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1.
汕头湾作为华南地区重要的出海门户,汕头市主要的旅游区和水产养殖基地,其环境污染问题已成为制约当地经济发展的重要因素,为此2002年在此开展了重大科技术兴海项目,以海洋沉积物质量标准、单因子污染指数和潜在生态风险评价体系对汕头湾表层沉积物重金属污染现状和潜在生态风险进行了评价。结果表明:汕头湾表层沉积物中Cd,Cu,Pb,Zn的平均含量超过海沉积物质量标准(Ⅰ类);以单因子污染指数评价,Cd达到很强污染等级,Zn为强污染,Cu,Ni,Pb为中等污染;以单元素生态系数(Eri)评价,只有Cd的潜在生态风险达到很强等级,其它元素则只属于轻微潜在风险范畴;以多元素潜在生态风险指数(RI)评价,汕头湾的潜在生态风险水平处于中等强度;重金属含量分布特征与重金属污染及潜在生态风险的空间差异性一致,表现为由上游至下游呈波状递减趋势,其中以牛田洋和汕头港上游最为严重;这一污染特征主要是由集水区域内的产业结构特点、河流入海口及排污口的分布以及汕头湾的地理和水文特性所决定的。 相似文献
2.
黄河水系沉积物重金属赋存形态及污染特征 总被引:17,自引:0,他引:17
2004年采集了黄河干流及西纳川等支流的水系沉积物,测定了沉积物样品中Cu、Zn、Pb、Cd、Cr、As和Hg等重金属元素的含量,并用BCR连续提取法分析研究了各元素的赋存形态,同时采用地累积指数法(Igeo)和次生相原生相分布比值法(RSP)分别对黄河流域水系沉积物中重金属的污染状况及生态风险进行了评估.结果表明:黄河水系沉积物中重金属含量特征总体符合全球页岩重金属元素丰度的基本趋势,但在部分人为污染较重的区域,表现出一定的地理差异;从浓度水平衡量,重金属的污染较轻;黄河水系沉积物中Cu、Zn、Cr和As主要以残渣态(B4)形式存在,具有较好的环境稳定性,而Pb、Hg和Cd以活性较大的弱吸附态存在,可能具有相对较大的环境影响;生态风险评价的结果显示,Pb、Cd和Hg具有相对较高的生态风险指数,尤其是Pb的潜在风险应该引起重视. 相似文献
3.
在位于浙江省临安市的青山水库采集了具有代表性的8个样点的表层沉积物样品,分析比较了样品中As、Cr、Cu、Ni、Mn、Pb、Zn等7种重金属总量的差异,采用BCR连续提取法对重金属不同形态(酸提取态、可还原态、可氧化态、残渣态)进行分析.采用地积累指数法(Igeo)和Hakanson潜在生态风险指数法,对青山水库不同采样点表层沉积物中重金属的污染程度和潜在毒性与生态风险进行评价.结果表明: 青山水库表层沉积物重金属污染程度存在明显的空间差异,流经城区和工业园区的青山水库支流入库河口附近的表层沉积物重金属含量明显高于其他采样点.青山水库表层沉积物7种重金属中,Mn主要以酸提取态存在;Cu和Pb主要以可还原态形式存在;As主要以残渣态形式存在.流经城区的支流入库河口附近表层沉积物还原态和酸提取态重金属比例较高,对水生生物有一定的毒性风险.8个样点的表层沉积物7种重金属中,以As污染程度最高,潜在生态风险最大,其次是Cu、Ni、Mn、Pb和Zn,均处于轻度污染状态,而Cr处于清洁水平,潜在生态风险较低.不同采样点比较发现,分别流经城区的锦溪和工业园区的横溪入库河口附近表层沉积物重金属污染程度和潜在生态风险明显高于其他采样点. 相似文献
4.
