度上,入湖河流沉积物中重金属的含量对洞庭湖湖体沉积物中重金属污染状况起着决定性作用,因此,洞庭湖流域重金属污染防控应以入湖河流为主,其中尤以湘江和资水为重点。  相似文献   

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