瓯江下游流域河流沉积物重金属污染特征、来源及潜在生态风险评价 总被引:2,自引:0,他引:2
为了解瓯江下游流域及沿岸城郊入江河流沉积物中重金属的污染特征, 对瓯江流域下游及温州城区河流43个表层沉积物中Cr、Co、Ni、Cu、Zn、As 和Pb 共7 种重金属元素的含量特征进行分析, 比较了城郊与城区、城区入江口与城区内部之间河流沉积物重金属含量的特征及差异并探讨其污染来源。结果表明: 沉积物中7 种重金属元素的含量由高到低依次为: Zn>Cr>Cu>Ni>Pb>Co>As, 与浙江省土壤背景值相比, 7 种重金属的平均含量超标1.5-4.9 倍,各种重金属的污染程度依次为: Co>Ni>Cr>Zn>As>Cu>Pb, 综合污染程度已达到警戒线等级。来源分析表明, 重金属元素Cu、Zn、Pb 和Cr 主要来自于工业污水排放及船舶交通等人类活动, Co 和As 主要来自于工业及农业生产活动, Ni主要来自于以工业为主的排污污染。潜在生态风险系数Eri 评价结果显示, 7 种重金属潜在生态风险大小为:Co>As>Cu>Ni>Pb>Cr>Zn, Co 元素处于较强生态风险等级; 潜在生态风险指数RI 介于72.05-107.80 之间, 其中55.5%的样点处于较强生态风险水平, 44.4%为中等生态风险水平, 研究区整体处于较强生态风险水平。 相似文献
5.
论文对杏林湾表层沉积物重金属、有机碳和硫化物含量进行了检测,对数据作了相关性分析和因子分析,并应用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:重金属之间有显著的相关性,Cu与Ni、Pb与Ni、Pb与Cr以及Cr与Hg之间的相关系数分别为0.786(P﹤0.05)、0.783(P﹤0.05)、0.937(P﹤0.01)和0.770(P﹤0.05)。重金属与有机碳及硫化物的相关性较差,表明该地区重金属污染来源与硫化物和有机碳并不相同。既有人为输入,又有自然的沉积过程。因子分析进一步解释了该水域重金属污染的主要来源。根据Eri均值大小,Hg的危害风险最大,Cr最小。6种重金属潜在生物毒性风险大小依次为:Hg > Pb > Cu > Cd > Ni > Cr。重金属的生态危害程度均较小,尚属轻微生态危害。 相似文献
6.
珠江(广州河段)表层沉积物中重金属的生态风险研究 总被引:10,自引:0,他引:10
随着广州市截污工程的实施,珠江(广州河段)外源污染得到有效控制后,沉积物内源污染将成为影响河流水质的重要因素。我们测定了珠江(广州河段)沉积物中Cu、Pb、Zn、Cr、Cd、Hg和As 7种重金属的浓度,研究了它们的分布特征和潜在生态风险。结果表明:在主干流河道的顺流断面中,各种重金属元素整体上表现出明显的倒“W”型分布。在各内河涌的各监测断面中,花地涌沉积物中重金属浓度最高,乌涌最低,其余各河涌居中。各种重金属元素的空间分布特征基本相似,除了Hg与Cd、Cr、As之外,其他各元素之间均呈现较明显的正相关关系,尤其是Cr和Cd、Cu和Cd、Cr和Cu之间的相关性显著,表明这些重金属元素在沉积物中的浓度具有共同变化的趋势。潜在生态危害指数法的评价结果显示,7种重金属元素的生态危害系数的大小顺序为:Hg>Cd>Cu>As>Pb>Zn>Cr,其中Hg是最主要的生态风险因子。对单个重金属的潜在生态危害系数( )和多个重金属的潜在生态危害指数(RI)的分析,生态风险最大的断面是5#(黄歧)、6#(黄沙)、16#(花地涌北出口)、7#(横滘)和14#(增埗桥)。 相似文献
7.
利用GIS软件空间内插值法分析鸭绿江河口近海湿地滩涂表层沉积物重金属的空间分布特征,并采用环境风险指数法和潜在生态危害指数法进行重金属元素的生态风险评价.结果表明: 研究区表层沉积物中的重金属含量与国内典型河口湿地相比处于较高水平.从空间分布上看,重金属含量东部高于西部,在人类活动密集区存在明显的累积性.环境风险指数法分析结果表明,Cu对该区域环境污染的影响最大,而Hakanson潜在生态危害指数法分析结果表明,Hg和Cd的潜在生态危害最大,重金属的综合潜在生态危害指数介于93.65~507.20,平均值为189.30,属于中等生态危害,并以东部潜在危害程度最大,应作为今后重金属污染防治的重点区域. 相似文献
8.
9.
海河流域西部地区水库沉积物重金属潜在生态风险评价 总被引:1,自引:0,他引:1
海河流域西部地区水库是下游平原区重要的水源地,水库沉积物重金属的潜在生态风险受到关注.运用Hakanson潜在生态风险评价方法对海河流域西部10座水库沉积物重金属的潜在生态风险进行评价,并采集水库上下游河流沉积物与水库作对比分析.结果表明:海河流域西部水库沉积物中Cd超标严重,平均含量是背景值的1.67倍,最高达2.77倍;超过半数水库的Pb超出背景值.结合毒性系数,计算了沉积物重金属的潜在生态风险,依次为Cd>As>Pb>Ni>Cu>Cr>Zn.多数水库的Cd生态风险危害等级均在中等危害及以上,承担保定市和北京市供水功能的西大洋水库Cd生态风险等级为“强”.水库上、下游河流沉积物重金属中Cd的生态风险显著高于水库自身,水库上游河流沉积物Pb、Cu、Ni的生态风险也高于水库,Zn和Cr的生态风险在水库上下游差异不显著. 相似文献
10.
于2011年8月采集了珠江口桂山岛海域12个站点的表层沉积物, 对沉积物中重金属的含量进行了测定。结果表明, 桂山岛沉积物中重金属含量与国内外港湾相比属于中等水平, Pb、Cr、Ni、Cu、Zn、Mn平均含量分别为40.06、31.29、14.17、30.67、100.18、599.76 mg/kg。富集系数法和 Hakanson潜在生态风险指数法评价表明:桂山岛沉积物各重金属元素的富集顺序为Cu﹥Pb﹥Zn﹥Mn﹥Cr﹥Ni, 其中Cu、Pb、Zn和Mn富集系数大于1;该海域重金属潜在生态风险总体上处于低水平, 从空间上看, S11危害最为严重。进一步通过主成分分析研究沉积物中重金属的来源, 发现前2个主成分贡献率分别为44.38%、42.61%, 表明重金属主要有2个来源:工业和生活污水排放、岩石的自然风化与侵蚀过程。 相似文献
11.
Changming Yang Yaqiong Wu Fen Zhang Lin Liu Ruijie Pan 《Chemical Speciation and Bioavailability》2016,28(1-4):133-141
Surface sediment samples were collected from a source water reservoir in Zhejiang Province, East of China to investigate pollution characteristics and potential ecological risk of heavy metals. The BCR sequential extraction method was used to determine the four chemical fractions of heavy metals such as acid soluble, easily reducible, easily oxidizable and residual fractions. The heavy metals pollution and potential ecological risk were evaluated systematically using geoaccumulation index (Igeo) and Hakanson potential ecological risk index (H′). The results showed that the sampling sites from the estuaries of tributary flowing through downtowns and heavy industrial parks showed significantly (p < 0.05) higher average concentrations of heavy metals in the surface sediments, as compared to the other sampling sites. Chemical fractionation showed that Mn existed mainly in acid extractable fraction, Cu and Pb were mainly in reducible fraction, and As existed mainly in residual fraction in the surface sediments despite sampling sites. The sampling sites from the estuary of tributary flowing through downtown showed significantly (p < 0.05) higher proportions of acid extractable and reducible fractions than the other sampling sites, which would pose a potential toxic risk to aquatic organisms as well as a potential threat to drinking water safety. As, Pb, Ni and Cu were at relatively high potential ecological risk with high Igeo values for some sampling locations. Hakanson potential ecological risk index (H′) showed the surface sediments from the tributary estuaries with high population density and rapid industrial development showed significantly (p < 0.05) higher heavy metal pollution levels and potential ecological risk in the surface sediments, as compared to the other sampling sites. 相似文献
12.
《Chemical Speciation and Bioavailability》2013,25(1):46-52
AbstractIn order to investigate heavy metal contamination in an urban environment during urbanization and economic development, 35 road-deposited sediment samples were collected from seven different land-use zones (commercial, residential, traffic, scenic park, educational, industrial and peri-urban) in Nanjing, a large city in P.R. China. The ranges of total metal concentrations found were: 28.7–272 mg kg?1 for Cu; 24.8–268 mg kg?1 for Ni; 37.3–204 mg kg?1 for Pb; 140–798 mg kg?1 for Zn; 0.44–2.19mg kg?1 for Cd; and 60.6–250 mg kg?1 for Cr. Metal fractionation was carried out using a modified three-step European Bureau of References (BCR) sequential extraction procedure. Cadmium and Zn were found predominantly associated with the acid extractable fractions; Ni and Cr were dominant in the residual fraction; Pb was predominantly associated with the residual and reducible fractions; Cu was dominant in the oxidizable and residual metal fractions. Based on the sum of the acid-extractable, reducible, and oxidizable fractions, Cd, Zn and Pb are potentially the most toxic metals in the road-deposited sediment in Nanjing. No significant differences, except for Zn, were found in the metal fractionation pattern for Cu, Ni, Pb, Cd, and Cr in different land use zones. 相似文献
13.
Xijiang River is the main surface water source in Guangxi province, South China. This study was carried out to investigate the distribution and potential ecological risks of seven heavy metals (Cu, Pb, Zn, As, Cd, Ni, and Cr) in surface sediments in Xijiang River basin. The results illustrated that the average concentrations of Zn, Pb, Cd, Cu, As, Ni, and Cr were 483.9, 207.5, 13.35, 23.50, 312.1, 28.75, and 50.62 mg/kg, respectively. Among them, Zn, Pb, Cd, and As were the major heave metals with concentration exceeding Class 3 threshold value of Chinese national standard. The result also showed samples with high ecological risk were mainly located in the upstream of Xijiang River basin as Diaojiang River, Hongshui River, Jincheng River, and Dahuan River. Based on the pollution risk assessment, the area manifested composite pollution of heavy metals in the sediments, signifying As, Pb, and Cd as the dominant heavy metals, and there were high ecological risk in sediments for these metals. According to correlation matrix and factor analysis (FA), the seven heavy metals were divided into three types/classes, Cd, as and Zn attributed by anthropogenic sources, natural sources corresponds for Ni and Cr while both natural and anthropogenic sources were attributed to Cu. 相似文献
14.
淮河安徽段水及沉积物中重金属的研究 总被引:1,自引:1,他引:0
对采集淮河安徽段水及沉积物样品,利用ICP-AES进行重金属分析,结果表明砷、铅、铬超标,在沉积物中的含量最多。研究区域的重金属开始富集于生物体内,已对水生态系统及水产品安全产生影响,应进一步加强检测工作,以便及时采取相应防治对策。 相似文献
15.
北京市南沙河沉积物重金属污染特征及风险评价 总被引:2,自引:0,他引:2
北京南沙河是海淀北部地区的重要排水和风景观赏性河道,为全面了解南沙河底泥沉积物中重金属的污染特征,采集了表层沉积物样品,分析了重金属元素的含量和形态,并利用单因子指数法、Hakanson综合污染指数法和潜在生态风险指数法对沉积物重金属进行了生态风险评价.结果表明:南沙河表层沉积物各种重金属元素存在较好的同源性,污染程度为:Cr>Cd>Zn>Cu>Pb>Ni.基于单项潜在生态风险指数的评价表明,该区域重金属生态风险等级由强至弱依次为:Cd>Pb>Cu≈Cr>Ni≈Zn,其中,仅Cd具有较高的潜在生态风险,综合潜在生态风险指数表明,除了京藏高速桥河段危害等级较高外,南沙河总体处于轻微的生态风险等级.形态分析表明,Cd的酸提取态含量高,迁移性最强,最容易对生物造成直接危害,其次是Pb和Zn,Cu和Ni具有一定程度的潜在环境危害,Cr产生环境危害的可能性较小. 相似文献
16.
Abstract One hundred and twenty topsoil (0–20?cm layer) samples and 45 surface sediment samples were collected from the riparian area and bottom of Qinggeda Lake. The content of Pb, Cu, Cr, Ni, Zn, Mn, V, and As were determined to reveal the distribution characteristics and explore the spatial dependency relationship between environmental factors (pH, conductivity, and organic matter) and heavy metals using Kriging interpolation and the geographical weighted regression model. Results showed as follows: (1) The average contents of Pb, Cu, Cr, Ni, Zn, V, and As did not exceed the Standard of National Soil Environmental Quality. However, Cu, Cr, and V were higher than the Xinjiang soil background. (2) The target elements in the surface sediments of the lake showed a decreasing trend from the center of the lake to the shore. Also, the heavy metal concentrations in the eastern part of the lake shore were significantly higher than those in other areas, and the highest concentrations appeared in the paddy field. (3) The effects of the eight heavy metals on pH, conductivity, and organic matter displayed significant spatial nonstationary characteristics. Cr, As, Cu, and Zn are the primary factors that affect environmental characteristics such as pH, conductivity, and organic matter content. 相似文献
17.
Accumulative phases for heavy metals in limnic sediments 总被引:2,自引:1,他引:2
Data from mechanical concentrates of recent sediments indicate that clay minerals, clay-rich aggregates and heavy minerals
are the major carriers of heavy metals in detrital sediment fractions. Hydrous Fe/Mn oxides and carbonates and sulfides, in
their specific environments, are the predominant accumulative phases for heavy metals in autochthonous fractions. Sequential
chemical extraction techniques permit the estimation of characteristic heavy metal bonding forms: exchangeable metal cations,
easily reducible, moderately reducible, organic and residual metal fractions, whereby both diagenetic processes and the potential
availability of toxic compounds can be studied. The data from lakes affected by acid precipitation indicate that zinc, cobalt
and nickel are mainly released from the easily reducible sediment fractions and cadmium from organic phases. In contrast at
pH 4.4, neither lead nor copper seem to be remobilized to any significant extent. Immobilization by carbonate precipitation
seems to provide an effective mechanism for the reduction of dissolved inputs 9f metals such as zinc and cadmium in pH-buffered,
hard water systems. 相似文献
18.
湖南省主要水系底泥重金属污染特征及其生态风险评价 总被引:1,自引:0,他引:1
为全面了解湖南省主要水系底泥中重金属含量及其潜在生态风险,在湖南省内的湘、资、沅、澧以及洞庭湖5个主要水系共采集了75个位点的底泥样品,分析了重金属元素含量和来源分布特征,并采用地累积指数法、内梅罗指数法和潜在生态风险指数法对其污染程度和潜在生态风险进行评价。结果表明,As、Cd、Cr、Cu、Mn、Pb和Zn的平均含量分别为32.87、7.59、78.09、70.69、1182.60、85.64 mg/kg和482.44 mg/kg。湘江和洞庭湖的污染相对严重,底泥中重金属含量明显高于资江、沅江和澧水;相关性分析表明多种重金属具有相同污染来源;地累积指数评价结果显示,湖南省主要水系底泥中Cd为重污染水平,Zn为中度污染,Cu、Mn和Pb均为轻度污染,而As和Cr污染程度为清洁;内梅罗指数法评价结果表明,除Cr为轻度污染外,湖南省主要水系底泥中其他6种重金属污染均为重污染级别;潜在生态风险评价结果显示,湖南省总体潜在生态风险属于中等级别,各水系潜在生态风险大小顺序为洞庭湖>资江>湘江>澧水>沅江,重金属Cd的潜在生态风险级别为很强,其他重金属元素都属于轻微级别。 相似文献
19.
Meryem El Barjy Mehdi Maanan Mohamed Maanan Fouad Salhi Ali Tnoumi Bendahhou Zourarah 《人类与生态风险评估》2020,26(1):87-102
AbstractThe distribution, contamination status, and ecological risks of heavy metals in Tahaddart estuary were investigated. 24 surface sediment samples and two cores were collected and analyzed for major (Al and Fe), heavy metals (As, Cd, Cr, Cu, Ni, Pb, and Zn), and grain size composition. The heavy metals assessment was carried out using different environmental indices. The results indicated that the spatial distribution patterns of Al, Fe, and Zn were mainly determined by the distribution of the finer grained fraction (<63?μm) in the sediment. In contrast, As, Cd, Cr, Cu, Ni, and Pb concentrations were controlled by anthropogenic activities (vehicular traffic from Highway Bridge and thermal power plant). The distribution of heavy metals in sediment cores showed an upward enrichment in heavy metals with high concentration found in the uppermost may related to the increasing in human activities. The pollution indexes confirmed that the Tahaddart estuary sediment was considerably to high contaminated by heavy metals near to different anthropogenic inputs. Similarly, the potential ecological risk index and the biological risk index present 21% probability of toxicity posing potential risk to the aquatic organisms. These results provide basic information that can be used to protect and improve the quality of this ecosystem. 相似文献
20.
AbstractSamples taken from polluted creek sediments were dried at temperatures between 20°C and 100°C (either in air or under a nitrogen atmosphere) and selective chemical extraction procedures were then used to examine the effect of drying temperature and oxidation on the bonding mode distribution patterns of Zn, Pb, Cd and Cu. Exposure to air during the drying stage tended to increase the fraction of total metal which was less firmly bound (i.e. ion exchangeable, weakly sorbed). Less metal was present in these categories when higher drying temperatures were used, and temperature changes had a larger effect when the samples were dried under nitrogen. The drying process appears to promote metal migration to phases having a stronger bonding power. In most of the samples studied, heating caused Pb to migrate to the carbonate phase while accumulation in the organic/sulfide phases was the dominant process for Cu and Cd. In the case of Zn, migration to the carbonate phase was favoured in some studies (e.g. using air-dried samples), in other sediments the migration end-point was the organic/sulfide phases. During storage of dried samples at room temperature for prolonged periods (e.g. months) the amount of less firmly bound metal tended to increase, and nullified the distribution changes induced by drying. The effect was most pronounced in the case of Cd. The study highlights that significant errors in metal distribution pattern analyses can arise from sample preparation procedures and it has provided information on the possible mobilisation of metal when dredged sediment is land-dumped, i.e. allowed to dry in air. 相似文献